Special Issue on “Chemical Process Design, Simulation and Optimization”

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Publicado en:Processes vol. 8, no. 12 (2020), p. 1596
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MDPI AG
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Acceso en línea:Citation/Abstract
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022 |a 2227-9717 
024 7 |a 10.3390/pr8121596  |2 doi 
035 |a 2468073956 
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245 1 |a Special Issue on “Chemical Process Design, Simulation and Optimization” 
260 |b MDPI AG  |c 2020 
513 |a Editorial 
520 3 |a [...]the overall energy saving is 3% in the real plant. Exergy is the extent of energy to the second law of thermodynamics by considering entropy and it allows to take into account the irreversibilities in a process. [...]again, this study focuses on energy saving and process optimization. [...]it is an appropriate subject for modeling and simulation with its dynamic and sequential operation, but the authors also compare their results to a laboratory pilot plant. [...]the authors have replaced a 
653 |a Laboratories 
653 |a Thermodynamics 
653 |a Simulation 
653 |a Partial differential equations 
653 |a Process engineering 
653 |a Fault diagnosis 
653 |a Fluid dynamics 
653 |a Optimization 
653 |a Process controls 
653 |a Exergy 
653 |a Distributed control systems 
653 |a Numerical analysis 
653 |a Methods 
653 |a Codes 
653 |a Energy 
653 |a Design optimization 
653 |a Fluid mechanics 
653 |a Entropy 
653 |a Chemical engineering 
773 0 |t Processes  |g vol. 8, no. 12 (2020), p. 1596 
786 0 |d ProQuest  |t Materials Science Database 
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