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生物柴油生产中广泛使用的催化剂:综述

Widely used catalysts in biodiesel production: a review.

作者信息

Changmai Bishwajit, Vanlalveni Chhangte, Ingle Avinash Prabhakar, Bhagat Rahul, Rokhum Samuel Lalthazuala

机构信息

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

Department of Botany, Mizoram University Tanhril Aizawl Mizoram 796001 India.

出版信息

RSC Adv. 2020 Nov 13;10(68):41625-41679. doi: 10.1039/d0ra07931f. eCollection 2020 Nov 11.

Abstract

An ever-increasing energy demand and environmental problems associated with exhaustible fossil fuels have led to the search for an alternative renewable source of energy. In this context, biodiesel has attracted attention worldwide as an eco-friendly alternative to fossil fuel for being renewable, non-toxic, biodegradable, and carbon-neutral. Although the homogeneous catalyst has its own merits, much attention is currently paid toward the chemical synthesis of heterogeneous catalysts for biodiesel production as it can be tuned as per specific requirement and easily recovered, thus enhancing reusability. Recently, biomass-derived heterogeneous catalysts have risen to the forefront of biodiesel productions because of their sustainable, economical and eco-friendly nature. Furthermore, nano and bifunctional catalysts have emerged as a powerful catalyst largely due to their high surface area, and potential to convert free fatty acids and triglycerides to biodiesel, respectively. This review highlights the latest synthesis routes of various types of catalysts (including acidic, basic, bifunctional and nanocatalysts) derived from different chemicals, as well as biomass. In addition, the impacts of different methods of preparation of catalysts on the yield of biodiesel are also discussed in details.

摘要

不断增长的能源需求以及与不可再生化石燃料相关的环境问题,促使人们寻找替代的可再生能源。在此背景下,生物柴油作为一种对环境友好的化石燃料替代品,因其可再生、无毒、可生物降解和碳中和的特性而受到全球关注。尽管均相催化剂有其自身优点,但目前人们非常关注用于生物柴油生产的非均相催化剂的化学合成,因为它可以根据特定要求进行调整且易于回收,从而提高了可重复使用性。最近,基于生物质的非均相催化剂因其可持续、经济和环境友好的特性,在生物柴油生产中崭露头角。此外,纳米催化剂和双功能催化剂因其高比表面积以及分别将游离脂肪酸和甘油三酯转化为生物柴油的潜力,已成为强大的催化剂。本文综述重点介绍了源自不同化学品以及生物质的各类催化剂(包括酸性、碱性、双功能和纳米催化剂)的最新合成路线。此外,还详细讨论了不同催化剂制备方法对生物柴油产率的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc57/9058015/7ee2f40ce011/d0ra07931f-f1.jpg

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