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UTILIZATION OF DOMESTIC FUELS FOR HYDROGEN PRODUCTION

机译:利用国内制氢燃料

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Hydrogen is expected to play a major role in the global energy sector in the mid- to long-term future. In order for that to happen, we must be able to produce hydrogen in an environmentally responsible and cost-effective way. The co-utilization of hydrogen and resources like coal and biomass for hydrogen production may provide a short-term transition to the long-term prospects of solar and biomass for cleaner and more efficient fuel mixtures to meet future energy needs. This article describes the present status of the conventional hydrogen production technologies and some of recent developments in the production of hydrogen using solar energy resources. We outline the technological status for commercial and near-commercial technologies using both fossil-based and renewable energy sources such as electrolysis using PV and solar thermal power. We found that conversion of fossil fuels and electrolysis of water using solar conversion technologies are some of the most important methods of H2 production. An economic analysis for hydrogen production costs is presented comparing steam reformation, partial oxidation, coal gasification, and electrolysis via photovoltaics and solar thermal power. Although fossil fuels are currently the cheapest and most widely used sources of hydrogen production, we argue from an economic standpoint that renewable sources of hydrogen, such as biomass and solar, are the most promising options for the future. Further, solar hydrogen represents a storable fuel that is produced from this nonstorable and intermittent source of energy.
机译:在中长期内,氢气有望在全球能源领域发挥重要作用。为了做到这一点,我们必须能够以对环境负责和具有成本效益的方式生产氢气。氢与煤和生物质等资源的联合利用可用于制氢,这可能会短期过渡到太阳能和生物质的长期前景,以提供更清洁,更高效的燃料混合物,以满足未来的能源需求。本文介绍了常规制氢技术的现状以及使用太阳能资源制氢的最新进展。我们概述了基于化石和可再生能源的商业和近商业技术的技术现状,例如使用PV和太阳能的电解。我们发现,使用太阳能转换技术转换化石燃料和电解水是生产H2的最重要方法。提出了氢气生产成本的经济分析,比较了蒸汽重整,部分氧化,煤气化以及通过光伏和太阳能的电解。尽管目前化石燃料是最便宜,使用最广泛的氢生产来源,但从经济角度来看,我们认为生物质和太阳能等可再生氢是未来最有希望的选择。此外,太阳能氢代表由这种不可储存的间歇性能源产生的可储存的燃料。

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