Department of Civil Engineering, Anna University Regional Campus Tirunelveli, India.
Department of Engineering Technology, College of Technology, University of Houston, Houston, TX - 77204, USA.
Bioresour Technol. 2021 Jan;319:124175. doi: 10.1016/j.biortech.2020.124175. Epub 2020 Sep 26.
Hydrogen is a clean fuel that could provide energy incentives and reduce environmental impacts, if production platform is carefully selected and optimized. In specific, techno-economic and sensitivity analysis of the existing hydrogen production platforms and processes is need for an hour to boost the future hydrogen economical aspects. This will have greater impact on future hydrogen production project designs and developing new approaches to reduce the overall production costs to make it as cheaper fuel. The sensitivity analysis of various hydrogen production process such as pyrolysis, gasification, steam reforming of natural gas, dark fermentation, photobiolysis, water electrolysis and renewable liquid reforming were reviewed to evaluate their merits and demerits along with cost-effectiveness. On economic view point, steam reforming of natural gas is efficient, low cost and best methods for hydrogen production. A future research is required to reduce energy input and trapping carbon dioxide emission using membrane models.
氢气是一种清洁燃料,如果生产平台经过精心选择和优化,它可以提供能源激励并减少环境影响。具体而言,需要对现有的氢气生产平台和工艺进行技术经济和敏感性分析,以提高未来氢气的经济性。这将对未来的氢气生产项目设计产生更大的影响,并开发新的方法来降低整体生产成本,使其成为更便宜的燃料。对各种氢气生产工艺(如热解、气化、天然气蒸汽重整、暗发酵、光解、水电解和可再生液体重整)的敏感性分析进行了综述,以评估它们的优缺点以及成本效益。从经济角度来看,天然气蒸汽重整是高效、低成本和生产氢气的最佳方法。未来的研究需要使用膜模型来减少能源投入和捕获二氧化碳排放。