Zheng Bo, Yu Shengzhu, Chen Zhenya, Huo Yi-Xin
Key Laboratory of Molecular Medicine and Biotherapy, School of Life Science, Beijing Institute of Technology, Beijing, China.
Center for Infectious Disease Research, School of Medicine, Tsinghua University, Beijing, China.
Front Microbiol. 2022 Aug 23;13:933882. doi: 10.3389/fmicb.2022.933882. eCollection 2022.
For decades, lignocellulosic biomass has been introduced to the public as the most important raw material for the environmentally and economically sustainable production of high-valued bioproducts by microorganisms. However, due to the strong recalcitrant structure, the lignocellulosic materials have major limitations to obtain fermentable sugars for transformation into value-added products, e.g., bioethanol, biobutanol, biohydrogen, etc. In this review, we analyzed the recent trends in bioenergy production from pretreated lignocellulose, with special attention to the new strategies for overcoming pretreatment barriers. In addition, persistent challenges in developing for low-cost advanced processing technologies are also pointed out, illustrating new approaches to addressing the global energy crisis and climate change caused by the use of fossil fuels. The insights given in this study will enable a better understanding of current processes and facilitate further development on lignocellulosic bioenergy production.
几十年来,木质纤维素生物质作为微生物生产高价值生物产品在环境和经济方面可持续发展的最重要原材料,已被介绍给公众。然而,由于其顽固的结构,木质纤维素材料在获取可发酵糖以转化为增值产品(如生物乙醇、生物丁醇、生物氢等)方面存在重大限制。在本综述中,我们分析了预处理木质纤维素生物能源生产的最新趋势,特别关注克服预处理障碍的新策略。此外,还指出了开发低成本先进加工技术方面持续存在的挑战,阐明了解决因使用化石燃料导致的全球能源危机和气候变化的新方法。本研究中的见解将有助于更好地理解当前的工艺,并促进木质纤维素生物能源生产的进一步发展。