Hijazi Ayman, Khalaf Nidal, Kwapinski Witold, Leahy J J
Chemical and Environmental Science Department, University of Limerick Limerick V94 T9PX Ireland
RSC Adv. 2022 May 6;12(22):13673-13694. doi: 10.1039/d2ra01379g. eCollection 2022 May 5.
This review sheds light on the catalytic valorisation of agroforestry biomass through levulinic acid and formic acid towards γ-valerolactone and other higher-value chemicals. γ-Valerolactone is produced by the hydrogenation of levulinic acid, which can be achieved through an internal hydrogen transfer reaction with formic acid in the presence of catalyst. By reviewing corresponding catalysts, the paper underlines the most efficient steps constituting an integrated sustainable process that eliminates the need for external H sources while producing biofuels as an alternative energy source. Furthermore, the review emphasizes the role of catalysts in the hydrogenation of levulinic acid, with special focus on heterogeneous catalysts. The authors highlighted the dual role of different catalysts by comparing their activity, morphology, electronic structure, synergetic relation between support and doped species, as well as their deactivation and recyclability. Acknowledging the need for green and sustainable H production, the review extends to cover the role of photo catalysis in dissociating H-donor solvents for reducing levulinic acid into γ-valerolactone under mild temperatures. To wrap up, the critical discussion presented enables readers to hone their knowledge about different schools and emphasizes research gaps emerging from experimental work. The review concludes with a comprehensive table summarizing the recent catalysts reported between the years 2017-2021.
本综述揭示了通过乙酰丙酸和甲酸将农林业生物质催化转化为γ-戊内酯和其他高价值化学品的过程。γ-戊内酯是由乙酰丙酸氢化产生的,这可以在催化剂存在下通过与甲酸的内部氢转移反应实现。通过回顾相应的催化剂,本文强调了构成一个综合可持续过程的最有效步骤,该过程无需外部氢源,同时生产生物燃料作为替代能源。此外,该综述强调了催化剂在乙酰丙酸氢化中的作用,特别关注多相催化剂。作者通过比较不同催化剂的活性、形态、电子结构、载体与掺杂物种之间的协同关系,以及它们的失活和可回收性,突出了不同催化剂的双重作用。认识到绿色和可持续制氢的必要性,该综述还涵盖了光催化在温和温度下解离供氢溶剂以将乙酰丙酸还原为γ-戊内酯中的作用。总之,所呈现的批判性讨论使读者能够加深对不同学派的了解,并强调实验工作中出现的研究差距。该综述最后给出了一个综合表格,总结了2017年至2021年间报道的最新催化剂。