生物能源制氢技术及评价综述

Q2 Engineering
Q. Hassan, S. A. Hafedh, H. B. Mohammed, Imad Saeed Abdulrahman, H. M. Salman, M. Jaszczur
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引用次数: 9

摘要

地球的自然承载能力正在被超越,迫切需要开发新的替代方案,特别是在能源供应、二氧化碳排放和生态系统氮供应方面。氢气是由可再生能源通过水电解产生的,可以作为21世纪低碳经济和电气化的平台分子。利用氢代谢过程的能力是相当多样化的,这为创新生物技术的进步和应用提供了大量的途径。在通过碳氢化合物途径生产生物基基础元素化合物的过程中,注重氢的主要作用的战略将避免碳氢化合物固有的低经济价值,而有利于具有更高价值的产品。此外,氢可以作为制造第三代蛋白质的关键碳中性来源,同时可以在排放现场立即进行碳捕获和营养恢复。使用这些方法来处理可再生能源的季节性变化,使替代能源的使用尽可能有效。结果表明,与其他制氢方法相比,生物氢生产技术是一种既经济高效又对环境有益的可再生氢生产方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review of hydrogen production from bio-energy, technologies and assessments
Abstract The earth natural carrying capacity is being surpassed, and there is an urgent need to develop new alternatives, notably in regards to energy supplies, carbon dioxide emissions, and nitrogen supplies to the ecosystem. Hydrogen gas, produced from renewable energy by water electrolysis, may serve as a platform molecule for the 21st century low-carbon economy and electrification. The ability to utilise hydrogen metabolic processes is quite diverse, and this offers up a vast array of avenues for innovative biotechnological advancements and applications. A strategy focusing on the major role of hydrogen throughout the production of bio-based foundational element compounds through the hydrocarbon pathway would avoid the inherent low economic value of hydrocarbons in favour of products with greater value. Furthermore, hydrogen could serve as a crucial carbon-neutral source for the manufacture of third-generation proteins while allowing carbon capture and nutritional recovery immediately at the site of emission. Using these methods to deal with the seasonal changes in renewable energy sources makes the use of alternative energy as efficient as possible. The outcomes demonstrated the production technologies of bio-hydrogen is a good way to make renewable hydrogen that is both cost-effective and good for the environment compared to other ways of making hydrogen.
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来源期刊
Energy Harvesting and Systems
Energy Harvesting and Systems Energy-Energy Engineering and Power Technology
CiteScore
2.00
自引率
0.00%
发文量
31
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