Department of Marine Environmental Engineering, Gyeongsang National University, Gyeongsangnam-do 53064, Republic of Korea.
Department of Integrated Energy and Infrasystem, Kangwon National University, Kangwondaehak-gil, 1, Chuncheon-si, Gangwon-do 24341, Republic of Korea; Department of Environmental Engineering, College of Engineering, Kangwon National University, Kangwondaehak-gil 1, Chuncheon-si, Gangwon-do 24341, Republic of Korea.
Bioresour Technol. 2023 Feb;369:128380. doi: 10.1016/j.biortech.2022.128380. Epub 2022 Nov 22.
Lignocellulosic and algal biomasses are known to be vital feedstocks to establish a green hydrogen supply chain toward achieving a carbon-neutral society. However, one of the most pressing issues to be addressed is the low digestibility of these biomasses in biorefinery processes, such as dark fermentation, to produce green hydrogen. To date, various pretreatment approaches, such as physical, chemical, and biological methods, have been examined to enhance feedstock digestibility. However, neither systematic reviews of pretreatment to promote biohydrogen production in dark fermentation nor economic feasibility analyses have been conducted. Thus, this study offers a comprehensive review of current biomass pretreatment methods to promote biohydrogen production in dark fermentation. In addition, this review has provided comparative analyses of the technological and economic feasibility of existing pretreatment techniques and discussed the prospects of the pretreatments from the standpoint of carbon neutrality and circular economy.
木质纤维素和藻类生物质是建立绿色氢能供应链以实现碳中和社会的重要原料。然而,生物炼制过程中需要解决的最紧迫问题之一是这些生物质的低消化率,例如黑暗发酵生产绿色氢气。迄今为止,已经研究了各种预处理方法,如物理、化学和生物方法,以提高原料的消化率。然而,既没有对预处理以促进黑暗发酵中生物氢生产进行系统的综述,也没有进行经济可行性分析。因此,本研究对当前促进黑暗发酵中生物氢生产的生物质预处理方法进行了全面综述。此外,本综述还对现有预处理技术的技术和经济可行性进行了比较分析,并从碳中和和循环经济的角度讨论了预处理的前景。