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首页> 外文期刊>Angewandte Chemie >H-2-Free Re-Based Catalytic Dehydroxylation of Aldaric Acid to Muconic and Adipic Acid Esters
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H-2-Free Re-Based Catalytic Dehydroxylation of Aldaric Acid to Muconic and Adipic Acid Esters

机译:基于H-2的重新基于RE的醛酸催化脱羟基化粘液和己二酸酯

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摘要

As one of the most demanded dicarboxylic acids, adipic acid can be directly produced from renewable sources. Hexoses from (hemi)cellulose are oxidized to aldaric acids and subsequently catalytically dehydroxylated. Hitherto performed homogeneously, we present the first heterogeneous catalytic process for converting an aldaric acid into muconic and adipic acid. The contribution of leached Re from the solid pre-reduced catalyst was also investigated with hot-filtration test and found to be inactive for dehydroxylation. Corrosive or hazardous (HBr/H-2) reagents are avoided and simple alcohols and solid Re/C catalysts in an inert atmosphere are used. At 120 degrees C, the carboxylic groups are protected by esterification, which prevents lactonization in the absence of water or acidic sites. Dehydroxylation and partial hydrogenation yield monohexenoates (93 %). For complete hydrogenation to adipate, a 16 % higher activation barrier necessitates higher temperatures.
机译:己二酸是需求量最大的二羧酸之一,可以直接从可再生资源中生产。(半)纤维素中的己糖被氧化成醛酸,然后催化脱羟基。迄今为止,我们提出了第一个将醛酸转化为粘液酸和己二酸的多相催化过程。还通过热过滤试验研究了固体预还原催化剂中浸出的稀土的贡献,发现其对脱羟基不起作用。避免使用腐蚀性或危险性(HBr/H-2)试剂,使用惰性气氛中的简单醇和固体Re/C催化剂。在120摄氏度时,羧基受到酯化作用的保护,这可以防止在没有水或酸性位点的情况下发生乳糖化。脱羟基和部分氢化生成单己烯酸酯(93%)。为了完全氢化生成己二酸酯,16%的活化屏障需要更高的温度。

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