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Thermophilic biohydrogen production: how far are we?

机译:嗜生氢的生产:我们走了多远?

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摘要

Apart from being applied as an energy carrier, hydrogen is in increasing demand as a commodity. Currently, the majority of hydrogen (H2) is produced from fossil fuels, but from an environmental perspective, sustainable H2 production should be considered. One of the possible ways of hydrogen production is through fermentation, in particular, at elevated temperature, i.e. thermophilic biohydrogen production. This short review recapitulates the current status in thermophilic biohydrogen production through fermentation of commercially viable substrates produced from readily available renewable resources, such as agricultural residues. The route to commercially viable biohydrogen production is a multidisciplinary enterprise. Microbiological studies have pointed out certain desirable physiological characteristics in H2-producing microorganisms. More process-oriented research has identified best applicable reactor types and cultivation conditions. Techno-economic and life cycle analyses have identified key process bottlenecks with respect to economic feasibility and its environmental impact. The review has further identified current limitations and gaps in the knowledge, and also deliberates directions for future research and development of thermophilic biohydrogen production.
机译:除了用作能源载体之外,氢作为商品的需求也在增加。当前,大多数氢(H2)是由化石燃料生产的,但是从环境角度来看,应考虑可持续的H2生产。制氢的一种可能方式是通过发酵,特别是在升高的温度下,即嗜热生物氢的发酵。这篇简短的评论概括了通过发酵从可利用的可再生资源(例如农业残留物)生产的商业上可行的底物,生产嗜热生物氢的现状。商业上可行的生物氢生产途径是一个多学科的企业。微生物学研究指出了产生H2的微生物中某些理想的生理特性。更多以过程为导向的研究已经确定了最佳的反应堆类型和培养条件。技术经济和生命周期分析已经确定了有关经济可行性及其对环境的影响的关键过程瓶颈。审查进一步查明了当前知识的局限性和不足,并为今后研究和开发嗜热生物氢生产的方向进行了审议。

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