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Isomerization of long-chain fatty acids and long-chain hydrocarbons: A review

机译:长链脂肪酸和长链碳氢化合物的异构化:综述

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Isomerization of long-chain saturated fatty acids (LCSFAs) by catalytic conversion through zeolites is of great interest in cosmetics and biofuel production. This conversion pathway has received attention in the last two decades due to the increasing interest in renewable feedstock. A favorable policy framework and a larger availability of lipid wastes from industry promote new valorization practices like this one and open new opportunities for the near future. Moreover, the next decade is likely to witness a considerable rise in the research for improvement of isomerization yield by testing various bifunctional zeolites. Although this approach has enormous potential in terms of applicability, it currently suffers from low yields that stems from focus on only one type of zeolite. Despite limited number of studies in this field, there is a considerable amount of literature about isomerization of similar compounds, i.e., long-chain unsaturated fatty acids (LCUFAs) and long-chain linear alkanes (LCAs); where, past research has focused on increasing the isomerization yield by using different catalysts, co-catalysts and optimizing operating conditions. Among all types of isomerization catalysts, bifunctional metal loaded microporous solid acids catalysts, known as zeolites, have attracted extensive attention due to their sustainable, environmentally friendly nature, as well as recoverable features. The current challenges of isomerization of LCSFAs are about enhancing the yields towards isomerized products and lowering the long reaction times to scale-up towards industrialization. The innovative aspect of this work is about the identification of the most promising catalysts and co-catalysts for isomerization of LCSFAs and the comparison of isomerization of two similar compounds, LCUFAs and LCAs. It also provides a comprehensive overview of the current state of the art. Results show that the best yields for isomerization of LCUFAs and LCAs have been obtained by 1 -dimensional and 2-dimensional zeolites; while, 3-dimensional zeolites have shown the lowest isomerization yields. It also indicates that, for isomerization of LCSFAs, 3-dimensioanl zeolites are the only category that have been tested. Thus, the present paper, highlights shortcomings and provides a blueprint for future research on isomerization of LCSFAs.
机译:通过沸石催化转化的长链饱和脂肪酸(LCSFA)的异构化对化妆品和生物燃料生产具有很大的兴趣。由于可再生原料的兴趣越来越多,这种转换途径在过去二十年中受到关注。有利的政策框架和来自行业的脂质废物的更大可用性促进了这样一个新的价值化实践,并为不久的将来开辟了新的机会。此外,未来十年可能见证通过测试各种双官能沸石来提高异构化产量的研究。虽然这种方法在适用性方面具有巨大潜力,但目前患有低产率,其源于只关注一种类型的沸石。尽管在该领域的研究数量有限,但关于类似化合物的异构化,即长链不饱和脂肪酸(LCUFA)和长链线性烷烃(LCA),存在相当大量的文献。在哪里,过去的研究专注于通过使用不同的催化剂,助催化剂和优化操作条件来增加异构化产量。在所有类型的异构化催化剂中,由于其可持续,环保的性质以及可收回的特征,双官能金属负载的微孔固体酸催化剂引起了广泛的关注。 LCSFA异构化的当前挑战是提高异构化产物的产量,降低长时间的反应时间以扩大工业化。这项工作的创新方面是关于鉴定最有前途的催化剂和用于异构化的催化剂,以及两种类似化合物,LCUFA和LCA的异构化的比较。它还提供了本领域当前状态的全面概述。结果表明,LCUFA和LCA异构化的最佳产量已获得1,3-二维和二维沸石;虽然,三维沸石已经显示出最低的异构化产率。它还表明,对于LCSFA的异构化,3-Viewioanl沸石是已经测试的唯一类别。因此,本文突出了缺点,并为未来的LCSFA异构化研究提供了蓝图。

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