A review on hydrogen production and utilization: Challenges and opportunities

可再生能源 温室气体 化石燃料 制氢 环境经济学 自然资源经济学 生命周期评估 氢经济 生产(经济) 环境科学 氢技术 氢燃料 废物管理 工程类 经济 燃料电池 化学 生态学 宏观经济学 有机化学 化学工程 电气工程 生物
作者
Haris Ishaq,İbrahim Dinçer,Curran Crawford
出处
期刊:International Journal of Hydrogen Energy [Elsevier BV]
卷期号:47 (62): 26238-26264 被引量:1295
标识
DOI:10.1016/j.ijhydene.2021.11.149
摘要

Environment-friendly, safe and reliable energy supplies are indispensable to society for sustainable development and high life quality where even though social, environmental, political and economic challenges may play a vital role in their provision. Our continuously growing energy demand is driven by extensive growth in economic development and population and places an ever-increasing burden on fossil fuel utilization that represent a substantial percentage of this increasing energy demand but also creates challenges associated with increased greenhouse gas (GHG) emissions and resource depletion. Such challenges make the global transition obligatory from conventional to renewable energy sources. Hydrogen is emerging as a new energy vector outside its typical role and receiving more recognition globally as a potential fuel pathway, as it offers advantages in use cases and unlike synthetic carbon-based fuels can be truly carbon neutral or even negative on a life cycle basis. This review paper provides critical analysis of the state-of-the-art in blue and green hydrogen production methods using conventional and renewable energy sources, utilization of hydrogen, storage, transportation, distribution and key challenges and opportunities in the commercial deployment of such systems. Some of the key promising renewable energy sources to produce hydrogen, such as solar and wind, are intermittent; hydrogen appears to be the best candidate to be employed for multiple purposes blending the roles of fuel energy carrier and energy storage modality. Furthermore, this study offers a comparative assessment of different non-renewable and renewable hydrogen production systems based on system design, cost, global warming potential (GWP), infrastructure and efficiency. Finally the key challenges and opportunities associated with hydrogen production, storage, transportation and distribution and commercial-scale deployment are addressed.
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