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Published in: Clean Technologies and Environmental Policy 3/2015

01-03-2015 | Original paper

Industrial waste heat recovery and cogeneration involving organic Rankine cycles

Authors: César Giovani Gutiérrez-Arriaga, Faissal Abdelhady, Hisham S. Bamufleh, Medardo Serna-González, Mahmoud M. El-Halwagi, José María Ponce-Ortega

Published in: Clean Technologies and Environmental Policy | Issue 3/2015

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Abstract

This paper proposes a systematic approach for energy integration involving waste heat recovery through an organic Rankine cycle (ORC). The proposed approach is based on a two-stage procedure. In the first stage, heating and cooling targets are determined through heat integration. This enables the identification of the excess process heat available for use in the ORC. The optimization of the operating conditions and design of the cogeneration system are carried out in the second stage using genetic algorithms. A modular sequential simulation approach is proposed including several correlations to determine the properties for the streams in the ORC. The proposed approach is applied to a case study which addresses the tradeoffs among the different forms of energy and associated costs. The results show that the optimal selection of the operating conditions and working fluid is very important to reduce the costs associated to the process.

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Appendix
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Literature
go back to reference Barber R (1978) Current costs of solar powered organic Rankine cycle engines. Sol Energy 20:1–6CrossRef Barber R (1978) Current costs of solar powered organic Rankine cycle engines. Sol Energy 20:1–6CrossRef
go back to reference Bruno JC, Fernandez F, Castells F, Grossmann IE (1998) A rigorous MINLP model for the optimal synthesis and operation of utility plants. Chem Eng Res Des 76:246–258CrossRef Bruno JC, Fernandez F, Castells F, Grossmann IE (1998) A rigorous MINLP model for the optimal synthesis and operation of utility plants. Chem Eng Res Des 76:246–258CrossRef
go back to reference Chouinard-Dussault P, Bradt L, Ponce-Ortega JM, El-Halwagi MM (2011) Incorporation of process integration into life cycle analysis for the production of biofuels. Clean Technol Environ Policy 13:673–685CrossRef Chouinard-Dussault P, Bradt L, Ponce-Ortega JM, El-Halwagi MM (2011) Incorporation of process integration into life cycle analysis for the production of biofuels. Clean Technol Environ Policy 13:673–685CrossRef
go back to reference Desai NB, Bandyopadhyay S (2009) Process integration of organic Rankine cycle. Energy 34:1674–1686CrossRef Desai NB, Bandyopadhyay S (2009) Process integration of organic Rankine cycle. Energy 34:1674–1686CrossRef
go back to reference El-Halwagi MM (2012) Sustainable design through process integration: fundamentals and applications to industrial pollution prevention, resource conservation, and profitability enhancement. Butterworth-Heinemann, London El-Halwagi MM (2012) Sustainable design through process integration: fundamentals and applications to industrial pollution prevention, resource conservation, and profitability enhancement. Butterworth-Heinemann, London
go back to reference Farhad S, Saffar-Avval M, Younessi-Sinaki M (2008) Efficient design of feedwater heaters network in steam power plants using pinch technology and exergy analysis. Int J Energy Res 32:1–11CrossRef Farhad S, Saffar-Avval M, Younessi-Sinaki M (2008) Efficient design of feedwater heaters network in steam power plants using pinch technology and exergy analysis. Int J Energy Res 32:1–11CrossRef
go back to reference Gebreslassie BH, Guillén-Gosálvez G, Jiménez L, Boer D (2009a) Design of environmentally conscious absorption cooling systems via multi-objective optimization and life cycle assessment. Appl Energy 86:1712–1722CrossRef Gebreslassie BH, Guillén-Gosálvez G, Jiménez L, Boer D (2009a) Design of environmentally conscious absorption cooling systems via multi-objective optimization and life cycle assessment. Appl Energy 86:1712–1722CrossRef
go back to reference Gebreslassie BH, Guillén-Gosálvez G, Jiménez L, Boer D (2009b) Economic performance optimization of an absorption cooling system under uncertainty. Appl Therm Eng 29:3491–3500CrossRef Gebreslassie BH, Guillén-Gosálvez G, Jiménez L, Boer D (2009b) Economic performance optimization of an absorption cooling system under uncertainty. Appl Therm Eng 29:3491–3500CrossRef
go back to reference Gebreslassie BH, Guillén-Gosálvez G, Jiménez L, Boer D (2009c) A systematic tool for the minimization of the life cycle impact of solar assisted absorption cooling systems. Energy 35:3849–3862CrossRef Gebreslassie BH, Guillén-Gosálvez G, Jiménez L, Boer D (2009c) A systematic tool for the minimization of the life cycle impact of solar assisted absorption cooling systems. Energy 35:3849–3862CrossRef
go back to reference Hipólito-Valencia BJ, Rubio-Castro E, Ponce-Ortega JM, Serna-González M, Nápoles-Rivera F, El-Halwagi MM (2013) Optimal integration of organic Rankine cycles with industrial processes. Energy Convers Manage 73:285–302CrossRef Hipólito-Valencia BJ, Rubio-Castro E, Ponce-Ortega JM, Serna-González M, Nápoles-Rivera F, El-Halwagi MM (2013) Optimal integration of organic Rankine cycles with industrial processes. Energy Convers Manage 73:285–302CrossRef
go back to reference Hipólito-Valencia BJ, Lira-Barragán LF, Ponce-Ortega JM, Serna-González M, El-Halwagi MM (2014a) Multiobjective design of interplant trigeneration systems. AIChE J 60:213–236CrossRef Hipólito-Valencia BJ, Lira-Barragán LF, Ponce-Ortega JM, Serna-González M, El-Halwagi MM (2014a) Multiobjective design of interplant trigeneration systems. AIChE J 60:213–236CrossRef
go back to reference Hipólito-Valencia BJ, Vázquez-Ojeda M, Segovia-Hernández JG, Ponce-Ortega JM (2014b) Waste heat recovery through organic Rankine cycles in the bioethanol separation process. Ind Eng Chem Res 53:6773–6788CrossRef Hipólito-Valencia BJ, Vázquez-Ojeda M, Segovia-Hernández JG, Ponce-Ortega JM (2014b) Waste heat recovery through organic Rankine cycles in the bioethanol separation process. Ind Eng Chem Res 53:6773–6788CrossRef
go back to reference Lira-Barragán LF, Ponce-Ortega JM, Serna-González M, El-Halwagi MM (2014) Sustainable integration of trigeneration systems with heat exchanger networks. Ind Eng Chem Res 53:2732–2750CrossRef Lira-Barragán LF, Ponce-Ortega JM, Serna-González M, El-Halwagi MM (2014) Sustainable integration of trigeneration systems with heat exchanger networks. Ind Eng Chem Res 53:2732–2750CrossRef
go back to reference Madhawahettiarachchi H, Golubovic M, Worek W, Ikegami Y (2007) Optimum design criteria for an organic Rankine cycle using low-temperature geothermal heat sources. Energy 32:1698–1706CrossRef Madhawahettiarachchi H, Golubovic M, Worek W, Ikegami Y (2007) Optimum design criteria for an organic Rankine cycle using low-temperature geothermal heat sources. Energy 32:1698–1706CrossRef
go back to reference Peters MS, Timmerhaus KD, West RE (2003) Plant design and economics for chemical engineers. McGraw-Hill Science/Engineering/Math, Massachusetts Peters MS, Timmerhaus KD, West RE (2003) Plant design and economics for chemical engineers. McGraw-Hill Science/Engineering/Math, Massachusetts
go back to reference Ponce-Ortega JM, Serna-Gonzalez M, Jimenez-Gutierrez A (2010) Optimization model for re-circulating cooling water systems. Comput Chem Eng 34:177–195CrossRef Ponce-Ortega JM, Serna-Gonzalez M, Jimenez-Gutierrez A (2010) Optimization model for re-circulating cooling water systems. Comput Chem Eng 34:177–195CrossRef
go back to reference Ponce-Ortega JM, Tora EA, González-Campos JB, El-Halwagi MM (2011) Integration of renewable energy with industrial absorption refrigeration systems: systematic design and operation with technical, economic, and environmental objectives. Ind Eng Chem Res 50:9667–9684CrossRef Ponce-Ortega JM, Tora EA, González-Campos JB, El-Halwagi MM (2011) Integration of renewable energy with industrial absorption refrigeration systems: systematic design and operation with technical, economic, and environmental objectives. Ind Eng Chem Res 50:9667–9684CrossRef
go back to reference Prigmore D, Barber R (1975) Cooling with the sun’s heat design considerations and test data for a Rankine cycle prototype. Sol Energy 17:185–192CrossRef Prigmore D, Barber R (1975) Cooling with the sun’s heat design considerations and test data for a Rankine cycle prototype. Sol Energy 17:185–192CrossRef
go back to reference Quin X, Mohan T, El-Halwagi MM, Cornforth G, McCarl BA (2006) Switchgrass as an alternate feedstock for power generation: an integrated environmental, energy and economic life-cycle assessment. Clean Technol Environ Policy 8:233–249CrossRef Quin X, Mohan T, El-Halwagi MM, Cornforth G, McCarl BA (2006) Switchgrass as an alternate feedstock for power generation: an integrated environmental, energy and economic life-cycle assessment. Clean Technol Environ Policy 8:233–249CrossRef
go back to reference Smith R (2005) Chemical process design and integration. Wiley, Chichester Smith R (2005) Chemical process design and integration. Wiley, Chichester
go back to reference Stijepovic MZ, Papadopoulos AI, Linke P, Grujic AS, Seferlis P (2014) An exergy composite curves approach for the design of optimum multi-pressure organic Rankine cycle processes. Energy 69:285–298CrossRef Stijepovic MZ, Papadopoulos AI, Linke P, Grujic AS, Seferlis P (2014) An exergy composite curves approach for the design of optimum multi-pressure organic Rankine cycle processes. Energy 69:285–298CrossRef
go back to reference Tora EA, El-Halwagi MM (2009) Optimal design and integration of solar systems and fossil fuels for sustainable and stable power outlet. Clean Technol Environ Policy 11:401–407CrossRef Tora EA, El-Halwagi MM (2009) Optimal design and integration of solar systems and fossil fuels for sustainable and stable power outlet. Clean Technol Environ Policy 11:401–407CrossRef
go back to reference Tora EA, El-Halwagi MM (2010) Integration of solar energy into absorption refrigerators and industrial process. Chem Eng Technol 33:1495–1505CrossRef Tora EA, El-Halwagi MM (2010) Integration of solar energy into absorption refrigerators and industrial process. Chem Eng Technol 33:1495–1505CrossRef
Metadata
Title
Industrial waste heat recovery and cogeneration involving organic Rankine cycles
Authors
César Giovani Gutiérrez-Arriaga
Faissal Abdelhady
Hisham S. Bamufleh
Medardo Serna-González
Mahmoud M. El-Halwagi
José María Ponce-Ortega
Publication date
01-03-2015
Publisher
Springer Berlin Heidelberg
Published in
Clean Technologies and Environmental Policy / Issue 3/2015
Print ISSN: 1618-954X
Electronic ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-014-0833-5

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