Power-to-fuel conversion based on reverse water-gas-shift, Fischer-Tropsch Synthesis and Hydrocracking: Mathematical modeling and simulation in Matlab/Simulink

Author:

Kirsch Hannah,Sommer Ulrich,Pfeifer Peter,Dittmeyer RolandORCID

Funder

Peter und Luise Hager Foundation

Publisher

Elsevier BV

Subject

Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

Reference64 articles.

1. Advanced alternative liquid fuels: For climate protection in the global raw materials change. ProcessNet-Arbeitsausschuss Alternative flüssige und gasförmige Kraft- und Brennstoffe“ (Ed.), 2018, https://dechema.de/dechema_media/Downloads/Positionspapiere/2018_alternativeBrennstoffe_en-p-20005513.pdf (accessed 15 October 2019).

2. A numbering-up metal microreactor for the high-throughput production of a commercial drug by copper catalysis;Ahn;Lab Chip,2019

3. A standardized methodology for the techno-economic evaluation of alternative fuels – a case study;Albrecht;Fuel,2017

4. Production of syngas via gasification using optimum blends of biomass;AlNouss;J. Cleaner Prod.,2020

5. Computational fluid dynamics study of heat transfer in a microchannel reactor for low-temperature Fischer-Tropsch synthesis;Arzamendi;Chem. Eng. J.,2010

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