4.7 Article

CFD simulation of methane steam reforming in a membrane reactor: Performance characteristics over range of operating window

期刊

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
卷 46, 期 59, 页码 30402-30411

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2021.06.178

关键词

Membrane reactor; Computational fluid dynamics; Palladium (pd) membrane; Hydrogen separation; Methane steam reforming

资金

  1. Korea Institute of Energy Technology Evaluation and Planning (KETEP) from the Ministry of Trade, Industry & Energy, Republic of Korea [20183010032380]
  2. National Research Foundation of Korea - Korean government (Ministry of Science and ICT (MSIT)) [NRF-2019M3E6A1064290]

向作者/读者索取更多资源

The study utilized a three-dimensional computational fluid dynamic (CFD) model of a membrane reactor to investigate the performance of methane steam reforming, successfully capturing experimentally observed trends. The influence of various operating parameters on overall performance was discussed, and optimal operation windows were identified.
Methane steam reforming is the most widely used pathway for hydrogen production. In this context, the use of a fixed bed catalytic reactor with a hydrogen-selective membrane is one of the most promising technologies to produce high purity hydrogen gas. In this work, the membrane reactor three-dimensional computational fluid dynamic (CFD) model was developed to investigate the performance. In this model, methane steam reforming global kinetic model has been coupled with the CFD model using User-Defined Function (UDF). Whereas, hydrogen permeation across the membrane is implemented by introducing source and sink formulation. The CFD simulation results were compared to the experimental data, where the developed model successfully captured the experimentally observed trends. We studied the influence of the various operating parameters, as temperature, steam to carbon ratio, sweep gas flow configuration and space velocity on the overall performance. The main observation and attained optimal operation windows from the study was discussed to provide insight into the factors affecting the overall performance. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

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