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A review of magnetic solid catalyst development for sustainable biodiesel production

生物柴油生产 生物柴油 酯交换 原材料 催化作用 多相催化 材料科学 产量(工程) 生物燃料 制浆造纸工业 化学工程 废物管理 化学 有机化学 工程类 冶金
作者
Shamala Gowri Krishnan,Fei-Ling Pua,Fan Zhang
出处
期刊:Biomass & Bioenergy [Elsevier]
卷期号:149: 106099-106099 被引量:49
标识
DOI:10.1016/j.biombioe.2021.106099
摘要

Biodiesel is one of the most widely studied biofuels in the literature, which has a bright potential to serve as an alternative source for fossil fuel. Biodiesel is produced from transesterification or esterification reaction and usually requires a catalyst to enhance its product yield. The commercially available homogeneous catalyst generally faces several challenges, including difficulties in product separation, large volume of wastewater effluent discharged from the downstream purification process, and formation of undesirable soap by-product from the reaction between high FFA content feedstock and homogeneous base catalysts. As a result, the application of heterogeneous magnetic catalysts in biodiesel production has attracted many researchers attention due to its relatively simple catalyst separation and higher catalyst recovery rate at a shorter duration. Herein, this review focused on the preparation methods of heterogeneous magnetic acid and base catalysts as well as its effectiveness in biodiesel production. Besides, different synthesis methods of magnetic particles were reviewed as well. The reaction mechanism of heterogeneous catalysts in facilitating the formation of biodiesel via transesterification or esterification processes was also elucidated. For a more sustainable biodiesel industry, more research works are required to utilise waste materials as support for the synthesis of heterogeneous magnetic acid and base catalysts. • The potential of different types of feedstock used in biodiesel production was discussed. • The preparation and efficiency of magnetic heterogeneous acid and base catalysts were reviewed and summarized. • Various methods on synthesis of magnetic particles synthesis were elucidated. • Mechanism of heterogeneous catalysts reaction in biodiesel production was discussed.
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