By Krist V. Gernaey, Jakob K. Huusom, Rafiqul Gani
25th ecu Symposium on Computer-Aided method Engineering includes the papers provided on the 12th method platforms Engineering (PSE) and twenty fifth ecu Society of computing device Aided procedure Engineering (ESCAPE) Joint occasion held in Copenhagen, Denmark, 31 may possibly - four June 2015.
The function of those sequence is to collect the overseas neighborhood of researchers and engineers who're attracted to computing-based equipment in procedure engineering. This convention highlights the contributions of the PSE/CAPE group in the direction of the sustainability of contemporary society.
Contributors from academia and identify the middle items of PSE/CAPE, outline the hot and altering scope of our effects, and destiny demanding situations. Plenary and keynote lectures talk about real-world demanding situations (globalization, power, atmosphere, and well-being) and give a contribution to discussions at the widening scope of PSE/CAPE as opposed to the consolidation of the center subject matters of PSE/CAPE.
- Highlights how the method platforms Engineering/Computer-Aided procedure Engineering group contributes to the sustainability of contemporary society
- Presents findings and discussions from either the twelfth strategy structures Engineering (PSE) and twenty fifth eu Society of Computer-Aided approach Engineering (ESCAPE) occasions
- Establishes the center items of strategy structures Engineering/Computer Aided technique Engineering
- Defines the longer term demanding situations of the method structures Engineering/Computer Aided strategy Engineering community
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Additional info for 12th International Symposium on Process Systems Engineering and 25th European Symposium on Computer Aided Process Engineering
D. Seider, S. Widagdo, “Teaching chemical engineering product design,” COCHE, 1, 2012, 472475. G. Stephanopoulos, Invention and Innovation in a Product-Centered Chemical Industry: General Trends and a Case Study, AIChE Institute Lecture (2003). K. T. Ulrich, S. D. Eppinger, 2012, Product Design and Development, 5th Edition, McGraw-Hill, New York. J. Wei, 2007, Product Engineering: Molecular Structure and Properties, Oxford University Press, Oxford, New York, NY. J. A. Wesselingh, S. Kiil, M. E.
A. El Sibai, L. Rihko-Struckmann, K. Sundmacher, 2014, Synthetic methane from CO 2: Dynamic optimization of the Sabatier process for power-to-gas applications, PSE12 & ESCAPE25, 31 May - 4 June, Copenhagen, Denmark. C. A. Floudas, X. X. Lin, 2004, Continuous-time versus discrete-time approaches for scheduling of chemical processes: a review, Comput. Chem. , 28, 2109-2129. 34 K. Sundmacher R. Franke, J. Julis, 2014, elements 49, Evonik Industries AG, Essen, 14-18. H. Freund, K. Sundmacher, 2011, Process Intensification, Parts 1-4, in: Ullmann’s Encyclopedia of Industrial Chemistry, Wiley-VCH, Weinheim.
Process synthesis is a bottom-up aggregation procedure that makes use of this information to derive an optimal system configuration. , product quality, safety, operability). The molecular level deals with all process design decisions which are linked to the structure of individual molecules, namely the choice of suitable molecular reactants to generate the desired product and the selection of auxiliary substances, in particular catalysts and solvents. , Norskov et al. (2009) use quantum chemical methods to support the “in silico” design of catalysts based on molecular descriptors.
12th International Symposium on Process Systems Engineering and 25th European Symposium on Computer Aided Process Engineering by Krist V. Gernaey, Jakob K. Huusom, Rafiqul Gani