Zhao Che, Xu Qinyao, Gu Ying, Nie Xingjin, Shan Rui
School of Naval Architecture and Maritime, Zhejiang Ocean University, Zhoushan 316022, China.
Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou 510640, China.
ACS Omega. 2023 Feb 23;8(9):8190-8200. doi: 10.1021/acsomega.2c07909. eCollection 2023 Mar 7.
Biochar, obtained from the thermal decomposition of different biomass sources, can be used in various scientific technologies by virtue of its distinguishing performance. Recent developments in advanced biochar synthesis methods have led to continuous growth in the literature related to bulk biochar products and synthesized biochar substrates. This review specifically summarizes the current advanced methods for the synthesis of functional biochar catalysts and applications in (trans)esterification. Herein, first the method and design of synthesized biochar substrate catalysts are briefly introduced. Second, the applications of these synthesized biochar substrate catalysts upon (trans)esterification are comprehensively discussed. Finally, the current research status and the future perspectives of the synthesized biochar substrate catalyst are presented. It is expected that this summary will provide perspectives and instructions for future work on synthesized biochar catalysts for biodiesel products.
生物炭是通过不同生物质来源的热分解获得的,凭借其独特性能可用于各种科学技术。先进生物炭合成方法的最新进展导致与块状生物炭产品和合成生物炭底物相关的文献不断增加。本综述特别总结了目前合成功能性生物炭催化剂的先进方法及其在(酯)交换反应中的应用。在此,首先简要介绍合成生物炭底物催化剂的方法和设计。其次,全面讨论这些合成生物炭底物催化剂在(酯)交换反应中的应用。最后,介绍了合成生物炭底物催化剂的当前研究现状和未来展望。预计本综述将为未来生物柴油产品合成生物炭催化剂的研究工作提供思路和指导。