Power-to-methanol process : a review of electrolysis, methanol catalysts, kinetics, reactor designs and modelling, process integration, optimisation, and techno-economics

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dc.contributor.author Mbatha, Siphesihle
dc.contributor.author Everson, Raymond C.
dc.contributor.author Musyoka, Nicholas M.
dc.contributor.author Langmi, Henrietta Wakuna
dc.contributor.author Lanzini, Andrea
dc.contributor.author Brilman, Wim
dc.date.accessioned 2022-01-12T10:40:10Z
dc.date.issued 2021-06
dc.description.abstract In this paper, the power-to-methanol chain is reviewed from a process system engineering perspective with detailed assessments of major technologies. The evaluation encompasses electrolysis technologies and catalyst developments, kinetics, reactor technology options for methanol synthesis, as well as their design principles, modelling techniques, and research and optimisation gaps. The review extends to discuss process synthesis considering water-based and co-electrolysis-based power-to-methanol routes with reference to process integration, optimisation, modelling techniques, industrial applications and the associated techno-economics. Key gaps and opportunities for improvements are identified. The novelty of the paper lies in the holistic evaluation of technology design, performance and modelling. Foremost among the findings, advanced and detailed models of the electrolysis units, methanol reaction kinetics (e.g. considering identifiability and sensitivity) and methanol reactor with improved predictive capabilities under varying conditions are required. Additionally, the overall design, flexibility and reliability requirements concerning variable power-to-methanol deserve further detailed investigation. On the other hand, studies on the model-based process synthesis of power-to-methanol are limited, especially those considering dynamic modelling, multi-objective, process configuration and scheduling optimisations, and techno-economic and environmental analyses under uncertainty conditions. The few model-based studies available are mostly based on deterministic approaches and sequential pinch-analysis. Furthermore, limited studies evaluate power-to-methanol in the context of CO2/energy/H2 utilisation industrial hubs and repurposing/retrofitting of existing infrastructures (with part of the capital cost already offset) taking advantages of synergies and application-specific analysis of methanol, which may give additional attractive business cases. Lastly, incentives and dynamics in renewable electricity, electrolysis, CO2 utilisation and the methanol market hold a strong position to make power-to-methanol feasible and must be investigated further to support policy decisions. en_ZA
dc.description.department Chemistry en_ZA
dc.description.embargo 2022-06-22
dc.description.librarian hj2022 en_ZA
dc.description.sponsorship The South African Department of Science and Innovation (DSI) for research activities under the HySA Infrastructure Centre of Competence (KP5 program, Project No. CNMH17X) and also by the Council for Scientic and Industrial Research (CSIR). en_ZA
dc.description.uri http://www.rsc.org/journals-books-databases/about-journals/sustainable-energy-fuels en_ZA
dc.identifier.citation Mbatha, S., Everson, R.C., Musyoka, N.M. et al. 2021, 'Power-to-methanol process: a review of electrolysis, methanol catalysts, kinetics, reactor designs and modelling, process integration, optimisation, and techno-economics', Sustainable Energy Fuels, vol. 5, no. 14, pp. 3490-3569. en_ZA
dc.identifier.issn 2398-4902 (online)
dc.identifier.other 10.1039/D1SE00635E
dc.identifier.uri http://hdl.handle.net/2263/83300
dc.language.iso en en_ZA
dc.publisher Royal Societyiety of Chemistry en_ZA
dc.rights © The Royal Society of Chemistry 2021 en_ZA
dc.subject Power-to-methanol process en_ZA
dc.subject Technoeconomics en_ZA
dc.subject Optimisation en_ZA
dc.subject Process integration en_ZA
dc.subject Electrolysis en_ZA
dc.subject Reactor designs and modelling en_ZA
dc.subject Methanol catalysts en_ZA
dc.subject Kinetics en_ZA
dc.title Power-to-methanol process : a review of electrolysis, methanol catalysts, kinetics, reactor designs and modelling, process integration, optimisation, and techno-economics en_ZA
dc.type Postprint Article en_ZA


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