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State of the art of vegetable oil transformation into biofuels using catalytic cracking technology: Recent trends and future perspectives

机译:使用催化开裂技术将植物油转化植物油转化的状态:近期趋势和未来的观点

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摘要

Bioenergy generated from vegetable oils is an interesting alternative energy source to fossil fuel in terms of reducing carbon footprint and realizing circular economy. Among many routes in transforming vegetable oils into biofuels, the catalytic cracking route is a promising method due to its capability to process a wide variety of feedstocks and its ability to produce a wide range of fuels. This paper aims to give a comprehensive overview of the state-of-the-art catalytic cracking technology in vegetable oils upgrading and provide a solid foundation to design a high-quality biofuel production system. This review covers the physical and chemical properties of various types of vegetable oils, the recent development of catalytic cracking mechanism of vegetable oils, especially the reaction pathways of the primary fatty acid constituents in most of the vegetable oils, the associated catalyst characteristics and the properties of the final products. Lastly, catalytic cracking of vegetable oils using the conventional fluidized catalytic cracking unit has also included.
机译:在减少碳足迹和实现循环经济方面,从植物油产生的生物能源是一种有趣的替代能源,对化石燃料进行化石燃料。在将植物油转化为生物燃料的许多途径中,催化裂化路线是一种有希望的方法,因为它可以处理各种原料的能力及其产生各种燃料的能力。本文旨在全面概述植物油升级中最先进的催化裂化技术,为设计高质量的生物燃料生产系统提供坚实的基础。本综述涵盖了各种类型的植物油的物理和化学性质,最近植物油催化裂化机制的发展,尤其是大多数植物油中的原发性脂肪酸成分的反应途径,相关的催化剂特征和性能最终产品。最后,还包括常规流化催化裂化单元的植物油催化裂化。

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