4.5 Review

Usage of on-demand oxyhydrogen gas as clean/renewable fuel for combustion applications: a review

期刊

INTERNATIONAL JOURNAL OF GREEN ENERGY
卷 18, 期 13, 页码 1405-1429

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/15435075.2021.1904944

关键词

Oxyhydrogen; electrolyzer; clean fuel; combustion

资金

  1. UM Power Energy Dedicated Advanced Centre (UMPEDAC)
  2. Higher Institution Centre of Excellence (HICoE) Program Research Grant, UMPEDAC - 2018 (MOHE HICOE - UMPEDAC), Ministry of Education Malaysia, University of Malaya [RU007-2018, RU012-2019]

向作者/读者索取更多资源

The extensive and inefficient utilization of fossil fuels raises environmental concerns and energy security issues, prompting scientists to emphasize on renewable energy sources. Oxyhydrogen gas, with its low capital cost, simplicity, low maintenance, and high calorific value, is considered a feasible clean fuel alternative to conventional fossil fuels.
The extensive and inefficient utilization of fossil fuels leads to high environmental concerns and energy security. Scientists are merely emphasizing on renewable energy sources and their appropriate utilization. In this regard, on-demand production (by dry cell alkaline water electrolysis) and utilization of brown's/oxyhydrogen (oxyhydrogen) gas deemed feasible due to its less capital cost, simplicity, low maintenance, and high calorific value. Furthermore, oxyhydrogen is considered to be clean because it does not produce NOx, SOx and carbon during its combustion as compared to conventional fossil fuels. This review is focused on different applications which has a potential to use oxyhydrogen gas for their combustion process. Moreover, it was emphasized on effective utilization of oxyhydrogen gas as on-demand production by the application. As fuel with hydrogen contents is considered to be dangerous to handle, so in the final section of the article an attempt has been made to detail various safety parameters such as flash back arrest, combustion nozzle design and working temperature for production and utilization of oxyhydrogen. It is concluded from the study that oxyhydrogen gas has a future for replacing conventional fuels as primary and secondary source for combustion applications due to their sustainability, combustibility and environmental friendliness.

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