首页> 美国卫生研究院文献>ChemistryOpen >Product Control and Insight into Conversion of C6 Aldose Toward C2 C4 and C6 Alditols in One‐Pot Retro‐Aldol Condensation and Hydrogenation Processes
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Product Control and Insight into Conversion of C6 Aldose Toward C2 C4 and C6 Alditols in One‐Pot Retro‐Aldol Condensation and Hydrogenation Processes

机译:产品控制和洞察C6醛糖转化为C2C4和C6 Alditol在一锅中的一种锅中的缩合和氢化过程中

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摘要

Alcohols have a wide range of applicability, and their functions vary with the carbon numbers. C6 and C4 alditols are alternative of sweetener, as well as significant pharmaceutical and chemical intermediates, which are mainly obtained through the fermentation of microorganism currently. Similarly, as a bulk chemical, C2 alditol plays a decisive role in chemical synthesis. However, among them, few works have been focused on the chemical production of C4 alditol yet due to its difficult accumulation. In this paper, under a static and semi‐flowing procedure, we have achieved the product control during the conversion of C6 aldose toward C6 alditol, C4 alditol and C2 alditol, respectively. About C4 alditol yield of 20 % and C4 plus C6 alditols yield of 60 % are acquired in the one‐pot conversion via a cascade retro‐aldol condensation and hydrogenation process. Furthermore, in the semi‐flowing condition, the yield of ethylene glycol is up to 73 % thanks to its low instantaneous concentration.
机译:醇具有广泛的适用性,其功能随碳数而变化。 C6和C4 alditols是甜味剂的替代品,以及主要通过微生物发酵目前的发酵来获得的重要药物和化学中间体。类似地,作为散装化学品,C 2醛醇在化学合成中起着决定性作用。然而,其中,由于其难度累积,很少有效地关注C4 alditol的化学生产。本文在静态和半流程过程下,我们分别在C6醛糖转化为C6醛醇,C4醛醇和C 2醛醇期间达到了产品控制。大约C4 alditol产率为20%和C4加上C6 alditols的产率为60%的产率通过级联翻译缩合和氢化方法在单罐转化中获得。此外,在半流地状态下,由于其低瞬时浓度,乙二醇的产率高达73%。

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