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从微生物中提取生物氢气:关键挑战与机遇。

Epitomizing biohydrogen production from microbes: Critical challenges vs opportunities.

机构信息

HICoE-Centre for Biofuel and Biochemical Research, Institute of Self-Sustainable Building, Department of Fundamental and Applied Sciences, Universiti Teknologi PETRONAS, 32610, Seri Iskandar, Perak Darul Ridzuan, Malaysia.

Department of Chemical Engineering and Materials Science, Yuan Ze University, Taoyuan, Taiwan.

出版信息

Environ Res. 2023 Jun 15;227:115780. doi: 10.1016/j.envres.2023.115780. Epub 2023 Mar 28.

Abstract

Hydrogen is a clean and green biofuel choice for the future because it is carbon-free, non-toxic, and has high energy conversion efficiency. In exploiting hydrogen as the main energy, guidelines for implementing the hydrogen economy and roadmaps for the developments of hydrogen technology have been released by several countries. Besides, this review also unveils various hydrogen storage methods and applications of hydrogen in transportation industry. Biohydrogen productions from microbes, namely, fermentative bacteria, photosynthetic bacteria, cyanobacteria, and green microalgae, via biological metabolisms have received significant interests off late due to its sustainability and environmentally friendly potentials. Accordingly, the review is as well outlining the biohydrogen production processes by various microbes. Furthermore, several factors such as light intensity, pH, temperature and addition of supplementary nutrients to enhance the microbial biohydrogen production are highlighted at their respective optimum conditions. Despite the advantages, the amounts of biohydrogen being produced by microbes are still insufficient to be a competitive energy source in the market. In addition, several major obstacles have also directly hampered the commercialization effors of biohydrogen. Thus, this review uncovers the constraints of biohydrogen production from microbes such as microalgae and offers solutions associated with recent strategies to overcome the setbacks via genetic engineering, pretreatments of biomass, and introduction of nanoparticles as well as oxygen scavengers. The opportunities of exploiting microalgae as a suastainable source of biohydrogen production and the plausibility to produce biohydrogen from biowastes are accentuated. Lastly, this review addresses the future perspectives of biological methods to ensure the sustainability and economy viability of biohydrogen production.

摘要

氢气是一种清洁绿色的未来生物燃料选择,因为它是无碳、无毒的,且具有高能量转换效率。在开发氢气作为主要能源时,一些国家已经发布了实施氢能经济的指导方针和氢气技术发展路线图。此外,本篇综述还揭示了各种储氢方法以及氢气在交通运输行业中的应用。近年来,由于其可持续性和环境友好性潜力,通过微生物(即发酵细菌、光合细菌、蓝藻和绿藻)的生物代谢来生产生物氢已受到广泛关注。因此,本综述还概述了各种微生物的生物氢生产过程。此外,还强调了在各自最佳条件下,光强、pH 值、温度和添加补充营养物质等因素对提高微生物生物制氢产量的影响。尽管具有优势,但微生物产生的生物氢量仍然不足以成为市场上有竞争力的能源。此外,一些主要障碍也直接阻碍了生物氢的商业化进程。因此,本综述揭示了微生物(如藻类)生物制氢的限制因素,并提出了与通过遗传工程、生物质预处理以及引入纳米颗粒和氧清除剂来克服这些障碍相关的最新策略。强调了利用藻类作为可持续生物制氢生产的来源的机会以及从生物废物中生产生物氢的可行性。最后,本综述讨论了生物方法的未来前景,以确保生物制氢的可持续性和经济可行性。

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