Journal Article

·2021

Derivative‐Free Optimization of a Fixed‐Bed Methanol Synthesis Reactor

Salih Obut YTU

Chemical Engineering & Technology

Abstract

Abstract A one‐dimensional heterogeneous fixed‐bed methanol synthesis reactor model was developed for the optimization of carbon conversion and rate of methanol production. The developed model was validated both at pellet and reactor scales. The reactor inlet syngas composition and cooling water temperature, i.e., the design variables, providing the highest carbon conversion and rate of methanol production were determined by a constrained derivative‐free optimization algorithm. The results revealed that after optimization the carbon conversion was increased by 12 % and the rate of methanol production by 48 %. Under the optimized conditions, the stoichiometric number was in the range of industrial values.

Keywords

Methanol Syngas Derivative (finance) Chemistry Carbon fibers Chemical engineering Materials science Catalysis Organic chemistry

Subject Areas

Catalysts for Methane Reforming ·Catalysis ·Physical Sciences
Thermochemical Biomass Conversion Processes ·Biomedical Engineering ·Physical Sciences
Zeolite Catalysis and Synthesis ·Inorganic Chemistry ·Physical Sciences

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