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JOURNALS // Mendeleev Communications // Archive

Mendeleev Commun., 2021 Volume 31, Issue 5, Pages 593–604 (Mi mendc996)

This article is cited in 34 papers

Focus Article

State of the art and research development prospects of energy and resource-efficient environmentally safe chemical process systems engineering

V. P. Meshalkinabc, V. G. Dovid, V. I. Bobkove, A. V. Belyakovc, O. B. Butusovc, A. V. Garabadzhiub, T. F. Burukhinac, S. M. Khodchenkoc

a N.S. Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences, Moscow, Russian Federation
b St. Petersburg State Institute of Technology (Technical University), St. Petersburg, Russian Federation
c D.Mendeleev University of Chemical Technology of Russia, Moscow, Russian Federation
d Interuniversity Center High Technology Recycling, Roma, Italy
e Branch of the National Research University ‘Moscow Power Engineering Institute’ (MPEI), Smolensk, Russian Federation

Abstract: In this focus overview, the main types and directions of engineering, methods and techniques of intensification of chemical process systems (CPS) and process optimization of energy- and resource-efficient processes for the representative production of titanium compounds, mining waste processing systems, electrochemical coating technologies, combined technologies for the treatment of industrial effluents and energy-and resource-efficient technologies for cleaning soils from petroleum and chemical pollution products are reviewed. The following issues have been discussed: methods of complex assessment of production energy efficiency and software and information support for automated synthesis of optimal energy-efficient regenerative heat exchange systems using pinch analysis; methods and algorithms for fractal-statistical characteristics analysis of nonstationary gas flows in complex gas pipelines; methods of ecological and economic optimization of production, infrastructure supply chains; methods for assessing and preventing the dangerous environmental impact assessment of chemical pollution; organization and logistics management of business processes engineering for improving the energy efficiency of plants; engineering of problem oriented computer systems, heuristic-computational models and algorithms for intelligent integrated logistics support of the equipment life cycle; engineering developments in the field of digital transformation of energy-efficient CPS and technological production systems; application of methods for optimizing reliability factors optimization, digitalized risk and safety management in the engineering of energy- and resource efficient CPS.

Keywords: engineering, chemical technology, chemical process system, intensification, energy and resources saving, optimization, digitalization, artificial intelligence, environmental impact, heat-exchange system, pinch analysis, supply chain, unit operation, Waste.

Language: English

DOI: 10.1016/j.mencom.2021.09.003



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