Xu Siyu, Jiang Yujing, Liu Juan, Chun-Ho Lam Jason, Lin Richen, Shuai Li, Shen Feng, Zhu Wenlei, Song Bing
State Key Laboratory of Pollution Control and Resource Reuse, State Key Laboratory of Analytical Chemistry for Life Science, The Frontiers Science Center for Critical Earth Material Cycling, School of the Environment, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, P. R. China.
School of Energy and Environment and State Key Laboratory of Marine Pollution, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong, PR China.
ChemSusChem. 2025 Jan 14;18(2):e202401405. doi: 10.1002/cssc.202401405. Epub 2024 Oct 18.
Sustainable production of valuable biochemicals and biofuels from lignocellulosic biomass necessitates the development of durable and high-performance catalysts. To assist the next-stage catalyst design for hydrothermal treatment of biosugars, this paper provides a critical review of (1) recent advances in biosugar hydrothermal valorization using heterogeneous catalysts, (2) the deactivation process of catalysts based on recycling tests of representative biosugar hydrothermal treatments, (3) state-of-the-art understandings of the deactivation mechanisms of heterogeneous catalysts, and (4) strategies for preparing durable catalysts and the regeneration of deactivated catalysts. Based on the review, challenges and perspectives are proposed. Some remarkable achievements in heterogeneous catalysis of biosugars are highlighted. The understanding of catalyst durability needs to be further enhanced based on full examination of the catalytic performance based on the conversion of substrates, the yield, and selectivity of products. Further, a full examination of the physiochemical changes based on multiple characterization techniques is required to eclucidate the relationships between treatment variables and catalyst durability. Collectively, a clear understanding of the relationships between chemical reaction pathways, treatment variables, and the physiochemistry of catalysts is encouraged to be gained to advise the development of heterogeneous catalysts for long-term and efficient hydrothermal upgrading of biosugars.
从木质纤维素生物质中可持续生产有价值的生物化学品和生物燃料需要开发耐用且高性能的催化剂。为了协助下一阶段用于生物糖热处理的催化剂设计,本文对以下内容进行了批判性综述:(1)使用多相催化剂进行生物糖水热增值的最新进展;(2)基于代表性生物糖水热处理的循环测试的催化剂失活过程;(3)多相催化剂失活机制的最新认识;(4)制备耐用催化剂和失活催化剂再生的策略。基于该综述,提出了挑战和展望。强调了生物糖多相催化方面的一些显著成就。需要基于对底物转化率、产物产率和选择性的催化性能的全面考察,进一步提高对催化剂耐久性的理解。此外,需要基于多种表征技术对物理化学变化进行全面考察,以阐明处理变量与催化剂耐久性之间的关系。总体而言,鼓励清晰理解化学反应途径、处理变量和催化剂物理化学之间的关系,以为生物糖长期高效水热升级的多相催化剂开发提供建议。