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Selective catalytic two-step process for ethylene glycol from carbon monoxide

机译:一氧化碳选择性催化两步法制乙二醇

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摘要

Upgrading C1 chemicals (for example, CO, CO/H2, MeOH and CO2) with C–C bond formation is essential for the synthesis of bulk chemicals. In general, these industrially important processes (for example, Fischer Tropsch) proceed at drastic reaction conditions (>250 °C; high pressure) and suffer from low selectivity, which makes high capital investment necessary and requires additional purifications. Here, a different strategy for the preparation of ethylene glycol (EG) via initial oxidative coupling and subsequent reduction is presented. Separating coupling and reduction steps allows for a completely selective formation of EG (99%) from CO. This two-step catalytic procedure makes use of a Pd-catalysed oxycarbonylation of amines to oxamides at room temperature (RT) and subsequent Ru- or Fe-catalysed hydrogenation to EG. Notably, in the first step the required amines can be efficiently reused. The presented stepwise oxamide-mediated coupling provides the basis for a new strategy for selective upgrading of C1 chemicals.
机译:具有C–C键形成的C1化学物质(例如,CO,CO / H2,MeOH和CO2)的升级对于合成大宗化学物质至关重要。通常,这些重要的工业过程(例如Fischer Tropsch)在剧烈的反应条件(> 250°C;高压)下进行,且选择性低,这需要大量的资金投入并需要进行额外的纯化。在这里,提出了通过初始氧化偶合和随后的还原来制备乙二醇(EG)的另一种策略。分开的偶联和还原步骤可从CO完全选择性地形成EG(99%)。此两步催化程序利用Pd催化的胺在室温(RT)催化的氧羰基化为草酰胺,随后生成Ru-或Fe -催化氢化为EG。值得注意的是,在第一步中,所需的胺可以被有效地再利用。提出的逐步乙酰胺介导的偶联为选择性升级C1化学品的新策略提供了基础。

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