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首页> 外文期刊>The Science of the Total Environment >A review of recent developments on kinetics parameters for glycerol electrochemical conversion - A by-product of biodiesel
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A review of recent developments on kinetics parameters for glycerol electrochemical conversion - A by-product of biodiesel

机译:甘油电化学转化动力学参数的最新进展综述-生物柴油的副产物

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Glycerol is a by-product produced from biodiesel, fatty acid, soap and bioethanol industries. Today, the value of glycerol is decreasing in the global market due to glycerol surplus, which primarily resulted from the speedy expansion of biodiesel producers around the world. Numerous studies have proposed ways of managing and treating glycerol, as well as converting it into value-added compounds. The electrochemical conversion method is preferred for this transformation due to its simplicity and hence, it is discussed in detail. Additionally, the factors that could affect the process mechanisms and products distribution in the electrochemical process, including electrodes materials, pH of electrolyte, applied potential, current density, temperature and additives are also thoroughly explained. Value-added compounds that can be produced from the electrochemical conversion of glycerol include glyceraldehyde, dihydroxyacetone, gly-colic acid, glyceric acid, lactic acid, 1,2-propanediol, 1,3-propanediol, tartronic acid and mesoxalic acid. These compounds are found to have broad applications in cosmetics, pharmaceutical, food and polymer industries are also described. This review will be devoted to a comprehensive overview of the current scenario in the glycerol electrochemical conversion, the factors affecting the mechanism pathways, reaction rates, product selectivity and yield. Possible outcomes obtained from the process and their benefits to the industries are discussed. The utilization of solid acid catalysts as additives for future studies is also suggested.
机译:甘油是生物柴油,脂肪酸,肥皂和生物乙醇工业产生的副产品。如今,由于甘油的过剩,甘油在全球市场的价值正在下降,这主要是由于生物柴油生产商在全球范围内的迅速扩张所致。大量研究提出了管理和处理甘油以及将其转化为增值化合物的方法。电化学转化方法由于其简单性而优选用于该转化,因此将对其进行详细讨论。此外,还详细解释了可能影响电化学过程中过程机理和产物分布的因素,包括电极材料,电解质的pH值,施加的电势,电流密度,温度和添加剂。可以通过甘油的电化学转化产生的增值化合物包括甘油醛,二羟基丙酮,乙醇酸,甘油酸,乳酸,1,2-丙二醇,1,3-丙二醇,tartronic酸和中草酸。发现这些化合物在化妆品,制药,食品和聚合物工业中具有广泛的应用。这篇综述将致力于对甘油电化学转化的当前情景,影响机理途径,反应速率,产物选择性和产率的因素进行全面概述。讨论了从该过程中获得的可能结果及其对行业的好处。还建议将固体酸催化剂用作添加剂以用于未来的研究。

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