Understanding catalysis for processing glycerol and glycerol-based derivatives for the production of value added chemicals

Q1 Materials Science
Matthew Drewery, G. Sánchez, M. Li, E. Kennedy, M. Stockenhuber
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引用次数: 0

Abstract

An increase in biodiesel production has seen a dramatic increase in the production of glycerol, the main by-product. To maintain biodiesel production as economically viable, processes for valorising the 10 wt% glycerol waste stream need to be developed. The content of this chapter discusses recent work which examines potential catalytic processes for producing value added chemicals using glycerol as a platform chemical. Significant research has focussed on catalytic reactions tailored to selectively convert oxygenates from biological resources to produce valuable chemicals. While homogenous and biological catalytic processes are important, heterogeneously catalysed reactions are considered to be more desirable and potentially more economically viable due to advantages in feedstock processing. The current transesterification process associated with biodiesel production results in a number of contaminants in the glycerol stream, such as free fatty acids and residual catalyst salts, which affects downstream processing. Special emphasis is given to understand how contaminants of various by-products interact with surfaces and identify robust catalysts while examining alternative catalytic processes for producing biodiesel with purer product streams.
了解加工甘油和甘油衍生物用于生产增值化学品的催化作用
随着生物柴油产量的增加,主要副产品甘油的产量也大幅增加。为了保持生物柴油生产在经济上的可行性,需要开发对10%甘油废物流进行增值的工艺。本章的内容讨论了最近的工作,研究了使用甘油作为平台化学品生产增值化学品的潜在催化过程。重要的研究集中在选择性地将生物资源中的氧合物转化为有价值的化学物质的催化反应上。虽然均相和生物催化过程很重要,但由于在原料处理方面的优势,多相催化反应被认为是更可取的,并且可能在经济上更可行。目前与生物柴油生产相关的酯交换过程导致甘油流中存在许多污染物,如游离脂肪酸和残留的催化剂盐,这些污染物会影响下游加工。特别强调的是,了解各种副产品的污染物如何与表面相互作用,并确定强大的催化剂,同时检查替代催化过程,以生产更纯净的产品流的生物柴油。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Catalysis Structure & Reactivity
Catalysis Structure & Reactivity CHEMISTRY, PHYSICAL-
CiteScore
4.80
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0.00%
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