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Biological hydrogen production by dark fermentation: challenges and prospects towards scaled-up production

机译:黑暗发酵生产生物氢气:规模化生产的挑战和前景

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摘要

Among different technologies of hydrogen production, bio-hydrogen production exhibits perhaps the greatest potential to replace fossil fuels. Based on recent research on dark fermentative hydrogen production, this article reviews the following aspects towards scaled-up application of this technology: bioreactor development and parameter optimization, process modeling and simulation, exploitation of cheaper raw materials and combining dark-fermentation with photo-fermentation. Bioreactors are necessary for dark-fermentation hydrogen production, so the design of reactor type and optimization of parameters are essential. Process modeling and simulation can help engineers design and optimize large-scale systems and operations. Use of cheaper raw materials will surely accelerate the pace of scaled-up production of biological hydrogen. And finally, combining dark-fermentation with photo-fermentation holds considerable promise, and has successfully achieved maximum overall hydrogen yield from a single substrate. Future development of bio-hydrogen production will also be discussed.
机译:在制氢的不同技术中,生物制氢可能显示出替代化石燃料的最大潜力。基于对黑暗发酵制氢的最新研究,本文概述了该技术在大规模应用中的以下几个方面:生物反应器的开发和参数优化,过程建模和模拟,廉价原料的开发以及黑暗发酵与光发酵的结合。生物反应器是深色发酵制氢所必需的,因此反应器类型的设计和参数的优化是必不可少的。流程建模和仿真可以帮助工程师设计和优化大规模系统和操作。使用更便宜的原料肯定会加快生物氢规模化生产的步伐。最后,将暗发酵与光发酵结合在一起具有可观的前景,并已成功地从单一底物获得了最大的总氢产量。还将讨论生物制氢的未来发展。

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