An overview of process systems engineering approaches for process intensification: State of the art
暂无分享,去创建一个
Efstratios N. Pistikopoulos | M. M. Faruque Hasan | Yuhe Tian | Salih Emre Demirel | E. Pistikopoulos | M. Hasan | S. Demirel | Yuhe Tian
[1] J Gislason,et al. Phillips sulfur-removal process nears commercialization , 2001 .
[2] Mingli Song,et al. Preparation of poly(vinyl alcohol)-sodium alginate hollow-fiber composite membranes and pervaporation dehydration characterization of aqueous alcohol mixtures , 2006 .
[3] Arthur W. Westerberg,et al. A review of process synthesis , 1981 .
[4] Rafiqul Gani,et al. Procafd: Computer Aided Tool for Synthesis-Design & Analysis of Chemical Process Flowsheets , 2015 .
[5] Antonis C. Kokossis,et al. Scoping and screening complex reaction networks using stochastic optimization , 1999 .
[6] Shirish H. Sonawane,et al. Intensification of extraction of natural products using ultrasonic irradiations—A review of current status , 2012 .
[7] Mauricio Sales-Cruz,et al. A reactive distillation process for co-hydrotreating of non-edible vegetable oils and petro-diesel blends to produce green diesel fuel , 2017, Comput. Chem. Eng..
[8] Siti Kartom Kamarudin,et al. Effect of oscillation amplitude on velocity distributions in an oscillatory baffled column (OBC) , 2012 .
[9] Vasilios I. Manousiouthakis,et al. Global optimization of reactive distillation networks using IDEAS , 2004, Comput. Chem. Eng..
[10] Alastair J. Florence,et al. Oscillatory flow reactors (OFRs) for continuous manufacturing and crystallization , 2015 .
[11] P I Barton,et al. A reliable simulator for dynamic flux balance analysis , 2013, Biotechnology and bioengineering.
[12] Frank Lipnizki,et al. Pervaporation-based hybrid process: a review of process design, applications and economics , 1999 .
[13] Jacques Mettes,et al. Design of an annular microchannel reactor (AMR) for hydrogen and/or syngas production via methane steam reforming , 2014 .
[14] Jianping Li,et al. Systematic process intensification using building blocks , 2017, Comput. Chem. Eng..
[15] Marianthi G. Ierapetritou,et al. Similarities and Differences Between the Concepts of Operability and Flexibility: The Steady-State Case , 2009 .
[16] Megan Jobson,et al. Conceptual design of single-feed kinetically controlled reactive distillation columns , 2005 .
[17] Bingtao Zhao,et al. Mass transfer performance of CO2 capture in rotating packed bed: Dimensionless modeling and intelligent prediction , 2014 .
[18] Suresh T. Gulati,et al. The application of monoliths for gas phase catalytic reactions , 2001 .
[19] David Reay,et al. The role of process intensification in cutting greenhouse gas emissions , 2008 .
[20] Paul N. Sharratt,et al. Multilevel phenomenological modelling approach to support the evaluation and generation of intensified processes , 2005 .
[21] Wolfgang Marquardt,et al. A Nonlinear Programming Approach to Conceptual Design of Reaction-Separation Systems , 2012 .
[22] Efstratios N. Pistikopoulos,et al. Optimal design and control of a reactive distillation system , 2005 .
[23] D. Wong,et al. Effect of interaction multiplicity on control system design for a MTBE reactive distillation column , 2003 .
[24] Michael F. Malone,et al. Reactive distillation for methyl acetate production , 2003, Comput. Chem. Eng..
[25] J. C. Etchells,et al. Why Reactions Run Away , 1997 .
[26] Ishan Bajaj,et al. Optimal synthesis of periodic sorption enhanced reaction processes with application to hydrogen production , 2018, Comput. Chem. Eng..
[27] Andrzej Stankiewicz,et al. Opportunities and challenges for process control in process intensification , 2012 .
[28] Rafiqul Gani,et al. Fundamentals of process intensification: A process systems engineering view , 2016 .
[29] Diane Hildebrandt,et al. Synthesis of chemical reactor networks , 1995 .
[30] Gade Pandu Rangaiah. Chemical Process Retrofitting and Revamping: Techniques and Applications , 2016 .
[31] Mahmoud M. El-Halwagi,et al. Including Inherent Safety in the Design of Chemical Processes , 2017 .
[32] Vasilios Manousiouthakis,et al. IDEAS approach to process network synthesis: Application to multicomponent MEN , 2000 .
[33] Richard S.H. Mah,et al. MODELING LIQUID MASS TRANSFER IN HIGEE SEPARATION PROCESS , 1985 .
[34] R. Higbie,et al. The Rate of Absorption of a Pure Gas into a Still Liquid during Short Periods of Exposure , 1935 .
[35] Costin Sorin Bildea,et al. Optimal design of intensified processes for DME synthesis , 2017, Comput. Chem. Eng..
[36] Andrei G. Fedorov,et al. Hydrogen generation in a reverse‐flow microreactor: 2. Simulation and analysis , 2005 .
[37] Ishan Bajaj,et al. A trust region-based two phase algorithm for constrained black-box and grey-box optimization with infeasible initial point , 2017, Comput. Chem. Eng..
[38] Ignacio E. Grossmann,et al. Prosyn — An automated topology and parameter process synthesizer , 1994 .
[39] Yong Jin,et al. CFD simulation with detailed chemistry of steam reforming of methane for hydrogen production in an integrated micro-reactor , 2010 .
[40] Gonzalo Guillén-Gosálbez,et al. Scope for the application of mathematical programming techniques in the synthesis and planning of sustainable processes , 2010, Comput. Chem. Eng..
[41] D. Vlachos,et al. Recent developments on multiscale, hierarchical modeling of chemical reactors , 2002 .
[42] Hsiao-Ping Huang,et al. Control of reactive distillation process for production of ethyl acetate , 2007 .
[43] Yoshiaki Kawajiri,et al. Multi-column chromatographic process development using simulated moving bed superstructure and simultaneous optimization – Model correction framework , 2014 .
[44] Françoise Couenne,et al. Model predictive control of a catalytic reverse flow reactor , 2003, IEEE Trans. Control. Syst. Technol..
[45] Georgakis Christos,et al. Chapter A4 - A geometric approach for process operability analysis , 2004 .
[46] G. Wozny,et al. Two‐Dimensional Model for Oxidative Coupling of Methane in a Packed‐Bed Membrane Reactor , 2012 .
[47] Robert E. Hayes,et al. Repetitive model predictive control of a reverse flow reactor , 2007 .
[48] Ahmet K. Avci,et al. Simulation of exhaust gas reforming of natural gas in a microchannel reactor , 2016 .
[49] Eugeny Y. Kenig,et al. Complementary modelling of fluid separation processes , 2008 .
[50] Nilay Shah,et al. An optimisation-based framework for the conceptual design of reaction-separation processes , 2016 .
[51] I. Grossmann,et al. Logic-based MINLP algorithms for the optimal synthesis of process networks , 1996 .
[52] Stefan Heinrich,et al. Membrane assisted fluidized bed reactors: Potentials and hurdles , 2007 .
[53] Rafiqul Gani,et al. A hybrid approach for reactive separation systems , 1999 .
[54] I. Rossetti,et al. Chemical reaction engineering, process design and scale-up issues at the frontier of synthesis: Flow chemistry , 2016 .
[55] Mahmoud M. El-Halwagi,et al. Incorporation of Safety and Sustainability in Conceptual Design via a Return on Investment Metric , 2018 .
[56] D. Agar,et al. CFD modelling of mass transfer with and without chemical reaction in the liquid–liquid slug flow microreactor , 2007 .
[57] Jtf Jos Keurentjes,et al. Intensification of convective heat transfer in a stator-rotor-stator spinning disc reactor , 2015 .
[58] G. Froment,et al. Chemical Reactor Analysis and Design , 1979 .
[59] Arthur W. Westerberg,et al. A short note : the optimal design of pressure swing adsorption systems. , 1991 .
[60] Matthew Richard Stanley Abbott,et al. Biological processing in oscillatory baffled reactors (OBRs) , 2016 .
[61] Massimo Morbidelli,et al. Robust design of binary countercurrent adsorption separation processes , 1993 .
[62] Peter Lehner,et al. Monoliths as multiphase reactors: A review , 2004 .
[63] Robert J. Flassig,et al. Reactor-network synthesis via flux profile analysis , 2018 .
[64] Robert J. Kee,et al. Process intensification in the catalytic conversion of natural gas to fuels and chemicals , 2017 .
[65] Zeynep H. Gümüş,et al. Reactive distillation column design with vapor/liquid/liquid equilibria , 1997 .
[66] Hassan Hammouri,et al. Observer based multivariable control of a catalytic reverse flow reactor: comparison between LQR and MPC approaches , 2004, Comput. Chem. Eng..
[67] Yamini Satyawali,et al. Process intensification: The future for enzymatic processes? , 2017 .
[68] Endre Rev,et al. Process flowsheet superstructures: Structural multiplicity and redundancy: Part II: Ideal and binarily minimal MINLP representations , 2005, Comput. Chem. Eng..
[69] Rafiqul Gani,et al. Phenomena Based Methodology for Process Synthesis Incorporating Process Intensification , 2013 .
[70] Juan Gabriel Segovia-Hernández,et al. Process Intensification in Chemical Engineering: Design Optimization and Control , 2016 .
[71] Salih Emre Demirel,et al. Fuel Gas Network Synthesis Using Block Superstructure , 2018 .
[72] M. R. Cannon,et al. Controlled Cycling Improves Various Processes , 1961 .
[73] Ignacio E. Grossmann,et al. An index for operational flexibility in chemical process design. Part I: Formulation and theory , 1985 .
[74] Efstratios N. Pistikopoulos,et al. Process design and control optimization: A simultaneous approach by multi‐parametric programming , 2017 .
[75] Efstratios N. Pistikopoulos,et al. Perspectives in Multiparametric Programming and Explicit Model Predictive Control , 2009 .
[76] A. Koltuniewicz,et al. Integrated Membrane Operations in Various Industrial Sectors , 2010 .
[77] K. Sundmacher,et al. Towards a Methodology for the Systematic Analysis and Design of Efficient Chemical Processes - Part 1: From Unit Operations to Elementary Process Function- , 2008 .
[78] Neha Sharma,et al. Model predictive control and neural network predictive control of TAME reactive distillation column , 2012 .
[79] Pen-Chi Chiang,et al. Ozonation of CI Reactive Black 5 Using Rotating Packed Bed and Stirred Tank Reactor , 2005 .
[80] Mayuresh V. Kothare,et al. Microfluidic modeling and simulation of flow in membrane microreactors , 2005 .
[81] Andreas A. Linninger,et al. Parallel hybrid algorithm for process flexibility analysis , 2008 .
[82] Richard Lakerveld,et al. Integrated design of microwave and photocatalytic reactors. Where are we now , 2014 .
[83] David W. Agar,et al. Reactive Gas Adsorption , 2006 .
[84] Jay H. Lee,et al. Automatic control of simulated moving beds , 2004 .
[85] Yi-Hung Chen,et al. A continuous-flow biodiesel production process using a rotating packed bed. , 2010, Bioresource technology.
[86] Mario Montes,et al. Monolithic reactors for environmental applications: A review on preparation technologies , 2005 .
[87] Christodoulos A Floudas,et al. Cost-effective CO2 capture based on in silico screening of zeolites and process optimization. , 2013, Physical chemistry chemical physics : PCCP.
[88] Freek Kapteijn,et al. New non-traditional multiphase catalytic reactors based on monolithic structures , 2001 .
[89] Robert J. Kee,et al. SPIN (Version 3. 83): A Fortran program for modeling one-dimensional rotating-disk/stagnation-flow chemical vapor deposition reactors , 1991 .
[90] Sebastian Engell,et al. Structuring of reactive distillation columns for non-ideal mixtures using MINLP-techniques , 2004 .
[91] Adam Harvey,et al. The fluid mechanics relating to a novel oscillatory flow micro reactor , 2003 .
[92] Petr Kočí,et al. Dynamics and selectivity of NOx reduction in NOx storage catalytic monolith , 2008 .
[93] P. Lutze,et al. Process analysis and economic optimization of intensified process alternatives for simultaneous industrial scale production of dimethyl carbonate and propylene glycol , 2015 .
[94] Ryan P. Lively,et al. Seven chemical separations to change the world , 2016, Nature.
[95] Christodoulos A. Floudas,et al. A multi-scale approach for the discovery of zeolites for hydrogen sulfide removal , 2016, Computers and Chemical Engineering.
[96] Marianthi G. Ierapetritou,et al. Feasibility Evaluation of Nonconvex Systems Using Shape Reconstruction Techniques , 2005 .
[97] John F. Forbes,et al. LQ-feedback control of a reverse flow reactor , 2008 .
[98] Lorenz T. Biegler,et al. Optimization of Pressure Swing Adsorption and Fractionated Vacuum Pressure Swing Adsorption Processes for CO2 Capture , 2005 .
[99] San-Jang Wang,et al. Design and Control of a Thermally Coupled Reactive Distillation Process Synthesizing Diethyl Carbonate , 2014 .
[100] Muhammad A. Al-Arfaj,et al. Comparison of Alternative Control Structures for an Ideal Two-Product Reactive Distillation Column , 2000 .
[101] Hongbing Jian,et al. Evaluation of Turbulent Integral Length Scale in an Oscillatory Baffled Column Using Large Eddy Simulation and Digital Particle Image Velocimetry , 2003 .
[102] Jeffrey J. Siirola,et al. Industrial Applications of Chemical Process Synthesis , 1996 .
[103] M. Lashkarbolooki,et al. Using Artificial Neural Network to Predict the Pressure Drop in a Rotating Packed Bed , 2012 .
[104] P. Stonestreet,et al. The Effects of Oscillatory Flow and Bulk Flow Components on Residence Time Distribution in Baffled Tube Reactors , 1999 .
[105] Wolfgang Marquardt,et al. Computer-aided process modeling with MODKIT , 2001 .
[106] Qi Chen,et al. Recent Developments and Challenges in Optimization-Based Process Synthesis. , 2017, Annual review of chemical and biomolecular engineering.
[107] Paul I. Barton,et al. Screening models for batch process development. Part I. Design targets for reaction/distillation networks , 1999 .
[108] Dionisios G. Vlachos,et al. Building large microkinetic models with first-principles׳ accuracy at reduced computational cost , 2015 .
[109] Johan Grievink,et al. Designing reactive distillation processes: present and future , 2004, Comput. Chem. Eng..
[110] Volker Hessel,et al. Novel Process Windows: Innovative Gates to Intensified and Sustainable Chemical Processes , 2015 .
[111] Krist V. Gernaey,et al. ICAS-PAT: A software for design, analysis and validation of PAT systems , 2010, Comput. Chem. Eng..
[112] Lorenz T. Biegler,et al. Optimization of a Pressure-Swing Adsorption Process Using Zeolite 13X for CO2 Sequestration , 2003 .
[113] Markos A. Katsoulakis,et al. Bridging the gap of multiple scales: From microscopic, to mesoscopic, to macroscopic models , 2001 .
[114] K Raghavan,et al. Industrial Catalysis and Separations : Innovations for Process Intensification , 2014 .
[115] R. S. Besser,et al. Toward autonomous control of microreactor system for steam reforming of methanol , 2007 .
[116] Jean-Claude Charpentier,et al. In the frame of globalization and sustainability, process intensification, a path to the future of chemical and process engineering (molecules into money) , 2007 .
[117] Mohammad Reza Rahimpour,et al. Recent advances in reactors for low-temperature Fischer-Tropsch synthesis: process intensification perspective , 2015 .
[118] Massimo Morbidelli,et al. Continuous reactive chromatography , 2001 .
[119] Yi Hua Ma,et al. A process dynamic modeling and control framework for performance assessment of Pd/alloy-based membra , 2011 .
[120] Arturo Jiménez-Gutiérrez,et al. Risk Analysis Applied to Bioethanol Dehydration Processes: Azeotropic Distillation versus Extractive Distillation , 2015 .
[121] Efstratios N. Pistikopoulos,et al. Explicit model predictive control: A connected-graph approach , 2017, Autom..
[122] Trevor Kletz. Plant Design For Safety: A User-Friendly Approach , 1990 .
[123] Hongbing Jian,et al. On modelling turbulent flow in an oscillatory baffled column – RANS model or large‐eddy simulation? , 2002 .
[124] Jean-Michel Reneaume,et al. A Mixed Integer Nonlinear Programming Formulation for Optimal Design of a Catalytic Distillation Column Based on a Generic Nonequilibrium Model , 2006 .
[125] Ki Bong Lee,et al. Novel Thermal-Swing Sorption-Enhanced Reaction Process Concept for Hydrogen Production by Low-Temperature Steam−Methane Reforming , 2007 .
[126] Parag R Gogate,et al. Sonochemical reactors: scale up aspects. , 2004, Ultrasonics sonochemistry.
[127] Ahmet K. Avci,et al. Multiphase Catalytic Reactors: Theory, Design, Manufacturing, and Applications , 2016 .
[128] John E. Anderson. Control by Tray Temperature of Extractive Distillation , 1992 .
[129] Xiaofei Zeng,et al. Absorption of Carbon Dioxide with Ionic Liquid in a Rotating Packed Bed Contactor: Mass Transfer Study , 2011 .
[130] Nguyen Van Duc Long,et al. Intensified Distillation-Based Separation Processes:Recent Developments and Perspectives , 2016 .
[131] Benjamin A. Wilhite,et al. Design of Cartridge-Based Ceramic Heat-Exchanger Microchannel Reformers for Process Intensification: Experiments and Simulations , 2013 .
[132] M. R. Cannon,et al. Controlled Cycling Distillation in a Packed-Plate Column , 1961 .
[133] Efstratios N. Pistikopoulos,et al. On multi-parametric programming and its applications in process systems engineering , 2016 .
[134] G. J Harmsen. Industrial best practices of conceptual process design , 2004 .
[135] Matthias Bitzer,et al. Model-based nonlinear tracking control of pressure swing adsorption plants , 2005 .
[136] David Reay,et al. Process Intensification: Engineering for Efficiency, Sustainability and Flexibility , 2008 .
[137] Vivek V. Ranade,et al. Intensifying Multiphase Reactions and Reactors: Strategies and Examples , 2017 .
[138] Ch. Venkateswarlu,et al. Nonlinear Model Predictive Control of Reactive Distillation Based on Stochastic Optimization , 2008 .
[139] Christos Georgakis,et al. An Optimization-Based Approach for the Operability Analysis of Continuously Stirred Tank Reactors , 2001 .
[140] M. S. Khayoon,et al. Intensification of biodiesel production via ultrasonic-assisted process: A critical review on fundamentals and recent development , 2012 .
[141] Marianthi G. Ierapetritou,et al. Framework for evaluating the feasibility/operability of nonconvex processes , 2003 .
[142] Andrzej Stankiewicz,et al. Re-Engineering the Chemical Processing Plant , 2003 .
[143] Alvaro Orjuela,et al. Isoamyl propionate production by reactive distillation , 2015 .
[144] Muhammad A. Al-Arfaj,et al. Control Study of Ethyl tert-Butyl Ether Reactive Distillation , 2002 .
[145] Rafiqul Gani,et al. Process intensification: A perspective on process synthesis , 2010 .
[146] Jc Jaap Schouten,et al. Engineering model for single-phase flow in a multi-stage rotor–stator spinning disc reactor , 2014 .
[147] Anton A. Kiss,et al. Advanced Distillation Technologies: Design, Control and Applications , 2013 .
[148] Yu Zhang,et al. Structure Optimization of a Rotating Zigzag Bed via Computational Fluid Dynamics Simulation , 2014 .
[149] Johannes Holtbrügge. Reactive and Membrane-assisted Separations , 2016 .
[150] Wolfgang Marquardt,et al. A Framework for the Systematic Design of Hybrid Separation Processes * * Supported by the Deutsche F , 2008 .
[151] S. Tlatlik,et al. Process synthesis for reactive separations , 2003 .
[152] Fernando V. Lima,et al. Novel operability-based approach for process design and intensification: Application to a membrane reactor for direct methane aromatization , 2017 .
[153] Lorenz T. Biegler,et al. Chemical Reactor Network Targeting and Integration: An Optimization Approach , 1996 .
[154] Xiao-Ning Li,et al. Conceptual process synthesis: past and current trends , 2004 .
[155] Kamalesh K. Sirkar,et al. Membrane in a reactor: A functional perspective , 1999 .
[156] J. D. Perkins,et al. Process control structure selection based on economics , 2000 .
[157] Grigori M. Sisoev,et al. Thin film flow over spinning discs: The effect of surface topography and flow rate modulation , 2008 .
[158] Shivaji Sircar,et al. Basic Research Needs for Design of Adsorptive Gas Separation Processes , 2006 .
[159] Efstratios N. Pistikopoulos,et al. Generalized modular representation framework for process synthesis , 1996 .
[160] Volker Hessel,et al. Microchemical Engineering: Components, Plant Concepts, User Acceptance – Part II , 2003 .
[161] Dena Ghiasy,et al. Control of Intensified Equipment: A simulation study for pH Control in a Spinning Disc Reactor , 2012 .
[162] Mahmoud M. El-Halwagi,et al. Safety and Techno-Economic Analysis of Ethylene Technologies , 2016 .
[163] Boelo Schuur,et al. Enantioselective liquid-liquid extraction in centrifugal contactor separators , 2008 .
[164] Sigurd Skogestad,et al. Hydraulic design, technical challenges and comparison of alternative configurations of a four-product dividing wall column , 2014 .
[165] Miguel Menéndez,et al. Simulation of an inert membrane reactor for the oxidative dehydrogenation of butane , 1999 .
[166] G. J. Harmsen,et al. Reactive distillation: The front-runner of industrial process intensification - A full review of commercial applications, research, scale-up, design and operation , 2007 .
[167] Anh N. Phan,et al. Numerical study of the flow pattern and heat transfer enhancement in oscillatory baffled reactors with helical coil inserts , 2012 .
[168] A. E. Jansen,et al. Membrane Contactors in Industrial Applications , 2005 .
[169] Parag R. Gogate,et al. A review on intensification of synthesis of biodiesel from sustainable feed stock using sonochemical reactors , 2012 .
[170] Dominique Della Valle,et al. Static mixers: Mechanisms, applications, and characterization methods – A review , 2014 .
[171] L. Biegler,et al. Algorithmic synthesis of chemical reactor networks using mathematical programming , 1986 .
[172] Andreas Beckmann,et al. Reactive distillation : industrial applications, process design & scale-up , 2001 .
[173] Asterios Gavriilidis,et al. Investigation of a rotating disc reactor for acetone stripping and asymmetric transfer hydrogenation: Modelling and experiments , 2007 .
[174] M. Winter,et al. What are batteries, fuel cells, and supercapacitors? , 2004, Chemical reviews.
[175] Miguel J. Bagajewicz,et al. Mass/heat‐exchange network representation of distillation networks , 1992 .
[176] Mayuresh V. Kothare,et al. Model predictive hydrodynamic regulation of microflows , 2006 .
[177] Ki Bong Lee,et al. Simulated moving bed multiobjective optimization using standing wave design and genetic algorithm , 2008 .
[178] Nagamany Nirmalakhandan,et al. Microwave energy potential for biodiesel production , 2013 .
[179] Lorenz T. Biegler,et al. Synthesis of optimal chemical reactor networks with simultaneous mass integration , 1996 .
[180] Alírio E. Rodrigues,et al. Process intensification: New technologies (SMBR and PermSMBR) for the synthesis of acetals , 2013 .
[181] B J Bellhouse,et al. A HIGH EFFICIENCY MEMBRANE OXYGENATOR AND PULSATILE PUMPING SYSTEM, AND ITS APPLICATION TO ANIMAL TRIALS , 1973, Transactions - American Society for Artificial Internal Organs.
[182] Lei Shao,et al. Determination of Mass-Transfer Coefficient of CO2 in NH3 and CO2 Absorption by Materials Balance in a Rotating Packed Bed , 2012 .
[183] Patrick Linke,et al. Integration of superstructure-based optimization and semantic models for the synthesis of reactor networks , 2009 .
[184] Zdravko Kravanja,et al. Challenges in sustainable integrated process synthesis and the capabilities of an MINLP process synthesizer MipSyn , 2010, Comput. Chem. Eng..
[185] Martin Feinberg. Optimal reactor design from a geometric viewpoint — III. Critical CFSTRs , 2000 .
[186] L. Biegler,et al. Simulation and Optimization of Pressure Swing Adsorption Systems Using Reduced-Order Modeling , 2009 .
[187] Moses O. Tadé,et al. Pattern-based predictive control for ETBE reactive distillation , 2003 .
[188] Alexandru Woinaroschy,et al. Time-Optimal Control of Dividing-Wall Distillation Columns , 2010 .
[189] Chia-Chang Lin,et al. Removal of carbon dioxide by absorption in a rotating packed bed , 2003 .
[190] Anton A. Kiss,et al. A systematic framework for the feasibility and technical evaluation of reactive distillation processes , 2012 .
[191] Günter Wozny,et al. Two-dimensional modeling of a packed-bed membrane reactor for the oxidative coupling of methane , 2012 .
[192] Richard C. Baliban,et al. Modeling, Simulation, and Optimization of Postcombustion CO2 Capture for Variable Feed Concentration and Flow Rate. 1. Chemical Absorption and Membrane Processes , 2012 .
[193] M. Feinberg,et al. Optimal reactor design from a geometric viewpoint—I. Universal properties of the attainable region , 1997 .
[194] A P Harvey,et al. Biological processing in oscillatory baffled reactors: operation, advantages and potential , 2013, Interface Focus.
[195] Niket S. Kaisare,et al. Hierarchical multiscale model-based design of experiments, catalysts, and reactors for fuel processing , 2006, Comput. Chem. Eng..
[196] Jochen Steimel,et al. A framework for the modeling and optimization of process superstructures under uncertainty , 2014 .
[197] Paul Watts,et al. Benchmarking of Microreactor Applications , 2004 .
[198] P. V. Danckwerts. Significance of Liquid-Film Coefficients in Gas Absorption , 1951 .
[199] Michael Baldea,et al. From process integration to process intensification , 2015, Comput. Chem. Eng..
[200] F. Keil,et al. Modeling of Process Intensification , 2007 .
[201] M Sam Mannan,et al. The Evolution of Process Safety: Current Status and Future Direction. , 2016, Annual review of chemical and biomolecular engineering.
[202] Enrico Drioli,et al. Membrane distillation: Recent developments and perspectives , 2015 .
[203] D. Glasser,et al. A geometric approach to steady flow reactors: the attainable region and optimization in concentration space , 1987 .
[204] Rosalam Sarbatly,et al. Vacuum membrane distillation processes for aqueous solution treatment—A review , 2013 .
[205] Sun-Tak Hwang,et al. Inorganic membranes and membrane reactors , 2001, Korean Journal of Chemical Engineering.
[206] Jeffrey Raymond Hufton,et al. Why Does the Linear Driving Force Model for Adsorption Kinetics Work? , 2000 .
[207] Babatunde A. Ogunnaike,et al. Integrating systems design and control using dynamic flexibility analysis , 2007 .
[208] Raymond L. Smith,et al. Using GREENSCOPE for Sustainable Process Design: An Educational Opportunity , 2014 .
[209] Freek Kapteijn,et al. Zeolite Membranes in Catalysis: What Is New and How Bright Is the Future? , 2010 .
[210] Bruce A. Finlayson,et al. Mathematical models of the monolith catalytic converter: Part I. Development of model and application of orthogonal collocation , 1976 .
[211] Tony Howes,et al. THE SIMULATION OF CHAOTIC MIXING AND DISPERSION FOR PERIODIC FLOWS IN BAFFLED CHANNELS , 1991 .
[212] Pan Lijun,et al. Design and control of reactive distillation for hydrolysis of methyl lactate , 2011 .
[213] F. Dautzenberg,et al. New Catalyst Synthesis and Multifunctional Reactor Concepts for Emerging Technologies in the Process Industry , 2004 .
[214] Fernão D. Magalhães,et al. On the optimization of cyclic adsorption separation processes , 2005 .
[215] Marianthi G. Ierapetritou,et al. New Approach for Quantifying Process Feasibility: Convex and 1-D Quasi-Convex Regions , 2001 .
[216] Ishan Bajaj,et al. Integrated Carbon Capture and Conversion To Produce Syngas: Novel Process Design, Intensification, and Optimization , 2017 .
[217] Iván D. Gil,et al. Control of an extractive distillation process to dehydrate ethanol using glycerol as entrainer , 2012, Comput. Chem. Eng..
[218] S. Nilchan,et al. On the Optimisation of Periodic Adsorption Processes , 1998 .
[219] Jianping Li,et al. A General Framework for Process Synthesis, Integration and Intensification , 2019 .
[220] F. Petlyuk. Thermodynamically Optimal Method for Separating Multicomponent Mixtures , 1965 .
[221] Fen Guo,et al. Hydrodynamics and mass transfer in cross-flow rotating packed bed , 1997 .
[222] Benjamin A. Wilhite,et al. Composite catalytic-permselective membranes: Modeling analysis for H2 purification assisted by water-gas-shift reaction , 2012 .
[223] Rafiqul Gani,et al. Process synthesis, design and analysis using a process-group contribution method , 2015, Comput. Chem. Eng..
[224] Efstratios N. Pistikopoulos,et al. A multiparametric model‐based optimization and control approach to anaesthesia , 2016 .
[225] Guang-Wen Chu,et al. Study on the hydrodynamic characteristics of a rotor-stator reactor by electrical conductance and response time technique , 2016 .
[226] Robert S. Huss,et al. Multiple steady states in reactive distillation: kinetic effects , 2002 .
[227] Vasilios Manousiouthakis,et al. Globally Optimal Networks for Multipressure Distillation of Homogeneous Azeotropic Mixtures , 2012 .
[228] Eugeny Y. Kenig,et al. Reactive Distillation in a Dividing Wall Column: Rate-Based Modeling and Simulation , 2007 .
[229] Leonidas G. Bleris,et al. Low-order empirical modeling of distributed parameter systems using temporal and spatial eigenfunctions , 2005, Comput. Chem. Eng..
[230] Mayuresh V. Kothare,et al. Dynamics and control of integrated microchemical systems with application to micro-scale fuel processing , 2006, Comput. Chem. Eng..
[231] Ignacio E. Grossmann,et al. Optimal synthesis of thermally coupled distillation sequences using a novel MILP approach , 2014, Comput. Chem. Eng..
[232] Robert H. Kadlec,et al. Equilibrium‐limited periodic separating reactors , 1987 .
[233] D. P. Rao,et al. The Story of “HIGEE” , 2015 .
[234] E. B. Nauman,et al. Static Mixers in the Process Industries—A Review , 2003 .
[235] Massimo Morbidelli,et al. Design of Optimal Operating Conditions of Simulated Moving Bed Adsorptive Separation Units , 1995 .
[236] Costin Sorin Bildea,et al. A control perspective on process intensification in dividing-wall columns , 2011 .
[237] Rafiqul Gani,et al. Sustainable Process Synthesis-Intensification , 2015 .
[238] Anton A. Kiss,et al. Understanding process intensification in cyclic distillation systems , 2011 .
[239] Mayuresh V. Kothare,et al. Lumped heat and mass transfer coefficient for simulation of a pressure swing adsorption process , 2017 .
[240] Mayuresh V. Kothare,et al. Anatomy of a rapid pressure swing adsorption process performance , 2015 .
[241] Diane Hildebrandt,et al. Automating reactor network synthesis: finding a candidate attainable region for the water-gas shift (WGS) reaction , 2004, Comput. Chem. Eng..
[242] C. Doga Demirhan,et al. Modeling and design of a microchannel reformer for efficient conversion of glycerol to hydrogen , 2015 .
[243] Mayuresh V. Kothare,et al. Modeling of Multicomponent Concentration Profiles in Membrane Microreactors , 2005 .
[244] Wolfgang Marquardt,et al. Minimum energy demand and split feasibility for a class of reactive distillation columns , 2004 .
[245] Efstratios N. Pistikopoulos,et al. Dynamic modeling and explicit/multi-parametric MPC control of pressure swing adsorption systems , 2011 .
[246] Michael J. Hounslow,et al. Population balance modelling of droplet coalescence and break-up in an oscillatory baffled reactor , 2004 .
[247] Andrzej Stankiewicz,et al. Process Intensification: History, Philosophy, Principles , 2004 .
[248] Amiya K Jana,et al. Neuro-estimator based GMC control of a batch reactive distillation. , 2011, ISA transactions.
[249] Steffen Tischer,et al. Modeling of transport and chemistry in channel flows of automotive catalytic converters , 2010 .
[250] Christian Drumm,et al. Process intensification with reactive extraction columns , 2008 .
[251] Moonyong Lee,et al. A cost-effective retrofit of conventional distillation sequence to dividing-wall prefractionator configuration , 2018, Comput. Chem. Eng..
[252] Andreas Seidel-Morgenstern,et al. Analysis and Demonstration of a Control Concept for a Heat Integrated Simulated Moving Bed Reactor , 2011 .
[253] Vasilios Manousiouthakis,et al. Infinite DimEnsionAl State-space as a systematic process intensification tool: Energetic intensification of hydrogen production , 2017 .
[254] Paul I. Barton,et al. McCormick-Based Relaxations of Algorithms , 2009, SIAM J. Optim..
[255] Ali Fazeli,et al. CFD Modeling of Methane Autothermal Reforming in a Catalytic Microreactor , 2007 .
[256] Yohan Richardson,et al. A short overview on purification and conditioning of syngas produced by biomass gasification: Catalytic strategies, process intensification and new concepts , 2012 .
[257] Dale E. Seborg,et al. A Perspective on Advanced Strategies for Process Control (Revisited) , 1999 .
[258] L. T. Fan,et al. Synthesizing alternative sequences via a P-graph-based approach in azeotropic distillation systems , 2000 .
[259] A. I. Stankiewicz,et al. Process Intensification: Transforming Chemical Engineering , 2000 .
[260] Anton A. Kiss,et al. Dynamic optimization of a dividing-wall column using model predictive control , 2012 .
[261] Jacques Mettes,et al. Radial Microchannel Reactors (RMRs) for Efficient and Compact Steam Reforming of Methane: Experimental Demonstration and Design Simulations , 2013 .
[262] Andrew Lyddiatt,et al. Process chromatography: current constraints and future options for the adsorptive recovery of bioproducts. , 2002, Current opinion in biotechnology.
[263] Anton A. Kiss,et al. Energy efficient control of a BTX dividing-wall column , 2011, Comput. Chem. Eng..
[264] Enrico Drioli,et al. Membrane engineering in process intensificationAn overview , 2011 .
[265] Vasilios I. Manousiouthakis,et al. Process intensification of reactive separator networks through the IDEAS conceptual framework , 2017, Comput. Chem. Eng..
[266] Efstratios N. Pistikopoulos,et al. Modular synthesis framework for combined separation/reaction systems , 2001 .
[267] Yong Luo,et al. Micromixing efficiency of rotating packed bed with premixed liquid distributor , 2009 .
[268] Huajiang Huang,et al. A review of separation technologies in current and future biorefineries , 2008 .
[269] Yu-Shao Chen,et al. Correlations of Mass Transfer Coefficients in a Rotating Packed Bed , 2011 .
[270] K. Jensen. Microreaction engineering * is small better? , 2001 .
[271] Wolfgang Marquardt,et al. Conceptual design of distillation-based hybrid separation processes. , 2013, Annual review of chemical and biomolecular engineering.
[272] R. Smith,et al. The Design and Optimization of Dividing Wall Distillation Columns , 1993 .
[273] Fausto Gallucci,et al. Process Intensification for Sustainable Energy Conversion , 2015 .
[274] Lei Shao,et al. High-gravity process intensification technology and application , 2010 .
[275] Endre Rev,et al. Process flowsheet superstructures: Structural multiplicity and redundancy: Part I: Basic GDP and MINLP representations , 2005, Comput. Chem. Eng..
[276] Hongbing Jian,et al. A Numerical Study on the Scale-Up Behaviour in Oscillatory Baffled Columns , 2005 .
[277] Douglas M. Ruthven,et al. Air separation by pressure swing adsorption on a carbon molecular sieve , 1986 .
[278] Efstratios N. Pistikopoulos,et al. Optimal synthesis and design of dynamic systems under uncertainty , 1996 .
[279] Eugeny Y. Kenig,et al. Rate-based modelling and simulation of reactive separations in gas/vapour–liquid systems , 2005 .
[280] Sebastian Engell,et al. Model-based conceptual design and optimization tool support for the early stage development of chemical processes under uncertainty , 2013, Comput. Chem. Eng..
[281] Parag R. Gogate,et al. Cavitational reactors for process intensification of chemical processing applications: A critical review , 2008 .
[282] M. N. Kashid,et al. Microstructured Reactors for Multiphase Reactions: State of the Art , 2009 .
[283] Claudia Gutiérrez-Antonio,et al. Multiobjective Stochastic Optimization of Dividing-wall Distillation Columns Using a Surrogate Model Based on Neural Networks , 2016 .
[284] I-Lung Chien,et al. Overall control strategy of a coupled reactor/columns process for the production of ethyl acrylate , 2008 .
[285] Mario R. Eden,et al. A Property Based Approach for Simultaneous Process and Molecular Design , 2008 .
[286] Christodoulos A. Floudas,et al. Discovery of novel zeolites for natural gas purification through combined material screening and process optimization , 2014 .
[287] Bin Zhang,et al. A review of safety indices for process design , 2016 .
[288] Bojan Pahor,et al. Synthesis of reactor networks in overall process flowsheets within the multilevel MINLP approach , 2001 .
[289] Michael Baldea,et al. A survey of optimal process design capabilities and practices in the chemical and petrochemical industries , 2018, Comput. Chem. Eng..
[290] Wolfgang Marquardt,et al. Efficient optimization-based design for the separation of heterogeneous azeotropic mixtures , 2015, Comput. Chem. Eng..
[291] Chia-Chang Lin,et al. Carbon dioxide absorption in a cross-flow rotating packed bed , 2011 .
[292] Atharv Bhosekar,et al. Advances in surrogate based modeling, feasibility analysis, and optimization: A review , 2018, Comput. Chem. Eng..
[293] Enrico Drioli,et al. Membrane materials for addressing energy and environmental challenges. , 2012, Annual review of chemical and biomolecular engineering.
[294] Partha S. Goswami,et al. Process Intensification in Rotating Packed Beds (HIGEE): An Appraisal , 2004 .
[295] Moses O. Tadé,et al. ETBE Synthesis via Reactive Distillation : 2. Dynamic Simulation and Control Aspects , 1997 .
[296] Christodoulos A. Floudas,et al. Discovery of novel zeolites and multi-zeolite processes for p-xylene separation using simulated moving bed (SMB) chromatography , 2017 .
[297] Amiya K. Jana,et al. Heat integrated distillation operation , 2010 .
[298] Adam Harvey,et al. Rapid process development using oscillatory baffled mesoreactors - A state-of-the-art review , 2015 .
[299] Robert J. Kee,et al. A Mathematical Model of the Fluid Mechanics and Gas‐Phase Chemistry in a Rotating Disk Chemical Vapor Deposition Reactor , 1989 .
[300] Z. Qiu,et al. Process intensification technologies in continuous biodiesel production , 2010 .
[301] Martin Feinberg. Optimal reactor design from a geometric viewpoint. Part II. Critical sidestream reactors , 2000 .
[302] Dennis Hendershot. Process Intensification for Safety , 2003 .
[303] John N. Shadid,et al. Computational Analysis and Optimization of a Chemical Vapor Deposition Reactor with Large-Scale Computing , 2004 .
[304] Lorenz T. Biegler,et al. Recent Advances in Simulation and Optimal Design of Pressure Swing Adsorption Systems , 2005 .
[305] Davide Fissore,et al. Design and testing of a control system for reverse-flow catalytic afterburners , 2005 .
[306] Henrik Hahn,et al. An industrial view of process intensification , 2009 .
[307] Patrick L. Mills,et al. Multiphase catalytic reactors: a perspective on current knowledge and future trends , 2002 .
[308] Leonidas G. Bleris,et al. Reduced order distributed boundary control of thermal transients in microsystems , 2005, IEEE Transactions on Control Systems Technology.
[309] Qunxiong Zhu,et al. Design and control of an ideal heat-integrated distillation column (ideal HIDIC) system separating a close-boiling ternary mixture , 2007 .
[310] Angelo Lucia,et al. Distillation pinch points and more , 2008, Comput. Chem. Eng..
[311] Enrico Drioli,et al. Membrane Reactors: Advanced Systems for Intensified Chemical Processes , 2014 .
[312] Amiya K Jana,et al. Dynamic simulation and nonlinear control of a rigorous batch reactive distillation. , 2010, ISA transactions.
[313] Rama Rao Vemula,et al. Comparative performance of an adiabatic and a nonadiabatic PSA process for bulk gas separation—a numerical simulation , 2017 .
[314] Leland M. Vane,et al. Pervaporation and Vapor Permeation Tutorial: Membrane Processes for the Selective Separation of Liquid and Vapor Mixtures , 2013 .
[315] Kamelia Boodhoo,et al. Monte Carlo simulation of free radical polymerization of styrene in a spinning disc reactor , 2014 .
[316] J. C. Etchells. Process Intensification: Safety Pros and Cons , 2005 .
[317] Freek Kapteijn,et al. Monoliths in multiphase catalytic processes : aspects and prospects , 1999 .
[318] Parag R. Gogate,et al. Intensification of Enzymatic Hydrolysis of Lignocellulose Using Ultrasound for Efficient Bioethanol Production: A Review , 2013 .
[319] Zdravko Kravanja,et al. Safety Analysis Embedded in Heat Exchanger Network Synthesis , 2017, Comput. Chem. Eng..
[320] Steffen Hardt. Modeling and Simulation of Microreactors , 2007 .
[321] Derya Uztürk,et al. Inherent Dynamic Operability of Processes: General Definitions and Analysis of SISO Cases , 2002 .
[322] Jay H. Lee,et al. Repetitive model predictive control applied to a simulated moving bed chromatography system , 2000 .
[323] Benny D. Freeman,et al. Reverse osmosis desalination: water sources, technology, and today's challenges. , 2009, Water research.
[324] Yan Zhou,et al. Optimal design and control of pressure swing adsorption process for N2/CH4 separation , 2018 .
[325] C. Floudas,et al. Active constraint strategy for flexibility analysis in chemical processes , 1987 .
[326] Catherine Charcosset,et al. Review: Purification of proteins by membrane chromatography , 1998 .
[327] William L. Luyben,et al. New Control Structure for Divided-Wall Columns , 2009 .
[328] Michael Baldea,et al. Localized Temperature Control in Microchannel Reactors Using Bimetallic Thermally-Actuated Valves , 2015 .
[329] Harvey Arellano-Garcia,et al. Optimal Operation of a Membrane Reactor Network , 2012 .
[330] Pablo Marín,et al. Combustion of methane lean mixtures in reverse flow reactors: Comparison between packed and structured catalyst beds , 2005 .
[331] Nicolas M. Kaiser,et al. Integrated reaction-extraction process for the hydroformylation of long-chain alkenes with a homogeneous catalyst , 2017, Comput. Chem. Eng..
[332] Robert E. Hayes,et al. Modelling the three-way catalytic converter with mechanistic kinetics using the Newton–Krylov method on a parallel computer , 2002 .
[333] Xiongwei Ni,et al. Computational fluid dynamic modelling of flow patterns in an oscillatory baffled column , 2002 .
[334] Antonis C. Kokossis,et al. Development of novel multiphase reactors using a systematic design framework , 1997 .
[335] Amiya K. Jana,et al. Nonlinear state estimation and control of a batch reactive distillation , 2009 .
[336] J. V. Oliveira,et al. Biodiesel production through non-catalytic supercritical transesterification: current state and perspectives , 2014 .
[337] Robert J. Flassig,et al. Probabilistic reactor design in the framework of elementary process functions , 2016, Comput. Chem. Eng..
[338] Pierre Le-Clech,et al. Fouling in membrane bioreactors used in wastewater treatment , 2006 .
[339] Ignacio E. Grossmann,et al. Design optimization of stochastic flexibility , 1993 .
[340] Suttichai Assabumrungrat,et al. Simulation of intensified process of sorption enhanced chemical-looping reforming of methane: Comparison with conventional processes , 2017, Comput. Chem. Eng..
[341] Rafiqul Gani,et al. A computer aided modeling system , 1999 .
[342] Norbert Kockmann,et al. Harsh Reaction Conditions in Continuous‐Flow Microreactors for Pharmaceutical Production , 2009 .
[343] Patrick Linke,et al. On the robust application of stochastic optimisation technology for the synthesis of reaction/separation systems , 2003, Comput. Chem. Eng..
[344] Jianping Li,et al. Process Integration Using Block Superstructure , 2018 .
[345] Mirko Skiborowski,et al. Conceptual Design of Highly Integrated Processes – Optimization of Dividing Wall Columns , 2017 .
[346] Hwai-Shen Liu,et al. Mass Transfer in a Rotating Packed Bed with Viscous Newtonian and Non-Newtonian Fluids , 2005 .
[347] John R. Grace,et al. Modeling of Sorption-Enhanced Steam Reforming in a Dual Fluidized Bubbling Bed Reactor , 2006 .
[348] Lei Shao,et al. Preparation of TiO2 nanoparticles by a rotating packed bed reactor , 2003 .
[349] K. Sundmacher,et al. Reactive distillation : status and future directions , 2003 .
[350] Patrick Linke,et al. Rapid screening of conceptual reactive separation process options , 2005 .
[351] Lorenz T. Biegler,et al. A superstructure based approach to chemical reactor network synthesis , 1990 .
[352] Shachit S. Iyer,et al. GRAMS: A general framework describing adsorption, reaction and sorption-enhanced reaction processes , 2018, Chemical Engineering Science.
[353] A. Varma,et al. Ethylene epoxidation in a catalytic packed-bed membrane reactor : experiments and model , 2001 .
[354] H. Shon,et al. Fouling and its control in membrane distillation-A review , 2015 .
[355] A. A. Kiss,et al. Enhanced bioethanol dehydration by extractive and azeotropic distillation in dividing-wall columns , 2012 .
[356] Bruce A. Finlayson,et al. Mathematical models of the monolith catalytic converter: Part II. Application to automobile exhaust , 1976 .
[357] Onur Onel,et al. Multi-scale approaches for gas-to-liquids process intensification: CFD modeling, process synthesis, and global optimization , 2017, Comput. Chem. Eng..
[358] P. M. Diéguez,et al. Methane steam reforming in a microchannel reactor for GTL intensification: A computational fluid dynamics simulation study , 2009 .
[359] Efstratios N. Pistikopoulos,et al. Optimization and Control of Pressure Swing Adsorption Processes Under Uncertainty , 2013 .
[360] Bernd Bessling,et al. Reactive and catalytic distillation from an industrial perspective , 2003 .
[361] K. V. Dobrego,et al. Methane partial oxidation reverse flow reactor scale up and optimization , 2008 .
[362] Eugeny Y. Kenig,et al. Modelling of reactive separation processes: reactive absorption and reactive distillation , 2003 .
[363] Charles Stone. Fuel cell technologies powering portable electronic devices , 2007 .
[364] Sigurd Skogestad,et al. NULL SPACE METHOD FOR SELECTING OPTIMAL MEASUREMENT COMBINATIONS AS CONTROLLED VARIABLES , 2007 .
[365] Sebastian Engell,et al. Control of a reactive separation process , 2003 .
[366] Jtf Jos Keurentjes,et al. Industrial membrane reactors , 2005 .
[367] Hwai-Shen Liu,et al. Absorption of VOCs in a Rotating Packed Bed , 2002 .
[368] Christos Georgakis,et al. A new measure of process output controllability , 1998 .
[369] Gade Pandu Rangaiah,et al. Modeling and Analysis of Novel Reactive HiGee Distillation , 2012 .
[370] L. Biegler,et al. Large scale nonlinear optimization for asymmetric operation and design of Simulated Moving Beds. , 2006, Journal of chromatography. A.
[371] E Curcio,et al. Hybrid membrane operations in water desalination and industrial process rationalisation. , 2005, Water science and technology : a journal of the International Association on Water Pollution Research.
[372] Xiao-Ning Li,et al. Synthesis of Reactor/Separator Networks by the Conflict-based Analysis Approach , 2002 .
[373] Fernando Israel Gómez-Castro,et al. Design of a Multitask Reactive Distillation with Intermediate Heat Exchangers for the Production of Silane and Chlorosilane Derivates , 2016 .
[374] Dipendu Saha,et al. Prediction of mass transfer coefficient in rotating bed contactor (Higee) using artificial neural network , 2009 .
[375] Jian Zuo,et al. Recent membrane development for pervaporation processes , 2016 .
[376] T. J. Mason,et al. Ultrasonic intensification of chemical processing and related operations : A review , 1996 .
[377] Patricia Luis,et al. Exergy as a tool for measuring process intensification in chemical engineering , 2013 .
[378] Jan Harmsen,et al. Process intensification in the petrochemicals industry: Drivers and hurdles for commercial implementation , 2010 .
[379] Adam Harvey,et al. Process Intensification Technologies for Green Chemistry: Engineering Solutions for Sustainable Chemical Processing , 2013 .
[380] D. G. Fisher,et al. PROCESS CONTROL : AN OVERVIEW AND PERSONAL PERSPECTIVE , 1991 .
[381] Rafiqul Gani,et al. Heterogeneous Catalytic Distillation - A Patent Review , 2010 .
[382] L. T. Fan,et al. Graph-theoretic approach to process synthesis: Polynomial algorithm for maximal structure generation , 1993 .
[383] James R. Fair,et al. Design Guidelines for Solid-Catalyzed Reactive Distillation Systems , 1999 .
[384] Eugeny Y. Kenig,et al. An integrated tool for synthesis and design of reactive distillation , 1999 .
[385] Enrico Drioli,et al. Membrane Gas Separation: A Review/State of the Art , 2009 .
[386] Thomas A. Adams,et al. Space-constrained purification of dimethyl ether through process intensification using semicontinuous dividing wall columns , 2017, Comput. Chem. Eng..
[387] Leonidas G. Bleris,et al. Embedded Model Predictive Control for System-on-a-Chip Applications , 2004 .
[388] Krist V. Gernaey,et al. Model-based computer-aided framework for design of process monitoring and analysis systems , 2009, Comput. Chem. Eng..
[389] Krzysztof Gosiewski. Effective approach to cyclic steady state in the catalytic reverse-flow combustion of methane , 2004 .
[390] Douglas J. Nelson,et al. Fuel cell systems: efficient, flexible energy conversion for the 21st century , 2001, Proc. IEEE.
[391] and Kejin Huang,et al. Design and Control of a Methyl Tertiary Butyl Ether (MTBE) Decomposition Reactive Distillation Column , 2007 .
[392] R. E. Hayes,et al. Introduction to Catalytic Combustion , 1998 .
[393] Domingos Barbosa,et al. Design and minimum-reflux calculations for single-feed multicomponent reactive distillation columns , 1988 .
[394] T. Arnot,et al. A review of reverse osmosis membrane materials for desalinationDevelopment to date and future poten , 2011 .
[395] E. Drioli,et al. Membrane Distillation and Related Operations—A Review , 2005 .
[396] Dennis C. Hendershot,et al. Dynamic Disadvantages of Intensification in Inherently Safer Process Design , 2004 .
[397] David R. Vinson,et al. On the operability of continuous processes , 2001 .
[398] A. Stankiewicz. Reactive separations for process intensification: an industrial perspective , 2003 .
[399] Wen Zhou,et al. Non-ideal reactor network synthesis through IDEAS: Attainable region construction , 2006 .
[400] Michael Baldea,et al. Equation‐oriented optimization of process flowsheets with dividing‐wall columns , 2016 .
[401] Vittorio Loddo,et al. Process intensification in a photocatalytic membrane reactor: Analysis of the techniques to integrate reaction and separation , 2017 .
[402] G. Powers,et al. Synthesis of system designs: III. Toward a process concept generator , 1971 .
[403] L. Biegler,et al. Nonlinear Programming Superstructure for Optimal Dynamic Operations of Simulated Moving Bed Processes , 2006 .
[404] Michael F. Malone,et al. Computer-aided tools for the design of reactive distillation systems , 1999 .
[405] Thomas A. Adams,et al. Design of dividing wall columns for butanol recovery in a thermochemical biomass to butanol process , 2015 .
[406] Lorenz T. Biegler,et al. Large scale optimization strategies for zone configuration of simulated moving beds , 2008, Comput. Chem. Eng..
[407] Thomas Schwalbe,et al. Novel Innovation Systems for a Cellular Approach to Continuous Process Chemistry from Discovery to Market , 2004 .
[408] Gaurav Agrawal,et al. Full Superstructure for Multiobjective Optimization of Multicolumn Chromatography for Ternary Separations , 2015 .
[409] Efstratios N. Pistikopoulos,et al. The interactions of design control and operability in reactive distillation systems , 2002 .
[410] L. Biegler,et al. Superstructure-based optimal synthesis of pressure swing adsorption cycles for precombustion CO2 capture , 2010 .
[411] Philip Lutze,et al. Modelling, design and flexibility analysis of rotating packed beds for distillation , 2015 .
[412] Verle N. Schrodt,et al. Plant-scale study of controlled cyclic distillation , 1967 .
[413] William L. Luyben,et al. Temperature Control of the BTX Divided-Wall Column , 2010 .
[414] Michael F. Malone,et al. Simulation of kinetic effects in reactive distillation , 2000 .
[415] Rafiqul Gani,et al. State‐of‐the‐art and progress in the optimization‐based simultaneous design and control for chemical processes , 2012 .
[416] Anton A. Kiss,et al. Comparison of Control Strategies for Dividing-Wall Columns , 2010 .
[417] A. Kirubakaran,et al. A review on fuel cell technologies and power electronic interface , 2009 .
[418] Ralph A. Leonard,et al. Annular Centrifugal Contactors for Solvent Extraction , 1980 .
[419] A. Avci,et al. Modeling and simulation of water-gas shift in a heat exchange integrated microchannel converter , 2018 .
[420] Ilkka Turunen,et al. Methodology of conceptual process synthesis for process intensification , 2008 .
[421] Christos T. Maravelias,et al. A superstructure representation, generation, and modeling framework for chemical process synthesis , 2016 .
[422] Wolfgang Marquardt,et al. Shortcut methods for nonideal multicomponent distillation: 2. Complex columns , 1998 .
[423] Efstratios N. Pistikopoulos,et al. Generalized modular framework for the representation and synthesis of complex distillation column sequences , 2005 .
[424] Grigori M. Sisoev,et al. The Flow of Thin Liquid Films Over Spinning Discs , 2008 .
[425] Michael Baldea,et al. Pseudo-transient models for multiscale, multiresolution simulation and optimization of intensified reaction/separation/recycle processes: Framework and a dimethyl ether production case study , 2017, Comput. Chem. Eng..
[426] Mayuresh V. Kothare. Control of Microreactors , 2009 .
[427] Albert Renken,et al. Heat Management in Single and Multi-injection Microstructured Reactors: Scaling Effects, Stability Analysis, and Role of Mixing , 2012 .
[428] Efstratios N. Pistikopoulos,et al. Intelligent, model-based control towards the intensification of downstream processes , 2017, Comput. Chem. Eng..
[429] William L. Luyben,et al. Economic and Dynamic Impact of the Use of Excess Reactant in Reactive Distillation Systems , 2000 .
[430] Rebecca Frauzem,et al. A generic methodology for processing route synthesis and design based on superstructure optimization , 2017, Comput. Chem. Eng..
[431] Silvia Tabasso,et al. Enabling technologies built on a sonochemical platform: challenges and opportunities. , 2015, Ultrasonics sonochemistry.
[432] Jacob A. Moulijn,et al. Monoliths in Heterogeneous Catalysis , 1994 .
[433] Christodoulos A. Floudas,et al. Synthesis of optimal chemical reactor networks , 1999 .
[434] Richard C. Baliban,et al. Modeling, Simulation, and Optimization of Postcombustion CO2 Capture for Variable Feed Concentration and Flow Rate. 2. Pressure Swing Adsorption and Vacuum Swing Adsorption Processes , 2012 .
[435] Mohamed Khayet,et al. Pervaporation and vacuum membrane distillation processes: Modeling and experiments , 2004 .
[436] Efstratios N. Pistikopoulos,et al. A multi-scale energy systems engineering approach to residential combined heat and power systems , 2017, Comput. Chem. Eng..
[437] Trevor Kletz,et al. Inherently safer plants , 1985 .
[438] Anastassios M. Stamatelos,et al. Development and application range of mathematical models for 3-way catalytic converters , 1997 .
[439] Sivakumar Subramanian,et al. Methodology for the Steady-State Operability Analysis of Plantwide Systems , 2005 .
[440] François Bertrand,et al. Optimization of a flow reversal reactor for the catalytic combustion of lean methane mixtures , 2006 .
[441] Michael Baldea. Multum in Parvo: A Process Intensification Retrospective and Outlook , 2014 .
[442] Eugeny Y. Kenig,et al. Advanced Rate-Based Simulation Tool for Reactive Distillation , 2004 .
[443] Christodoulos A. Floudas,et al. Optimization of complex reactor networks—I. Isothermal operation , 1990 .
[444] Pen-Chi Chiang,et al. Modeling ozonation process with pollutant in a rotating packed bed , 2005 .
[445] Shinji Hasebe,et al. Design and operation of micro-chemical plants - bridging the gap between nano, micro and macro technologies , 2004, Comput. Chem. Eng..
[446] B. V. Babu,et al. Optimization of reactive distillation processes using differential evolution strategies , 2007 .
[447] Anil Kumar Pabby,et al. State-of-the-art review on hollow fibre contactor technology and membrane-based extraction processes , 2013 .
[448] Jianfeng Chen,et al. Characterization of micromixing efficiency in rotating packed beds by chemical methods , 2006 .
[449] Efstratios N. Pistikopoulos,et al. Generalized modular framework for the synthesis of heat integrated distillation column sequences , 2005 .
[450] Christodoulos A. Floudas,et al. Global optimization of general constrained grey-box models: new method and its application to constrained PDEs for pressure swing adsorption , 2017, J. Glob. Optim..
[451] Chris R. Kleijn,et al. Computational modeling of transport phenomena and detailed chemistry in chemical vapor deposition : a benchmark solution , 2000 .
[452] Hector Gomez,et al. Experimental and computational modeling of oscillatory flow within a baffled tube containing periodic-tri-orifice baffle geometries , 2013, Comput. Chem. Eng..
[453] Chia-Chang Lin,et al. Ozone oxidation in a rotating packed bed , 2003 .
[454] Keith B. Prater,et al. Solid polymer fuel cells for transport and stationary applications , 1996 .
[455] Steve Perry,et al. Microchannel Process Technology for Compact Methane Steam Reforming , 2004 .
[456] Andrzej Stankiewicz,et al. An industrial view on the dynamic operation of chemical converters , 1995 .
[457] Thomas Melin,et al. Flow-through catalytic membrane reactors—Principles and applications , 2009 .
[458] Ignacio E. Grossmann,et al. Prosyn—an MINLP process synthesizer , 1990 .
[459] Igor Plazl,et al. Process Intensification through Microreactor Application , 2009 .
[460] Yoshiaki Kawajiri,et al. Comparison of various ternary simulated moving bed separation schemes by multi-objective optimization. , 2012, Journal of chromatography. A.
[461] Cheng-Ching Yu,et al. Design and Control of the Side Reactor Configuration for Production of Ethyl Acetate , 2008 .
[462] Tibor Chován,et al. Microfabricated devices in biotechnology and biochemical processing. , 2002, Trends in biotechnology.
[463] R. L. Motard,et al. Procedures for the initial design of chemical processing systems , 1977 .
[464] Yoshiaki Kawajiri,et al. Simultaneous modeling and optimization of nonlinear simulated moving bed chromatography by the prediction-correction method. , 2013, Journal of chromatography. A.
[465] Adam Harvey,et al. Fluid Mechanics and Design Aspects of a Novel Oscillatory Flow Screening Mesoreactor , 2005 .
[466] Paul N. Sharratt,et al. Hybrid modelling methodology to implement chemical process models as phenomena-based modules , 2007 .
[467] Jianping Li,et al. Process synthesis using block superstructure with automated flowsheet generation and optimization , 2018, AIChE Journal.
[468] P. Daoutidis,et al. Dynamics and control of an ethyl acetate reactive distillation column , 2001 .
[469] Ž. Olujić,et al. Equipment improvement trends in distillation , 2009 .
[470] Ernst Dieter Gilles,et al. A model library for membrane reactors implemented in the process modelling tool PROMoT , 2004, Comput. Chem. Eng..
[471] Fausto Gallucci,et al. Recent advances on membranes and membrane reactors for hydrogen production , 2013 .
[472] Geert Versteeg,et al. High-temperature membrane reactors: potential and problems , 1999 .
[473] Neha Sharma,et al. Control of Reactive Distillation Column: A Review , 2010 .
[474] Ernest J. Henley,et al. Separation Process Principles , 1998 .
[475] F. Teymour,et al. Numerical Simulation of Gas and Particle Flow in a Rotating Fluidized Bed , 2003 .
[476] Mirko Skiborowski,et al. Optimization-Based Approach To Process Synthesis for Process Intensification: General Approach and Application to Ethanol Dehydration , 2017 .
[477] M. Douglas LeVan,et al. Periodic states of adsorption cycles. IV. Direct optimization , 2002 .
[478] Vasilios Manousiouthakis,et al. Infinite-Dimensional State-Space (IDEAS) Approach to Globally Optimal Design of Distillation Networks Featuring Heat and Power Integration , 2004 .
[479] Efstratios N. Pistikopoulos,et al. PAROC—An integrated framework and software platform for the optimisation and advanced model-based control of process systems , 2015 .
[480] Azmi Mohd Shariff,et al. Using process stream index (PSI) to assess inherent safety level during preliminary design stage , 2012 .
[481] Yong-Ha Kim,et al. Modular Chemical Process Intensification: A Review. , 2017, Annual review of chemical and biomolecular engineering.
[482] A. S. Patil,et al. Portable fuel cell systems for America’s army: technology transition to the field , 2004 .
[483] Arvind Varma,et al. Optimal feed distribution in a packed-bed membrane reactor: The case of methanol oxidative dehydrogenation , 2004 .
[484] Volker Hessel,et al. Energy, catalyst and reactor considerations for (near)-industrial plasma processing and learning for nitrogen-fixation reactions , 2013 .
[485] V. Agreda,et al. High-purity methyl acetate via reactive distillation , 1990 .
[486] Arvind Varma,et al. Methanol oxidative dehydrogenation in a catalytic packed-bed membrane reactor: experiments and model , 2002 .
[487] T. K. Radhakrishnan,et al. Control System Design for a Single Feed ETBE Reactive Distillation Column , 2006 .
[488] Paul I. Barton,et al. DFBAlab: a fast and reliable MATLAB code for dynamic flux balance analysis , 2014, BMC Bioinformatics.
[489] Cheng-Ching Yu,et al. Optimal steady-state design of reactive distillation processes using simulated annealing , 2009 .
[490] Michael C. Georgiadis,et al. Optimization of Multibed Pressure Swing Adsorption Processes , 2009 .
[491] Ccps. Guidelines for Chemical Process Quantitative Risk Analysis , 1999 .
[492] Francis J. Doyle,et al. Nonlinear model-based control of a batch reactive distillation column , 1998 .
[493] Efstratios N. Pistikopoulos,et al. Modular representation synthesis framework for homogeneous azeotropic separation , 1999 .
[494] Krzysztof Gosiewski,et al. Homogeneous vs. catalytic combustion of lean methane—air mixtures in reverse-flow reactors , 2008 .
[495] Alírio E. Rodrigues,et al. Sorption-Enhanced Reaction With Simulated Moving Bed Reactor and PermSMBR Technologies , 2017 .
[496] Ignacio E. Grossmann,et al. A disjunctive programming approach for the optimal design of reactive distillation columns , 2001 .
[497] Robert S. Huss,et al. Green chemical engineering aspects of reactive distillation. , 2003, Environmental science & technology.
[498] Kirsi Immonen,et al. Evaluation of axial dispersion and mixing performance in oscillatory baffled reactors using CFD , 2013 .
[499] Ernst Dieter Gilles,et al. PROMOT: A Modeling Tool for Chemical Processes , 2000 .
[500] R. T. Yang,et al. Gas Separation by Adsorption Processes , 1987 .
[501] D. Glasser,et al. Geometry of the Attainable Region Generated by Reaction and Mixing: With and without Constraints , 1990 .
[502] R. C. Rodrigues,et al. Optimal design and operation of a certain class of asynchronous simulated moving bed processes. , 2006, Journal of chromatography. A.
[503] Costin Sorin Bildea,et al. Cyclic distillation – Design, control and applications , 2014 .
[504] Khellil Sefiane,et al. Modelling a novel miniaturised reactor/separator system , 2003 .
[505] Arthur Westerberg,et al. A retrospective on design and process synthesis , 2004, Comput. Chem. Eng..
[506] Wolfgang Marquardt,et al. Dynamic modeling of direct contact membrane distillation processes , 2012 .
[507] M. M. Faruque Hasan,et al. Simultaneous Process Synthesis and Process Intensification using Building Blocks , 2017 .
[508] Ki Bong Lee,et al. Production of fuel-cell grade hydrogen by thermal swing sorption enhanced reaction concept , 2008 .
[509] Wolfgang Marquardt,et al. Reaction networks – A rapid screening method , 2009 .
[510] L. Petzold,et al. DASPK: A new high order and adaptive time-integration technique with applications to mantle convection with strongly temperature-and pressure-dependent rheology , 1995 .
[511] Marianthi G. Ierapetritou. Bilevel Optimization: Feasibility Test and Flexibility Index , 2009, Encyclopedia of Optimization.
[512] Moses O. Tadé,et al. A NOVEL SPINNING DISC CONTINUOUS STIR TANK AND SETTLER REACTOR (SDCSTR) MODEL FOR CONTINUOUS SYNTHESIS OF TITANIA: A PHENOMENOLOGICAL MODEL , 2009 .
[513] Eric S. Fraga,et al. The Generation and Use of Partial Solutions in Process Synthesis , 1998 .
[514] J. Segovia-Hernández,et al. Reactive distillation: A review of optimal design using deterministic and stochastic techniques , 2015 .
[515] Michael R. Zachariah,et al. Numerical modeling of particle dynamics in a rotating disk chemical vapor deposition reactor , 1993 .
[516] F. Gallucci,et al. Advanced reactor concepts for oxidative coupling of methane , 2017 .
[517] Wim G. Haije,et al. Modeling Study of the Sorption-Enhanced Reaction Process for CO2 Capture. II. Application to Steam-Methane Reforming , 2009 .
[518] Grigori M. Sisoev,et al. Modelling of film flow over a spinning disk , 2003 .
[519] Sanjay M. Mahajani,et al. Industrial Applications of Reactive Distillation , 2003 .
[520] Meihong Wang,et al. Process intensification for post-combustion CO2 capture with chemical absorption: A critical review , 2015 .
[521] Christian Voss,et al. Applications of Pressure Swing Adsorption Technology , 2005 .
[522] F. Dautzenberg,et al. Process intensification using multifunctional reactors , 2001 .
[523] Jorge A. Marrero,et al. Group-contribution based estimation of pure component properties , 2001 .
[524] Efstratios N. Pistikopoulos,et al. Separation of nonideal mixtures based on mass/heat exchange principles. The entrainer selection and , 1997 .
[525] D. Vlachos. A Review of Multiscale Analysis: Examples from Systems Biology, Materials Engineering, and Other Fluid–Surface Interacting Systems , 2005 .
[526] P. K. Marhavilas,et al. Risk analysis and assessment methodologies in the work sites: On a review, classification and comparative study of the scientific literature of the period 2000–2009 , 2011 .
[527] David S. Sholl,et al. Material properties and operating configurations of membrane reactors for propane dehydrogenation , 2015 .
[528] Anton Alexandru Kiss,et al. Optimal Operation and Control of DWC , 2013 .
[529] Lorenz T. Biegler,et al. Simulation and optimization of pressure-swing adsorption systems for air separation , 2003 .
[530] S. V. Sancheti,et al. A review of engineering aspects of intensification of chemical synthesis using ultrasound. , 2017, Ultrasonics sonochemistry.
[531] Sebastian Engell,et al. Optimization-based design of reactive distillation columns using a memetic algorithm , 2011, Comput. Chem. Eng..
[532] Tom Van Gerven,et al. Non-dispersive absorption for CO2 capture: from the laboratory to industry , 2011 .
[533] Christodoulos A. Floudas,et al. Global Optimization in Design under Uncertainty: Feasibility Test and Flexibility Index Problems , 2001 .
[534] Amy R. Ciric,et al. Synthesis of nonequilibrium reactive distillation processes by MINLP optimization , 1994 .
[535] Eugeny Y. Kenig,et al. Dividing wall columns in chemical process industry: A review on current activities , 2011 .
[536] Anton Alexandru Kiss,et al. Advanced Control Strategies for DWC , 2013 .
[537] Stephen E. Zitney,et al. A Superstructure-Based Optimal Synthesis of PSA Cycles for Post-Combustion CO2 Capture , 2009 .
[538] Wolfgang Ehrfeld. Design guidelines and manufacturing methods for microreaction devices , 2002 .
[539] Athanasios Mantalaris,et al. Advanced model‐based control strategies for the intensification of upstream and downstream processing in mAb production , 2017, Biotechnology progress.
[540] J. Álvarez-Ramírez,et al. A robust PI control configuration for a high-purity ethylene glycol reactive distillation column , 2000 .
[541] Jacob K. White,et al. A computer-aided design system for microelectromechanical systems (MEMCAD) , 1992 .
[542] Adrian Bonilla-Petriciolet,et al. Optimization of Intensified Separation Processes using Differential Evolution with Tabu List , 2017 .
[543] Davide Fissore,et al. Design and testing of small‐scale unsteady‐state afterburners and reactors , 2005 .
[544] Yong Wang,et al. Review of developments in portable hydrogen production using microreactor technology. , 2004, Chemical reviews.
[545] Christos Georgakis,et al. Operability‐based determination of feasible control constraints for several high‐dimensional nonsquare industrial processes , 2010 .
[546] Johan Grievink,et al. Process intensification and process systems engineering: A friendly symbiosis , 2008, Comput. Chem. Eng..
[547] Ignacio E. Grossmann,et al. Optimal synthesis of complex distillation columns using rigorous models , 2005, Comput. Chem. Eng..
[548] Milorad P. Dudukovic,et al. Mass-transfer in rotating packed beds—II. Experimental results and comparison with theory and gravity flow , 1989 .
[549] William L. Luyben,et al. Plantwide control of an isopropyl alcohol dehydration process , 2006 .
[550] Wolfgang Marquardt,et al. DIVA—an open architecture for dynamic simulation , 1990 .
[551] C. Leonelli,et al. Microwave and ultrasonic processing: Now a realistic option for industry , 2010 .
[552] Rafiqul Gani,et al. An integrated computer aided system for integrated design of chemical processes , 1997 .
[553] Jianfeng Chen,et al. Micromixing Efficiency in a Rotating Packed Bed: Experiments and Simulation , 2005 .
[554] Tom Van Gerven,et al. RECENT DEVELOPMENTS IN MEMBRANE-BASED TECHNOLOGIES FOR CO2 CAPTURE , 2012 .
[555] Fernando V. Lima,et al. An optimization-based operability framework for process design and intensification of modular natural gas utilization systems , 2017, Comput. Chem. Eng..
[556] Ljubica Matijašević,et al. Dividing wall column—A breakthrough towards sustainable distilling , 2010 .
[557] Cheng Lin,et al. Hydrodynamics in a Rotating Packed Bed. I. A Novel Experimental Method , 2012 .
[558] Arturo Jiménez-Gutiérrez,et al. Optimal design of a multi-product reactive distillation system for silanes production , 2017, Comput. Chem. Eng..
[559] I. Grossmann,et al. ADVANCES IN MATHEMATICAL PROGRAMMING FOR THE SYNTHESIS OF PROCESS SYSTEMS , 1999 .
[560] David Shan-Hill Wong,et al. Controllability and energy efficiency of a high-purity divided wall column , 2007 .
[561] Guang Q. Wang,et al. Progress on Higee distillation—Introduction to a new device and its industrial applications , 2011 .
[562] Moonyong Lee,et al. Review of Retrofitting Distillation Columns Using Thermally Coupled Distillation Sequences and Dividing Wall Columns to Improve Energy Efficiency , 2014 .
[563] Ricardo Nuno Correia Pereira,et al. Enhanced Gas−Liquid Mass Transfer of an Oscillatory Constricted-Tubular Reactor , 2008 .
[564] Alírio E. Rodrigues,et al. Simulation of five-step one-bed sorption-enhanced reaction process , 2002 .
[565] Ignacio E. Grossmann,et al. Optimal process design under uncertainty , 1983 .
[566] Muhammad A. Al-Arfaj,et al. Comparative control study of ideal and methyl acetate reactive distillation , 2002 .
[567] R. A. Gaska,et al. Controlled Cycling Distillation in Sieve and Screen Plate Towers , 1961 .
[568] D. Glasser,et al. The attainable region for systems with mixing and multiple-rate processes: finding optimal reactor structures , 1994 .
[569] Grigorii A. Bunimovich,et al. SO2 oxidation in a reverse-flow reactor: Influence of a vanadium catalyst dynamic properties , 1995 .
[570] Faïçal Larachi,et al. Analysis of flow in rotating packed beds via CFD simulations—Dry pressure drop and gas flow maldistribution , 2009 .
[571] Chung-Sung Tan,et al. Absorption of carbon dioxide with piperazine and its mixtures in a rotating packed bed , 2006 .
[572] A. I. Stankiewicz,et al. Energy Matters: Alternative Sources and Forms of Energy for Intensification of Chemical and Biochemical Processes , 2006 .
[573] Dionisios G. Vlachos,et al. Controlling Homogeneous Chemistry in Homogeneous—Heterogeneous Reactors: Application to Propane Combustion , 2009 .
[574] Kaisa Miettinen,et al. Interactive multi-objective optimization for simulated moving bed processes , 2007 .
[575] Robert E. Hayes,et al. Reversing flow catalytic converter for a natural gas/diesel dual fuel engine , 2001 .
[576] Christos Georgakis,et al. Steady-state operability characteristics of idealized reactors , 2001 .
[577] Sebastian Engell,et al. Generic model framework for the synthesis of structured reactive separation processes , 2006 .
[578] Sebastian Engell,et al. Optimization-based control of a reactive simulated moving bed process for glucose isomerization , 2004 .
[579] J. van der Schaaf,et al. Single phase fluid-stator heat transfer in a rotor-stator spinning disc reactor , 2014 .
[580] Lorenz T. Biegler,et al. A unified approach for the simultaneous synthesis of reaction, energy and separation systems , 1993 .
[581] L. T. Fan,et al. Graph-theoretic approach to process synthesis: axioms and theorems , 1992 .
[582] Wolfgang Marquardt,et al. Shortcut method for kinetically controlled reactive distillation systems , 2003 .
[583] Vincent G. Grassi,et al. Process Design and Control of Extractive Distillation , 1992 .
[584] D. Vlachos,et al. Stability and performance of catalytic microreactors: Simulations of propane catalytic combustion on Pt , 2008 .
[585] Seda Keskin,et al. A review of ionic liquids towards supercritical fluid applications , 2007 .
[586] Jesús Rafael Alcántara-Ávila,et al. Controllability analysis of thermodynamically equivalent thermally coupled arrangements for quaternary distillations , 2008 .
[587] Françoise Couenne,et al. Robust Control of a Pressure Swing Adsorption Process , 2011 .
[588] Nitin Kaistha,et al. Evaluation of ratio control schemes in a two-temperature control structure for a methyl acetate reactive distillation column , 2009 .
[589] Mario R. Eden,et al. An Integrated Framework for Flowsheet Synthesis and Molecular Design , 2012 .
[590] Mahmoud M. El-Halwagi,et al. Process intensification: New understanding and systematic approach , 2012 .
[591] I. Grossmann,et al. A systematic modeling framework of superstructure optimization in process synthesis , 1999 .
[592] Roberto Rosa,et al. A review on combustion synthesis intensification by means of microwave energy , 2013 .
[593] V. D. Dimitriadis,et al. Flexibility Analysis of Dynamic Systems , 1995 .
[594] Jeffrey J. Siirola,et al. Process synthesis prospective , 2004, Comput. Chem. Eng..
[595] G. Kaibel,et al. Dividing wall columns: Fundamentals and recent advances , 2010 .
[596] Joseph Broun Powell,et al. Application of multiphase reaction engineering and process intensification to the challenges of sustainable future energy and chemicals , 2017 .
[597] Mário Costa,et al. Modelling transport phenomena and chemical reactions in automotive three-way catalytic converters , 2009 .
[598] Andrei G. Fedorov,et al. Hydrogen generation in a reverse‐flow microreactor: 1. Model formulation and scaling , 2005 .
[599] Ž. Olujić,et al. Combining Reaction with Distillation: Hydrodynamic and Mass Transfer Performance of Modular Catalytic Structured Packings , 2006 .
[600] Ali Elkamel,et al. Superstructure optimization for the synthesis of chemical process flowsheets: Application to optimal hybrid membrane systems , 2009 .
[601] Mohit Tawarmalani,et al. Thermal coupling links to liquid‐only transfer streams: A path for new dividing wall columns , 2014 .
[602] A. Avami. Conceptual Design of Double‐Feed Reactive Distillation Columns , 2013 .
[603] Dionisios G. Vlachos,et al. Scale-out of Microreactor Stacks for Portable and Distributed Processing: Coupling of Exothermic and Endothermic Processes for Syngas Production , 2010 .
[604] Muhammad A. Al-Arfaj,et al. Control of ethylene glycol reactive distillation column , 2002 .
[605] Dominique M. Roberge,et al. An Integrated Approach Combining Reaction Engineering and Design of Experiments for Optimizing Reactions , 2004 .
[606] Javier Bilbao,et al. Membrane Reactors for in Situ Water Removal: A Review of Applications , 2013 .
[607] B. R. Young,et al. Modeling and Model Predictive Control of Composition and Conversion in an ETBE Reactive Distillation Column , 2005 .
[608] Inmaculada Ortiz,et al. An overview of the mathematical modelling of liquid membrane separation processes in hollow fibre contactors , 2009 .
[609] Jixin Qian,et al. Modeling, Control, and Optimization of Ideal Internal Thermally Coupled Distillation Columns , 2000 .
[610] Azmi Mohd Shariff,et al. Process route index (PRI) to assess level of explosiveness for inherent safety quantification , 2009 .
[611] Xiongwei Ni,et al. Suspension polymerization of acrylamide in an oscillatory baffled reactor: From drops to particles , 2001 .
[612] Efstratios N. Pistikopoulos,et al. Simultaneous Process Scheduling and Control: A Multiparametric Programming-Based Approach , 2018 .
[613] Stanislaw E. Golunski,et al. What is the point of on-board fuel reforming? , 2010 .
[614] Mirko Skiborowski,et al. Synthesis of Intensified Processes from a Superstructure of Phenomena Building Blocks , 2016 .
[615] Lorenz T. Biegler,et al. Comparison of configurations of a four-column simulated moving bed process by multi-objective optimization , 2008 .
[616] Efstratios N. Pistikopoulos,et al. A framework for the synthesis of reactive absorption columns , 2006 .
[617] Efstratios N. Pistikopoulos,et al. A novel flexibility analysis approach for processes with stochastic parameters , 1990 .
[618] Efstratios N. Pistikopoulos,et al. Flexibility analysis and design of dynamic processes with stochastic parameters , 1998 .
[619] L. Biegler,et al. Optimization strategies for simulated moving bed and PowerFeed processes , 2006 .
[620] José P. B. Mota,et al. Use of Single-Column Models for Efficient Computation of the Periodic State of a Simulated Moving-Bed Process , 2006 .
[621] Moses O. Tadé,et al. Adaptive Control of an ETBE Reactive Distillation Column , 2004 .
[622] James R. Fair,et al. Distillation Studies in a High-Gravity Contactor , 1996 .
[623] Luka A. ŽivkoviĿ,et al. A method for reactor synthesis based on process intensification principles and optimization of superstructure consisting of phenomenological modules , 2016 .
[624] Anton A. Kiss,et al. Distillation technology - still young and full of breakthrough opportunities , 2014 .
[625] Pablo Marín,et al. Simplified design methods of reverse flow catalytic combustors for the treatment of lean hydrocarbon–air mixtures , 2009 .
[626] Ignacio E. Grossmann,et al. An Approach for Solvent Selection in Extractive Distillation Systems Including Safety Considerations , 2014 .
[627] Ferenc Friedler,et al. Combinatorial algorithms for process synthesis , 1992 .
[628] Adam Harvey,et al. Operation and Optimization of an Oscillatory Flow Continuous Reactor , 2001 .
[629] Jeffrey J. Siirola,et al. Strategic process synthesis : Advances in the hierarchical approach , 1996 .
[630] Fernão D. Magalhães,et al. Cyclic adsorption separation processes: analysis strategy and optimization procedure , 2003 .
[631] Wolfgang Marquardt,et al. A unifying framework for optimization-based design of integrated reaction-separation processes , 2015, Comput. Chem. Eng..
[632] D. Rudd,et al. Computer-Aided Synthesis of Chemical Process Designs. From Reaction Path Data to the Process Task Network , 1971 .
[633] Sten Bay Jørgensen,et al. Cyclic distillation technology-a mini-review , 2016 .
[634] Antonello Barresi,et al. Simplified procedure for design of catalytic combustors with periodic flow reversal , 2001 .
[635] Efstratios N. Pistikopoulos,et al. Synthesis of reactive and combined reactor/separation systems utilizing a mass/heat exchange transfer module , 1999 .
[636] Pascal Dufour,et al. Multivariable model predictive control of a catalytic reverse flow reactor , 2003, Comput. Chem. Eng..
[637] Xiao Zhao,et al. Reactor network synthesis with guaranteed robust stability , 2016, Comput. Chem. Eng..
[638] Michael Baldea,et al. Robust autothermal microchannel reactors , 2015, Comput. Chem. Eng..
[639] Eugeny Y. Kenig,et al. Intelligent column internals for reactive separations , 2005 .
[640] Rafiqul Gani,et al. A computer-aided software-tool for sustainable process synthesis-intensification , 2017, Comput. Chem. Eng..
[641] Efstratios N. Pistikopoulos,et al. Simultaneous design and control optimisation under uncertainty , 2000 .
[642] Johann Stichlmair,et al. Mixed-Integer Nonlinear Programming Optimization of Reactive Distillation Processes , 2001 .
[643] Patrick Linke,et al. Synthesis and Optimization of Gas Permeation Membrane Networks , 2004 .
[644] Xinggao Liu,et al. Dynamics and control of high purity heat integrated distillation columns , 2005 .
[645] Hartmut Schoenmakers,et al. Model predictive control of integrated unit operations: Control of a divided wall column , 2004 .
[646] Kus Hidajat,et al. Optimal Operation of an Industrial-Scale Parex Process for the Recovery of p-Xylene from a Mixture of C8 Aromatics , 2005 .
[647] Qunxiong Zhu,et al. Temperature control of an ideal heat-integrated distillation column (HIDiC) , 2007 .
[648] Yong Luo,et al. Micromixing Efficiency Enhancement in a Rotating Packed Bed Reactor with Surface-Modified Nickel Foam Packing , 2015 .
[649] Alírio E. Rodrigues,et al. Sorption-enhanced reaction process with reactive regeneration , 2002 .
[650] Leonidas G. Bleris,et al. Towards embedded model predictive control for System-on-a-Chip applications , 2006 .
[651] P. M. Diéguez,et al. A CFD study on the effect of the characteristic dimension of catalytic wall microreactors , 2012 .
[652] Jiří Jaromír Klemeš,et al. Software tools overview: Process integration, modelling and optimisation for energy saving and pollution reduction , 2010 .
[653] Eugeniusz Molga,et al. Intensification of desorption processes by use of microwaves—An overview of possible applications and industrial perspectives , 2009 .
[654] Costin Sorin Bildea,et al. Reactive DWC leading the way to FAME and fortune , 2012 .
[655] Kai Guo,et al. Pressure Drop of Centripetal Gas Flow through Rotating Beds , 2000 .
[656] Irina Boiarkina,et al. The case for the photocatalytic spinning disc reactor as a process intensification technology: Comparison to an annular reactor for the degradation of methylene blue , 2013 .
[657] Brant A. Peppley,et al. Integrated fuel processors for fuel cell application : A review , 2007 .
[658] G. M. Ostrovsky,et al. Flexibility analysis and optimization of chemical plants with uncertain parameters , 1994 .
[659] K. Sundmacher,et al. Methodology for the Design of Optimal Chemical Reactors based on the Concept of Elementary Process Functions , 2010 .
[660] Michael F. Malone,et al. Feasibility and synthesis of hybrid reactive distillation systems , 2002 .
[661] Paul Watts,et al. The application of micro reactors to synthetic chemistry , 2001 .
[662] Michael Zeitz,et al. Periodic Control of a Pressure Swing Adsorption Plant , 2001 .
[663] Jc Jaap Schouten,et al. Residence time distribution in a single‐phase rotor–stator spinning disk reactor , 2013 .
[664] W. K. Lewis,et al. Principles of Gas Absorption. , 1924 .
[665] Yoshiaki Kawajiri,et al. Prediction‐correction method for optimization of simulated moving bed chromatography , 2013 .
[666] P. I. Barton,et al. DAEPACK: An Open Modeling Environment for Legacy Models , 2000 .
[667] P. Daoutidis,et al. Modeling, Analysis and Control of Ethylene Glycol Reactive Distillation Column , 1999 .
[668] Anton A. Kiss,et al. Heat-integrated reactive distillation process for synthesis of fatty esters , 2011 .
[669] Selen Cremaschi. A perspective on process synthesis: Challenges and prospects , 2015, Comput. Chem. Eng..
[670] Richard Lakerveld,et al. Application of generic principles of process intensification to solution crystallization enabled by a task-based design approach , 2010 .
[671] Moses O. Tadé,et al. Two-point control of a reactive distillation column for composition and conversion , 1999 .
[672] Hugo S. Caram,et al. The design of reverse flow reactors for catalytic combustion systems , 1995 .
[673] John H. Lienhard,et al. Scaling and fouling in membrane distillation for desalination applications: A review , 2015 .
[674] K. A. Amminudin,et al. Design and Optimization of Fully Thermally Coupled Distillation Columns: Part 1: Preliminary Design and Optimization Methodology , 2001 .
[675] Alírio E. Rodrigues,et al. Modeling and Simulation of a Simulated Moving Bed for the Separation of p-Xylene , 2002 .
[676] Z. Qian,et al. Industrial Applied and Modeling Research on Selective H2S Removal Using a Rotating Packed Bed , 2012 .
[677] Gerhard Schembecker,et al. READPERT - Development, selection and design of chemical reactors , 1995 .
[678] Yinglong Wang,et al. Insight into pressure-swing distillation from azeotropic phenomenon to dynamic control , 2017 .
[679] Lorenz T. Biegler,et al. Targeting strategies for the synthesis and energy integration of nonisothermal reactor networks , 1992 .
[680] A. Rodrigues,et al. Instrumental aspects of Simulated Moving Bed chromatography. , 2015, Journal of chromatography. A.
[681] Gerald Parkinson,et al. Dividing-wall columns find greater appeal , 2007 .
[682] Yong Wang,et al. Microreactor technology and process intensification , 2005 .
[683] Wim G. Haije,et al. Modeling Study of the Sorption-Enhanced Reaction Process for CO2 Capture. I. Model Development and Validation , 2009 .
[684] Lutz Tobiska,et al. Modeling of Membrane Reactors , 2010 .
[685] Rohit Kawathekar. Nonlinear model predictive control of a reactive distillation column , 2007 .
[686] Mahmoud M. El-Halwagi,et al. A Systems Approach for Process Simplification through Process Integration , 2012 .
[687] M. Morari,et al. On-line optimization via off-line parametric optimization tools , 2000 .
[688] V. K. Jayaraman,et al. Microchannel Reactors: Applications and Use in Process Development , 2005 .
[689] Cristofer Bravo-Bravo,et al. Extractive Dividing Wall Column: Design and Optimization , 2010 .
[690] Wei Wu,et al. Application of HIGEE process intensification technology in synthesis of petroleum sulfonate surfactant , 2010 .
[691] Michael Baldea,et al. Dividing wall column control: Common practices and key findings , 2016 .
[692] Hugo S. Caram,et al. Analysis of the Reverse Flow Chromatographic Reactor , 2004 .
[693] D. Glasser,et al. The attainable region and optimal reactor structures , 1990 .
[694] Jean-Marc Commenge,et al. Methodological framework for choice of intensified equipment and development of innovative technologies , 2013 .
[695] Adam Harvey,et al. Mixing Through Oscillations and Pulsations—A Guide to Achieving Process Enhancements in the Chemical and Process Industries , 2003 .
[696] Domingos Barbosa,et al. Optimization of reactive distillation processes with simulated annealing , 2000 .
[697] Yadollah Saboohi,et al. Shortcut design of reactive distillation columns , 2012 .
[698] Michael A. Schultz,et al. Reduce Costs with Dividing-Wall Columns , 2002 .
[699] K. S. Spiegler,et al. Thermodynamics of hyperfiltration (reverse osmosis): criteria for efficient membranes , 1966 .
[700] Patrick Linke,et al. Attainable reaction and separation processes from a superstructure‐based method , 2003 .
[701] Sebastian Engell,et al. Design of memetic algorithms for the efficient optimization of chemical process synthesis problems with structural restrictions , 2015, Comput. Chem. Eng..
[702] Fabrice Diehl,et al. On the hydrodesulfurization of FCC gasoline: a review , 2005 .
[703] Xiaohua Li,et al. Hydrodynamic Behavior in a Rotating Zigzag Bed , 2010 .
[704] Dominique M. Roberge,et al. Microreactor Technology: A Revolution for the Fine Chemical and Pharmaceutical Industries? , 2005 .
[705] Masaru Nakaiwa,et al. Internally Heat-Integrated Distillation Columns: A Review , 2003 .
[706] Rafiqul Gani,et al. A process synthesis-intensification framework for the development of sustainable membrane-based operations , 2014 .
[707] Paul N. Sharratt,et al. Phenomena-based modularisation of chemical process models to approach intensive options , 2008 .
[708] Diane Hildebrandt,et al. The attainable region for segregated, maximum mixed, and other reactor models , 1994 .
[709] Anton A. Kiss,et al. Process Intensification: Industrial Applications , 2016 .
[710] L. Biegler,et al. Constructive targeting approaches for the synthesis of chemical reactor networks , 1992 .
[711] M. Kothare. Dynamics and Control of Integrated Microchemical Systems , 2012 .
[712] Ignacio E. Grossmann,et al. Optimal synthesis of rotating packed bed reactor , 2017, Computers and Chemical Engineering.
[713] Mohamed Khayet,et al. A framework for better understanding membrane distillation separation process , 2006 .
[714] Patrick Linke,et al. Advanced process systems design technology for pollution prevention and waste treatment , 2004 .
[715] Anton A. Kiss,et al. A review on process intensification in HiGee distillation , 2017 .
[716] John N. Shadid,et al. MP Salsa: a finite element computer program for reacting flow problems. Part 1--theoretical development , 1996 .
[717] K. Sundmacher,et al. Analysis and optimal design of an ethylene oxide reactor , 2011 .
[718] C. Pantelides,et al. Optimal design of thermally coupled distillation columns , 1999 .
[719] Dionisios G. Vlachos,et al. Millisecond methane steam reforming via process and catalyst intensification , 2008 .
[720] Anton A. Kiss,et al. Novel applications of dividing-wall column technology to biofuel production processes. , 2013 .
[721] Pen-Chi Chiang,et al. Modeling ozone contacting process in a rotating packed bed , 2004 .
[722] Sharifah Rafidah Wan Alwi,et al. Process Integration and Intensification: Saving Energy, Water and Resources , 2014 .
[723] Tom Van Gerven,et al. Structure, energy, synergy, time - the fundamentals of Process Intensification , 2009 .
[724] Uthaiporn Suriyapraphadilok,et al. A computer-aided approach for achieving sustainable process design by process intensification , 2017, Comput. Chem. Eng..
[725] David L. Trent. Chemical Processing in High-Gravity Fields , 2018 .
[726] Diane Hildebrandt,et al. Linear programming formulations for attainable region analysis , 2002 .
[727] Hsiao-Ping Huang,et al. Design and Control of a Heat-Integrated Reactive Distillation System for the Hydrolysis of Methyl Acetate , 2010 .
[728] Jam Hans Kuipers,et al. A Review on Patents for Hydrogen Production Using Membrane Reactors , 2009 .
[729] Rajamani Krishna,et al. Modelling reactive distillation , 2000 .
[730] R. S. Besser,et al. Hydrocarbon hydrogenation and dehydrogenation reactions in microfabricated catalytic reactors , 2003 .
[731] Enrico Drioli,et al. State of the Art and Recent Progresses in Membrane Contactors , 2005 .
[732] Andrzej Górak,et al. Intensified reaction and separation systems. , 2011, Annual review of chemical and biomolecular engineering.
[733] William L. Luyben,et al. Reactive Distillation Design and Control , 2008 .
[734] Jörg Thömmes,et al. Membrane Chromatography—An Integrative Concept in the Downstream Processing of Proteins , 1995 .
[735] A. Olajossy,et al. Methane separation from coal mine methane gas by vacuum pressure swing adsorption , 2003 .
[736] Efstratios N. Pistikopoulos,et al. Hybrid generalized modular/collocation framework for distillation column synthesis , 2006 .
[737] Benjamin A. Wilhite,et al. Parametric Study of Solid-Phase Axial Heat Conduction in Thermally Integrated Microchannel Networks , 2008 .
[738] Ignasi Rodríguez-Roda,et al. Automatic control systems for submerged membrane bioreactors: a state-of-the-art review. , 2012, Water research.
[739] L. L. Macaluso,et al. ANNULAR CENTRIFUGAL CONTACTORS FOR MULTIPLE STAGE EXTRACTION PROCESSES , 2001 .
[740] R. Gani,et al. Group contribution based process flowsheet synthesis, design and modelling , 2005 .
[741] R. L. Motard,et al. Evolutionary search for an optimal limiting process flowsheet , 1977 .
[742] Johann Stichlmair,et al. Thermodynamic Fundamentals of Reactive Distillation , 1999 .
[743] Ignacio Tudela,et al. Simulation of the spatial distribution of the acoustic pressure in sonochemical reactors with numerical methods: a review. , 2014, Ultrasonics sonochemistry.
[744] Philip Lutze,et al. Reactive and membrane-assisted distillation: Recent developments and perspective , 2013 .
[745] Marco Stoller,et al. Reaction-precipitation by a spinning disc reactor: Influence of hydrodynamics on nanoparticles production , 2012 .
[746] Efstratios N. Pistikopoulos,et al. Decentralized Multiparametric Model Predictive Control for Domestic Combined Heat and Power Systems , 2016 .
[747] I-Lung Chien,et al. Design and Control of an Isopropyl Alcohol Dehydration Process via Extractive Distillation Using Dimethyl Sulfoxide as an Entrainer , 2008 .
[748] Chia-Chang Lin,et al. Prediction of Liquid Holdup in Countercurrent-Flow Rotating Packed Bed , 2000 .
[749] Thomas Melin,et al. State-of-the-art of reverse osmosis desalination , 2007 .