Multi-objective optimization applications in chemical process engineering: Tutorial and review

GP Rangaiah, Z Feng, AF Hoadley - Processes, 2020 - mdpi.com
This tutorial and review of multi-objective optimization (MOO) gives a detailed explanation of
the 5 steps to create, solve, and then select the optimum result. Unlike single-objective …

Inorganic membranes for in-situ separation of hydrogen and enhancement of hydrogen production from thermochemical reactions

W Wang, G Olguin, D Hotza, MA Seelro, W Fu… - … and Sustainable Energy …, 2022 - Elsevier
In the face of a series of global challenges caused by the dependence on fossil fuels, such
as the greenhouse effect, energy shortage and air pollution, the development and utilization …

Multi-objective optimization for membrane reactor for steam methane reforming heated by molten salt

LG Chen, PL Li, SJ Xia, R Kong, YL Ge - Science China Technological …, 2022 - Springer
A membrane reactor for steam methane reforming heated by molten salt (MS-SMRMR) is
studied based on finite time thermodynamics for decreasing carbon emissions and …

Total entropy generation rate minimization configuration of a membrane reactor of methanol synthesis via carbon dioxide hydrogenation

PL Li, LG Chen, SJ Xia, R Kong, YL Ge - Science China Technological …, 2022 - Springer
The total entropy generation rate, internal exergy loss and exergy efficiency of the
membrane reactor of methanol synthesis via carbon dioxide hydrogenation are compared …

Multi-objective optimization of post combustion CO2 capture using methyldiethanolamine (MDEA) and piperazine (PZ) bi-solvent

SM Hosseini-Ardali, M Hazrati-Kalbibaki, M Fattahi… - Energy, 2020 - Elsevier
Global warming is becoming a critical issue in 21st century which is mainly due to the
growing rate of greenhouse gas emissions. This is mostly due to the large amount of CO 2 …

[HTML][HTML] Multi-objective optimal configurations of a membrane reactor for steam methane reforming

P Li, L Chen, S Xia, R Kong, Y Ge - Energy Reports, 2022 - Elsevier
The combination of traditional reactor and permeable membrane is beneficial to increase
the production rate of the target product. How to design a high efficiency and energy saving …

Techno-economic and environmental assessment of CO2 conversion to methanol: direct versus indirect conversion routes

F Haghighatjoo, MR Rahimpour, M Farsi - Chemical Engineering and …, 2023 - Elsevier
Methanol as a clean energy source is one of the most important industrial petrochemical
products that it is used as a fuel, solvent, and intermediate substance for other component …

Fuel production using membrane reactors: a review

S Hafeez, SM Al-Salem, G Manos… - Environmental Chemistry …, 2020 - Springer
Population growth has led to higher consumption of fossil fuel, and subsequently to a major
increase of greenhouse gases emissions to the atmosphere, thus inducing global warming …

Development of a green process based on a novel tri-reforming reactor to produce syngas for methanol synthesis: Process Design, Modeling and Multi objective …

S Soltanimehr, MR Rahimpour, A Shariati - Journal of Cleaner Production, 2023 - Elsevier
In this study, a clean and energy-efficient reforming process is introduced that can act as a
promising alternative to the conventional reforming process for syngas production used in …

Multi-objective optimization of a cascade refrigeration system: Exergetic, economic, environmental, and inherent safety analysis

S Eini, H Shahhosseini, N Delgarm, M Lee… - Applied Thermal …, 2016 - Elsevier
Inherently safer design is the new approach to maximize the overall safety of a process
plant. This approach suggests some risk reduction strategies to be implemented in the early …