Intensified reaction and separation systems.
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[1] Colin Ramshaw,et al. Evaluation of Spinning Disk Reactor Technology for the Manufacture of Pharmaceuticals , 2000 .
[2] Enrico Drioli,et al. Integrating Membrane Contactors Technology and Pressure-Driven Membrane Operations for Seawater Desalination: Energy, Exergy and Costs Analysis , 2006 .
[3] C. Kappe,et al. Controlled microwave heating in modern organic synthesis. , 2004, Angewandte Chemie.
[4] H. Loesch,et al. Brute force in molecular reaction dynamics: A novel technique for measuring steric effects , 1990 .
[5] G. Bunimovich,et al. Reverse-Flow Operation in Fixed Bed Catalytic Reactors , 1996 .
[6] Johan Grievink,et al. Process intensification and process systems engineering: A friendly symbiosis , 2008, Comput. Chem. Eng..
[7] Rajamani Krishna,et al. Modelling reactive distillation , 2000 .
[8] Partha S. Goswami,et al. Process Intensification in Rotating Packed Beds (HIGEE): An Appraisal , 2004 .
[9] D. Herschbach,et al. Spatial orientation of molecules in strong electric fields and evidence for pendular states , 1991, Nature.
[10] Amiya K. Jana,et al. Heat integrated distillation operation , 2010 .
[11] Wolfgang Marquardt,et al. A Framework for the Systematic Design of Hybrid Separation Processes * * Supported by the Deutsche F , 2008 .
[12] James R. Fair,et al. Design Guidelines for Solid-Catalyzed Reactive Distillation Systems , 1999 .
[13] Ljubica Matijašević,et al. Dividing wall column—A breakthrough towards sustainable distilling , 2010 .
[14] Extraction columns in hydrometallurgy , 2005 .
[15] Andrzej Górak,et al. Pilot plant synthesis of n-propyl propionate via reactive distillation with decanter separator for reactant recovery. Experimental model validation and simulation studies , 2010 .
[16] D. J. Gunn. The optimization of bifunctional catalyst systems , 1967 .
[17] Norbert Asprion,et al. Selection and Pilot Plant Tests of New Absorbents for Post-Combustion Carbon Dioxide Capture , 2007 .
[18] M. Janssen,et al. Directional Dynamics in the Photodissociation of Oriented Molecules , 2004, Science.
[19] David W. Agar,et al. Theoretical studies on multifunctional catalysts with integrated adsorption sites , 2005 .
[20] René David,et al. The Effect of Ultrasound on Crystallisation‐Precipitation Processes: Some Examples and a New Segregation Model , 2007 .
[21] X. Ni. Continuous oscillatory baffled reactor technology , 2006 .
[22] Costas Tsouris,et al. Separation of CO2 from Flue Gas: A Review , 2005 .
[23] Sanjay M. Mahajani,et al. Industrial Applications of Reactive Distillation: Recent Trends , 2004 .
[24] Henrik Stapelfeldt,et al. Colloquium: Aligning molecules with strong laser pulses , 2003 .
[25] A. Drinkenburg,et al. The induction of pulses in trickle-bed reactors by cycling the liquid feed , 2001 .
[26] Frank Lipnizki,et al. Pervaporation-based hybrid process: a review of process design, applications and economics , 1999 .
[27] R. Zare,et al. Reaction dynamics of atomic chlorine with methane: Importance of methane bending and torsional excitation in controlling reactivity , 1998 .
[28] Christopher J. Brown,et al. Simulation of pressure swing adsorption in fuel ethanol production process , 2008, Comput. Chem. Eng..
[29] M. F. Malone,et al. Attainable regions for reaction with separation , 1997 .
[30] Kulprathipanja. Reactive Separation Processes , 2001 .
[31] Andrzej Stankiewicz,et al. Re-Engineering the Chemical Processing Plant , 2003 .
[32] Mamdouh A. Gadalla. Internal heat integrated distillation columns (iHIDiCs)—New systematic design methodology , 2009 .
[33] E. Maus,et al. INDUSTRIAL EXPERIENCE WITH HYBRID DISTILLATION – PERVAPORATION OR VAPOR PERMEATION APPLICATIONS , 2006 .
[34] R. Srivastava,et al. Flue gas desulfurization: the state of the art. , 2001, Journal of the Air & Waste Management Association.
[35] E. Maus,et al. Separation of methanol from methylesters by vapour permeation: experiences of industrial applications , 2002 .
[36] Achim Kienle,et al. Integrated chemical processes : synthesis, operation, analysis, and control , 2005 .
[37] R. Leuze,et al. Some milestone solvent extraction processes at the Oak Ridge National Laboratory , 1978 .
[38] G. Kwant,et al. Influence of Operating Conditions and Column Configuration on the Performance of Reactive Distillation Columns with Liquid—Liquid Separators , 2008 .
[39] F. Keil,et al. Modeling of Process Intensification , 2007 .
[40] Henner Schmidt-Traub,et al. Integrated reaction and separation operations : modelling and experimental validation , 2006 .
[41] A. Stankiewicz,et al. Microwaves in Heterogeneous Gas‐Phase Catalysis: Experimental and Numerical Approaches , 2009 .
[42] M. Meyer,et al. Hydrodynamic and mass transfer efficiency of ceramic foam packing applied to distillation , 2009 .
[43] Peter Moritz,et al. Reactive distillation with KATAPAK , 2001 .
[44] M. Schultes,et al. How to Surpass Conventional and High Capacity Structured Packings with Raschig Super-Pak , 2007 .
[45] W. Kong. STUDIES OF ELECTRONIC PROPERTIES OF MEDIUM AND LARGE MOLECULES ORIENTED IN A STRONG UNIFORM ELECTRIC FIELD , 2001 .
[46] Hans-Jörg Bart,et al. Vom Einzeltropfen zur Extraktionskolonne , 2006 .
[47] Andreas Beckmann,et al. Reactive distillation : industrial applications, process design & scale-up , 2001 .
[48] H. Dodziuk. Molecules with Holes – Cyclodextrins , 2006 .
[49] Achim Hoffmann,et al. Catalytic distillation in structured packings: Methyl acetate synthesis , 2001 .
[50] R. Zarzycki,et al. Absorption: Fundamentals & Applications , 2013 .
[51] Friedrich,et al. Pendular alignment of paramagnetic molecules in uniform magnetic fields. , 1994, Physical review letters.
[52] John D. Thornton,et al. Science and practice of liquid-liquid extraction , 1991 .
[53] T. Kudra,et al. Pulse Combustion: An Advanced Technology for Efficient Drying , 2002 .
[54] N. J. Miles,et al. Microwave heating applications in environmental engineering—a review , 2002 .
[55] Andrzej Górak,et al. Hybrid separation processes—Combination of reactive distillation with membrane separation , 2007 .
[56] Tom Van Gerven,et al. Structure, energy, synergy, time - the fundamentals of Process Intensification , 2009 .
[57] Friedrich,et al. Alignment and trapping of molecules in intense laser fields. , 1995, Physical review letters.
[58] G. Jan. Reactive distillation: The front-runner of industrial process intensification A full review of commercial applications, research, scale-up, design and operation , 2007 .
[59] S. Stolte,et al. Hexapole state selection and focusing vs. brute force orientation of beam molecules , 1995 .
[60] Modeling of homogeneous reactive separation processes in packed columns , 1999 .
[61] Ross Taylor,et al. Multicomponent mass transfer , 1993 .
[62] Robert J. Davis,et al. New perspectives on basic zeolites as catalysts and catalyst supports , 2003 .
[63] Ž. Olujić,et al. Equipment improvement trends in distillation , 2009 .
[64] R. Eldridge,et al. Olefin/Paraffin Separations by Reactive Absorption: A Review , 1998 .
[65] Massimo Morbidelli,et al. A continuous multicolumn countercurrent solvent gradient purification (MCSGP) process , 2007, Biotechnology and bioengineering.
[66] M. S. Ray. Absorption: Fundamentals and Applications, by R. Zarzycki and A. Chacuk, Pergamon Press, Oxford, UK (1993). 638 pages. ISBN 0-08-040263-1. , 2008 .
[67] L. H. Thompson,et al. Sonochemistry: Science and Engineering , 1999 .
[68] Lothar Spiegel,et al. Distillation Columns with Structured Packings in the Next Decade , 2003 .
[69] Eugeny Y. Kenig,et al. Reactive Distillation in a Dividing Wall Column: Rate-Based Modeling and Simulation , 2007 .
[70] Jacob A. Moulijn,et al. Dynamic operation of chemical reactors : friend or foe? , 1998 .
[71] Dionisios G. Vlachos,et al. Millisecond methane steam reforming via process and catalyst intensification , 2008 .
[72] K. Mosbach. The promise of molecular imprinting. , 2006, Scientific American.
[73] Henner Schmidt-Traub,et al. Preparative Chromatography: of Fine Chemicals and Pharmaceutical Agents , 2005 .
[74] A. Stankiewicz. Reactive separations for process intensification: an industrial perspective , 2003 .
[75] M. Stöcker. Gas phase catalysis by zeolites , 2005 .
[76] Colin Ramshaw,et al. Process intensification : heat and mass transfer characteristics of liquid films on rotating discs , 1999 .
[77] Anton A. Kiss. Separative reactors for integrated production of bioethanol and biodiesel , 2010, Comput. Chem. Eng..
[78] Richard S.H. Mah,et al. Distillation with secondary reflux and vaporization: A comparative evaluation , 1977 .
[79] Thomas J. Curtiss,et al. Hexapole state-selection and orientation of asymmetric top molecules: CH2F2 , 1999 .
[80] C. Easton. Cyclodextrin-based catalysts and molecular reactors , 2005 .
[81] A. Moll,et al. Modifications to Structured Packings to Increase Their Capacity , 2003 .
[82] Weidong Zhu,et al. Reactant-Selective Hydrogenation over Composite Silicalite-1-Coated Pt/TiO2 Particles , 2004 .
[83] Albert Renken,et al. Periodic operation of catalytic reactors—introduction and overview , 1995 .
[84] Jacob A. Moulijn,et al. Structured Catalysts and Reactors , 2005 .
[85] C. Cha,et al. Microwave Regeneration of Activated Carbon Used for Removal of Solvents from Vented Air , 2000, Journal of the Air & Waste Management Association.
[86] G. Kaibel. Distillation columns with vertical partitions , 1987 .
[87] Jacob A. Moulijn,et al. Structured Packings for Multiphase Catalytic Reactors , 2008 .
[88] Mark E. Davis,et al. Rational Catalyst Design via Imprinted Nanostructured Materials , 1996 .
[89] Pervaporation Comes of Age , 2022 .
[90] Marc-Olivier Coppens,et al. Scaling-up and -down in a Nature-Inspired Way , 2005 .
[91] J. Loison,et al. Molecular Axis Orientation by the "Brute Force" Method , 1995 .
[92] Efrem Curcio,et al. A Review on membrane crystallization , 2009 .
[93] R. Weiss. Thermotropic liquid crystals as reaction media for mechanistic investigations1 , 1988 .
[94] K. Sundmacher,et al. Reactive distillation : status and future directions , 2003 .
[95] Gerhard Schembecker,et al. Comparison of process concepts for preparative chromatography , 2010 .
[96] Takuji Yamamoto,et al. AN INTERNALLY HEAT-INTEGRATED DISTILLATION COLUMN (HIDiC) IN JAPAN , 2006 .
[97] A. Schulte-Schulze-Berndt,et al. Nitrogen generation by pressure swing adsorption based on carbon molecular sieves , 1993 .
[98] R. Zengerle,et al. Patterning of flow and mixing in rotating radial microchannels , 2006 .
[99] Eugeny Y. Kenig,et al. Modelling of reactive separation processes: reactive absorption and reactive distillation , 2003 .
[100] Enrico Drioli,et al. Preparation of Enzyme Crystals with Tunable Morphology in Membrane Crystallizers , 2005 .
[101] Tom Van Gerven,et al. A review of intensification of photocatalytic processes , 2007 .
[102] Nick Wynn,et al. Reactions and separations: pervaporation comes of age , 2001 .
[103] C. von Scala,et al. Kontinuierliche Herstellung von kosmetischen Fettsäureestern mittels Reaktivdestillation und Pervaporation , 2005 .
[104] P. Alves,et al. Anion-exchange membrane chromatography for purification of rotavirus-like particles , 2008 .
[105] Lei Shao,et al. High-gravity process intensification technology and application , 2010 .
[106] K Rajalakshmi,et al. Structured Catalysts and Reactors , 2010, Focus on Catalysts.
[107] Ajay Kumar,et al. Gas-Liquid Mass Transfer Studies in Sonochemical Reactors , 2004 .
[108] Juan Gabriel Segovia-Hernández,et al. Feasibility study of a thermally coupled reactive distillation process for biodiesel production , 2010 .
[109] S. Tlatlik,et al. Process synthesis for reactive separations , 2003 .
[110] Javier Fontalvo,et al. Comparing Pervaporation and Vapor Permeation Hybrid Distillation Processes , 2005 .
[111] Kj Krzysztof Ptasinski,et al. Electric Field Driven Separations: Phenomena and Applications , 1992 .