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用于生物柴油生产的生物质衍生低成本碳催化剂的研究进展:制备方法、反应条件及作用机制

Advances in biomass derived low-cost carbon catalyst for biodiesel production: preparation methods, reaction conditions, and mechanisms.

作者信息

Yadav Gaurav, Yadav Nidhi, Ahmaruzzaman Md

机构信息

Department of Chemistry, National Institute of Technology Silchar 788010 Assam India

出版信息

RSC Adv. 2023 Aug 3;13(33):23197-23210. doi: 10.1039/d3ra03561a. eCollection 2023 Jul 26.

Abstract

Biodiesel is a less hazardous, environmentally friendly biofuel that has been extensively investigated in modern years to ensure that we lessen our dependency on fossil fuels and mitigate climate change. While fossil fuel substitutes like biodiesel may help transition to a less polluted world, industrial-scale manufacturing still relies highly on chemical catalysis. However, heterogeneous solid catalysts result in less activity for biodiesel production due to their deactivation effects, porosity, surface area, material stability, and lower reactivity under moderate conditions. The "sulfonated carbons" are metal-free solid protonic acids distinguished by their distinctive carbon structure and Brønsted acidity ( = 8-11). Heterogeneous sulfonated catalysts derived from waste biomass were a significant focus of the most advanced biodiesel processing techniques for simple and low-cost manufacturing processes. This study discusses the advantages and disadvantages of various catalysts, biomass sources and properties, synthesis of catalysts, and factors influencing the insertion of active sulfonic sites on biomass surfaces. Additionally, transesterification and esterification reaction mechanisms and kinetics are discussed. At last, future directions are provided for young, dynamic researchers.

摘要

生物柴油是一种危害较小、环境友好的生物燃料,近年来已得到广泛研究,以确保我们减少对化石燃料的依赖并缓解气候变化。虽然像生物柴油这样的化石燃料替代品可能有助于向污染更少的世界过渡,但工业规模的生产仍然高度依赖化学催化。然而,非均相固体催化剂由于其失活效应、孔隙率、表面积、材料稳定性以及在温和条件下较低的反应活性,导致生物柴油生产活性较低。“磺化碳”是无金属的固体质子酸,其独特的碳结构和布朗斯特酸度(= 8 - 11)使其独具特色。源自废弃生物质的非均相磺化催化剂是最先进的生物柴油加工技术的一个重要焦点,用于简单且低成本的制造过程。本研究讨论了各种催化剂的优缺点、生物质来源和性质、催化剂的合成以及影响生物质表面活性磺酸位点插入的因素。此外,还讨论了酯交换和酯化反应机理及动力学。最后,为年轻、有活力的研究人员提供了未来的研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6034/10398831/e6e435d4c357/d3ra03561a-f1.jpg

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