Hydrogen production in reverse tesla valve reactor combining ethanol steam reforming and water gas shift reaction

Wei Hsin Chen, Meng Hong Zhong, Thanh Binh Nguyen, Amit Kumar Sharma, Chung Gang Li

研究成果: Article同行評審

摘要

This study uses a reverse Tesla valve (RTVR) as a reactor for ethanol steam reforming (ESR) and water gas shift reaction (WGSR) to produce hydrogen. By combining ESR with WGSR to produce hydrogen, the dual objectives of enhancing hydrogen production and mitigating the negative impacts of carbon monoxide on the reactor can be implemented. This application of the RTVR reactor in thermochemical hydrogen production represents a novel advancement in this field. Three different reactors, including RTVR, bridge-type, and rectangular-type reactors, are adopted for comparison. The results reveal that the RTVR outperforms the other reactor types, achieving higher ethanol conversion rates and greater hydrogen yield, stemming from its special flow field design. However, a drawback accompanied by the RTVR is its higher pressure drop. The study identifies optimal operating conditions, including a temperature of 600 °C, a steam-to-ethanol (S/E) ratio of 3, outlet pressure of 1.5 atm, and a Reynolds number of 10, under which the RTVR reaches an ethanol conversion rate of 96.76 % and a hydrogen yield of 4.7 mol (mol C2H5OH)−1, showing its high performance. This advancement in reactor design offers the potential for more efficient hydrogen production technologies.

原文English
文章編號134783
期刊Energy
318
DOIs
出版狀態Published - 2025 3月 1

All Science Journal Classification (ASJC) codes

  • 土木與結構工程
  • 建模與模擬
  • 可再生能源、永續發展與環境
  • 建築與營造
  • 燃料技術
  • 能源工程與電力技術
  • 污染
  • 機械工業
  • 一般能源
  • 管理、監督、政策法律
  • 工業與製造工程
  • 電氣與電子工程

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