Heat Integrated Milk Powder Production
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[1] A. Goula,et al. An Advanced Centrifugal Technique to Characterize the Sticking Properties of Tomato Pulp during Drying , 2007 .
[2] Rajesh Chatterjee. Characterising stickiness of dairy powders : a thesis presented in partial fulfilment of the requirements for the degree of Master of Technology in Bioprocess Engineering, Massey University , 2004 .
[3] Martin John Atkins,et al. Numerical performance comparison of different tube cross-sections for heat recovery from particle-laden exhaust gas streams , 2012 .
[4] M. S. Abd-Elhady,et al. Minimum gas speed in heat exchangers to avoid particulate fouling , 2004 .
[5] Miguel J. Bagajewicz,et al. Energy savings in the total site heat integration across many plants , 2000 .
[6] Gregory F Brooks. The sticking and crystallisation of amorphous lactose : a thesis presented in partial fulfilment of the requirements for the degree of Master of Technology in Chemical Technology at Massey University , 2000 .
[7] Lindsay J. Robertson,et al. Process integration study of a milk powder plant , 1993 .
[8] R. Smith,et al. Targets and design for minimum number of shells in heat exchanger networks , 1989 .
[9] Robin Smith,et al. Chemical Process: Design and Integration , 2005 .
[10] Hertz. On the Contact of Elastic Solids , 1882 .
[11] D. Bouris,et al. Design of a novel, intensified heat exchanger for reduced fouling rates , 2005 .
[12] S. Kakaç,et al. Heat Exchangers: Selection, Rating, and Thermal Design , 1997 .
[13] Martin John Atkins,et al. Methods for improving heat exchanger area distribution and storage temperature selection in heat recovery loops , 2013 .
[14] Miguel J. Bagajewicz,et al. Multiple plant heat integration in a total site , 2002 .
[15] Jenny Y Zuo. The stickiness curves of dairy powder : a thesis presented in partial fulfilment of the requirements for the degree of Master of Technology in Bioprocess Engineering at Massey University , 2004 .
[16] Tony Howes,et al. Stickiness measurement techniques for food powders: a review , 2004 .
[17] Michael R.W. Walmsley,et al. Non‐continuous and variable rate processes: optimisation for energy use , 2007 .
[18] Kevin C. Furman,et al. Computational complexity of heat exchanger network synthesis , 2001 .
[19] Kun Soo Chang,et al. Synthesis of maximum energy recovery networks in batch processes , 1994 .
[20] J. Abrahamson,et al. Fines Loadings in Milk Powder Plants with Washable Baghouses , 2007 .
[21] David J. Kukulka,et al. Development and evaluation of enhanced heat transfer tubes , 2011 .
[22] T. G. Walmsley,et al. Effect of Angle on Particle Deposition in an Impingement Jet , 2010 .
[23] S. E. Papadakis,et al. CORRELATIONS FOR THE EQUILIBRIUM MOISTURE CONTENT OF SOI.IDS , 1993 .
[24] Vinayak Eswaran,et al. Heat transfer enhancement in cross-flow heat exchangers using oval tubes and multiple delta winglets , 2003 .
[25] C. J. King,et al. Sticking and Agglomeration of Hygroscopic, Amorphous Carbohydrate and Food Powders , 1988 .
[26] J. A. Greenwood,et al. The mechanics of adhesion of viscoelastic solids , 1981 .
[27] Nikin Patel,et al. Determination of the Surface Free Energy of Crystalline and Amorphous Lactose by Atomic Force Microscopy Adhesion Measurement , 2006, Pharmaceutical Research.
[28] T. Langrish,et al. An Experimental Investigation of the Wall Deposition of Milk Powder in a Pilot-Scale Spray Dryer , 2003 .
[29] Bengt Sundén,et al. Plate Heat Exchangers: Design, Applications and Performance , 2007 .
[30] Bodo Linnhoff,et al. Total site targets for fuel, co-generation, emissions, and cooling , 1993 .
[31] U. V. Shenoy,et al. Heat Exchanger Network Synthesis:: Process Optimization by Energy and Resource Analysis , 1995 .
[32] R. M. Davies,et al. The determination of static and dynamic yield stresses using a steel ball , 1949, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[33] X. D. Chen,et al. Combined Influences of Humidity and Temperature upon the Inter-Particle Stickiness of a Whole Milk Powder , 2004 .
[34] D. A. Reay. A selection of heat recovery applications illustrated by means of case studies , 1982 .
[35] Brent R. Young,et al. A controllability index for heat exchanger networks , 2003 .
[36] Miguel J. Bagajewicz,et al. Targeting procedures for energy savings by heat integration across plants , 1999 .
[37] Jiří Jaromír Klemeš,et al. Total Site Targeting with Stream Specific Minimum Temperature Difference , 2012 .
[38] Sean X. Q. Lin,et al. Desorption isotherm of milk powders at elevated temperatures and over a wide range of relative humidity , 2005 .
[39] Clive J Roberts,et al. Elastic modulus measurements from individual lactose particles using atomic force microscopy. , 2007, International journal of pharmaceutics.
[40] Yvonne Koch. Sustainability In The Process Industry Integration And Optimization , 2016 .
[41] P. Stehlík,et al. Calculation Tool for Particulate Fouling Prevention of Tubular Heat Transfer Equipment , 2010 .
[42] G. Bergeles,et al. Numerical evaluation of alternate tube configurations for particle deposition rate reduction in heat exchanger tube bundles , 2001 .
[43] John R. Flower,et al. Synthesis of heat exchanger networks: I. Systematic generation of energy optimal networks , 1978 .
[44] Jalel Labidi,et al. Pinch and exergy based thermosolar integration in a dairy process , 2013 .
[45] X. D. Chen,et al. Glass transition and caking of spray‐dried lactose , 1996 .
[46] K. Johnson,et al. Mechanics of adhesion , 1998 .
[47] Martin John Atkins,et al. Minimising carbon emissions and energy expended for electricity generation in New Zealand through to 2050 , 2014 .
[48] Chi-Chuan Wang,et al. Data reduction for air-side performance of fin-and-tube heat exchangers , 2000 .
[50] Luis Puigjaner,et al. Targeting and design methodology for reduction of fuel, power and CO2 on total sites , 1997 .
[51] Hélio Aparecido Navarro,et al. A new approach for thermal performance calculation of cross-flow heat exchangers , 2005 .
[52] Rosalind A Murti. The effect of lactose source on the stickiness of dairy powders : a thesis presented in partial fulfilment of the requirements for the degree of Master of Engineering in Bioprocess Engineering , 2006 .
[53] Stanislaw Sieniutycz,et al. Energy Optimization in Process Systems , 2009 .
[54] T. Howes,et al. Relating the Stickiness Property of Foods Undergoing Drying and Dried Products to their Surface Energetics , 2005 .
[55] Spahn,et al. Model for collisions in granular gases. , 1996, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[56] Petr Stehlík,et al. Conventional versus specific types of heat exchangers in the case of polluted flue gas as the process fluid – A review , 2011 .
[57] Warren D. Seider,et al. Product and Process Design Principles: Synthesis, Analysis, and Evaluation , 1998 .
[58] G. T. Polley,et al. Design of energy storage systems for batch process plants , 1996 .
[59] James M. Douglas,et al. Conceptual Design of Chemical Processes , 1988 .
[60] Timothy A. G. Langrish,et al. An Investigation of Milk Powders Produced by a Laboratory-Scale Spray Dryer , 2005 .
[61] Joris Flapper,et al. Reduce energy use and greenhouse gas emissions from global dairy processing facilities , 2011 .
[62] John E. Bronlund,et al. Stickiness of skim milk powder using the particle gun technique , 2009 .
[63] R. Webb. Principles of Enhanced Heat Transfer , 1994 .
[64] G. P. Johari,et al. The glass–liquid transition of hyperquenched water , 1987, Nature.
[65] Y. Roos,et al. Water sorption and time-dependent crystallization behaviour of freeze-dried lactose-salt mixtures , 2007 .
[66] T. Mcnelley,et al. Temperature dependence of , 1993, Metallurgical and Materials Transactions A.
[67] P. S. Jones,et al. The optimal design of integrated evaporation systems , 1990 .
[68] G. J. Ashton,et al. On pinch technology based procedures for the design of batch processes , 1988 .
[69] Martin John Atkins,et al. Process integration between individual plants at a large dairy factory by the application of heat recovery loops and transient stream analysis , 2012 .
[70] Tadeusz Kudra,et al. Sticky Region in Drying—Definition and Identification , 2003 .
[71] Martin John Atkins,et al. Improving energy recovery in milk powder production through soft data optimisation , 2013 .
[72] Ian C. Kemp,et al. Pinch Analysis and Process Integration: A User Guide on Process Integration for the Efficient Use of Energy , 2007 .
[73] Timothy A. G. Langrish,et al. COMPARISON OF GLASS TRANSITION TEMPERATURE AND STICKY POINT TEMPERATURE FOR SKIM MILK POWDER , 2002 .
[74] Jorge Otávio Trierweiler,et al. Optimal heat exchanger network synthesis: A case study comparison , 2013 .
[75] F. Pettersson. Synthesis of large-scale heat exchanger networks using a sequential match reduction approach , 2005, Comput. Chem. Eng..
[76] James S. Taylor,et al. Ideal Copolymers and the Second-Order Transitions of Synthetic Rubbers. I. Noncrystalline Copolymers , 1953 .
[77] B. Linnhoff,et al. Pinch analysis : a state-of-the-art overview : Techno-economic analysis , 1993 .
[78] Ian C. Kemp,et al. Reducing Dryer Energy Use by Process Integration and Pinch Analysis , 2005 .
[79] Necati Özkan,et al. Characterization of stickiness and cake formation in whole and skim milk powders , 2002 .
[80] Kevin C. Furman,et al. A Critical Review and Annotated Bibliography for Heat Exchanger Network Synthesis in the 20th Century , 2002 .
[81] K. Johnson. Continuum mechanics modeling of adhesion and friction , 1996 .
[82] G. Polley,et al. Pressure drop considerations in the retrofit of heat exchanger networks , 1990 .
[83] U. V. Shenoy,et al. Aggregate Planning in Supply Chains by Pinch Analysis , 2002 .
[84] Brent R. Young,et al. Towards Integrated Process and Control System Synthesis for Heat‐Integrated Plants , 2008 .
[85] A. Busnaina,et al. The removal of deformed submicron particles from silicon wafers by spin rinse and megasonics , 2000 .
[86] Bodo Linnhoff,et al. A User guide on process integration for the efficient use of energy , 1994 .
[87] John E. Bronlund,et al. Analysis of particle-gun-derived dairy powder stickiness curves , 2007 .
[88] Daniel Favrat,et al. Indirect and Mixed Direct-Indirect Heat Integration of Batch Processes Based on Pinch Analysis , 2001 .
[89] J. Smith. Moisture Sorption: Practical Aspects of Isotherm Measurement and Use , 1986 .
[90] Peter Glavič,et al. Design of the optimal total site heat recovery system using SSSP approach , 2006 .
[91] K. Jouppila,et al. Water Sorption and Time-Dependent Phenomena of Milk Powders , 1994 .
[92] Martin John Atkins,et al. Fouling and pressure drop analysis of milk powder deposition on the front of parallel fins , 2013 .
[93] B. Linnhoff,et al. The pinch design method for heat exchanger networks , 1983 .
[94] M. Siddique,et al. Recent Advances in Heat Transfer Enhancements: A Review Report , 2010 .
[95] Martin John Atkins,et al. THE CHALLENGE OF INTEGRATING NON-CONTINUOUS PROCESSES – MILK POWDER PLANT CASE STUDY , 2009 .
[96] Mofid Gorji-Bandpy,et al. Optimization of heat exchanger network , 2011 .
[97] G. Reklaitis,et al. Optimal scheduling of cyclic batch processes for heat integration. I: Basic formulation , 1995 .
[98] Ignacio E. Grossmann,et al. Simultaneous optimization models for heat integration. III, Process and heat exchanger network optimization , 1990 .
[99] B. Qvale,et al. A Simple Technique for Analyzing Waste-Heat Recovery with Heat-Storage in Batch Processes , 1993 .
[100] Peter Glavič,et al. Waste heat integration between processes , 2002 .
[101] S. Palzer. The effect of glass transition on the desired and undesired agglomeration of amorphous food powders , 2005 .
[102] G. A. D. Briggs,et al. The effect of tangential force on the contact of elastic solids in adhesion , 1977, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[103] J. Bronlund,et al. Stickiness curves of high fat dairy powders using the particle gun , 2007 .
[104] John E. Bronlund,et al. Development of stickiness in amorphous lactose at constant T−Tg levels , 2005 .
[105] François Maréchal,et al. Heat pump integration in a cheese factory , 2011 .
[106] J. Porteiro,et al. Experimental evaluation of the critical local wall shear stress around cylindrical probes fouled by diesel exhaust gases , 2012 .
[107] T. Langrish,et al. The effect of surface composition on the functional properties of milk powders , 2006 .
[108] Martin John Atkins,et al. Integration of solar thermal for improved energy efficiency in low-temperature-pinch industrial processes , 2010 .
[109] J. Barbera,et al. Contact mechanics , 1999 .
[110] John E. Bronlund,et al. The influence of particle velocity on the stickiness of milk powder , 2010 .
[111] K. Kendall,et al. Surface energy and the contact of elastic solids , 1971, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[112] Thorsten Pöschel,et al. Collision dynamics of granular particles with adhesion. , 2007, Physical review. E, Statistical, nonlinear, and soft matter physics.
[113] Ignacio E. Grossmann,et al. Systematic Methods of Chemical Process Design , 1997 .
[114] Majid Amidpour,et al. Time decomposition in batch process integration , 2006 .
[115] A. London,et al. Compact heat exchangers , 1960 .
[116] D. P. Sekulic,et al. Fundamentals of Heat Exchanger Design , 2003 .
[117] Jiří J. Klemeš,et al. Handbook of Process Integration (PI) , 2013 .
[118] L. Skibsted,et al. Water activity-temperature state diagram of amorphous lactose. , 2005, Journal of agricultural and food chemistry.
[119] J. Mikkelsen. Thermal-Energy Storage Systems in Batch Processing , 1998 .
[120] D. Law,et al. Nucleation and crystallization kinetics of hydrated amorphous lactose above the glass transition temperature. , 1999, Journal of pharmaceutical sciences.
[121] D. Craig,et al. Characterisation of spray-dried lactose using modulated differential scanning calorimetry , 1998 .
[122] T. Howes,et al. Applications of the Cyclone Stickiness Test for Characterization of Stickiness in Food Powders , 2006 .
[123] M. R. Wolf Maciel,et al. Pinch analysis of evaporation systems , 2000 .
[124] Colin Thornton,et al. Coefficients of restitution for elastoplastic oblique impacts , 2003 .
[125] Michiel Gunsing,et al. Agglomeration in Spray Drying Installations (The EDECAD Project): Stickiness Measurements and Simulation Results , 2006 .
[126] A. Guha. Transport and Deposition of Particles in Turbulent and Laminar Flow , 2008 .
[127] Martin John Atkins,et al. Application of Heat Recovery Loops to Semi-continuous Processes for Process Integration , 2013 .
[128] Z. Fonyó,et al. SYNTHESIS OF HEAT EXCHANGER NETWORKS , 1982 .
[129] Timothy A. G. Langrish,et al. NEW MEASUREMENTS OF THE STICKY BEHAVIOR OF SKIM MILK POWDER , 2001 .
[130] Ignacio E. Grossmann,et al. Heat integration in batch processing , 1986 .
[131] Y. Roos,et al. Roles of water and solids composition in the control of glass transition and stickiness of milk powders. , 2010, Journal of food science.
[132] Bodo Linnhoff,et al. Targeting for CO2 emissions for Total Sites , 1993 .
[133] Roy B. Holmberg. Heat Transfer in Liquid-coupled Indirect Heat Exchanger Systems , 1975 .
[134] Martin John Atkins,et al. Optimal stream discharge temperatures for a dryer operation using a thermo-economic assessment , 2012 .
[135] Johnson,et al. An Adhesion Map for the Contact of Elastic Spheres , 1997, Journal of colloid and interface science.
[136] Paul E. Minton,et al. Handbook of Evaporation Technology , 1988 .
[137] C. Judson King,et al. Mechanism of stickiness in hygroscopic, amorphous powders , 1982 .
[138] S. Hogan,et al. Influence of milk proteins on the development of lactose-induced stickiness in dairy powders , 2010 .
[139] Tony Howes,et al. A modified cyclone stickiness test for characterizing food powders , 2009 .
[140] Timothy A. G. Langrish,et al. An experimental study of the equilibrium for skim milk powder at elevated temperatures , 2002 .
[141] Mahmoud M. El-Halwagi. Process Integration, Volume 7 (Process Systems Engineering) (Process Systems Engineering) , 2006 .
[142] I. Kemp,et al. The cascade analysis for energy and process integration of batch processes. I: Calculation of energy targets , 1989 .
[143] Petar Sabev Varbanov,et al. Integration and management of renewables into Total Sites with variable supply and demand , 2011, Comput. Chem. Eng..
[144] Stephen Walker. Handbook of Water and Energy Management in Food Processing , 2010 .
[145] T. Langrish,et al. Fluxes and Patterns of Wall Deposits for Skim Milk in a Pilot-Scale Spray Dryer , 2006 .
[146] L. N. Rogers,et al. The adhesion of particles undergoing an elastic-plastic impact with a surface , 1984 .
[147] Dominic C.Y. Foo,et al. Pinch analysis approach to carbon-constrained energy sector planning , 2007 .
[148] Y. Roos,et al. Water Plasticization and Crystallization of Lactose in Spray-dried Lactose/Protein Mixtures , 2004 .
[149] Cheng-Liang Chen,et al. Design of Indirect Heat Recovery Systems with Variable-Temperature Storage for Batch Plants , 2009 .
[150] Lazaros G. Papageorgiou,et al. Optimal scheduling of heat-integrated multipurpose plants , 1994 .
[151] Yrjö H. Roos,et al. Importance of glass transition and water activity to spray drying and stability of dairy powders , 2002 .
[152] Zdravko Kravanja,et al. Heat integration between processes: Integrated structure and MINLP model , 2005, Comput. Chem. Eng..
[153] K. Johnson. Contact Mechanics and Adhesion of Viscoelastic Spheres , 1999 .
[154] J. Bronlund,et al. Using a particle-gun to measure initiation of stickiness of dairy powders , 2007 .
[155] C. Thornton,et al. A theoretical model for the stick/bounce behaviour of adhesive, elastic-plastic spheres , 1998 .
[156] Robin Smith,et al. State of the art in process integration , 2000 .
[157] Athanasios G. Konstandopoulos,et al. Particle sticking/rebound criteria at oblique impact , 2006 .
[158] Jürgen Kompenhans,et al. Particle Image Velocimetry - A Practical Guide (2nd Edition) , 2007 .
[159] E. Kim,et al. Effect of surface composition on the flowability of industrial spray-dried dairy powders. , 2005, Colloids and surfaces. B, Biointerfaces.