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Process intensification and waste minimization in liquid-liquid-liquid phase transfer catalyzed selective synthesis of mandelic acid

机译:过程强化和浪费最小化liquid-liquid-liquid相转移催化选择性合成扁桃酸

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摘要

Conversion of triphasic reactions into triphasic reactions can lead to process intensification, waste minimization and selectivity enhancement. Unlike liquid-liquid (L-L) PTC, the Liquid-Liquid-Liquid phase transfer catalysis (L-L-L PTC) offers high order of intensification of rates of reaction and catalyst reuse. The rate of reaction is remarkably enhanced by the catalyst-rich middle phase, which is the main reaction phase. Separation of catalyst can be done easily and the separated catalyst can be reused several times by using L-L-L PTC. This leads to waste minimization and other benefits of Green Chemistry. Mandelic acid and its derivatives are used for their dual activities as antibacterial and anti-aging agents. In this work, mandelic acid was produced by L-L-L PTC reaction of dichlorocarbene with benzaldehyde. Dichlorocarbene was generated in situ by the reaction of chloroform and sodium hydroxide in the presence of poly ethylene glycol (PEG) 4000 as the catalyst. The selectivity to mandelic acid was 98%. The reaction mechanism and kinetics model were established to validate the experimental data.
机译:转换成三相的三相的反应反应会导致过程强化,废物最少化和选择性的提高。与液-液(L-L) PTC,Liquid-Liquid-Liquid相转移催化(L-L-L PTC)提供强化的高阶反应和催化剂的重用。的反应明显增强catalyst-rich中间阶段,这是主要的反应阶段。可以很容易和分离催化剂通过使用L-L-L PTC多次重用。导致浪费最小化和其他福利绿色化学。衍生品是用于他们的双重活动抗菌和抗衰老剂。工作时,扁桃酸是由L-L-L PTC(列车自动控制系统)与苯甲醛二氯卡宾的反应。二氯卡宾原位生成的氯仿和氢氧化钠的反应聚乙二醇(PEG)的存在4000年作为催化剂。是98%。建立验证模型实验数据。

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