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Hydrothermal CO2 reduction using biomass derivatives as reductants

机译:使用生物质衍生物作为还原剂的水热二氧化碳减少

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A wide range of organic substances, potentially derived from biomass, were tested as reductants for CO2 (as NaHCO3) in hydrothermal media. The reactions were carried out in batch reactors at 300 degrees C and 3 h. All the substances reduced CO2 to formic acid in yields up to 65%. These results agree to the mechanisms proposed in literature that suggested that reduction is carried out by primary or secondary alcohols. However, some substances without these groups gave significant yields to formic acid so new mechanisms were proposed. Out of all the compounds tested, glucose gave the highest yield to formic acid, probably due to its particular reaction pathways at the studied conditions. Effect of NaOH in the reaction using glucose was investigated to assure that formic acid is produced from bicarbonate. For ethanol and ethylenglycol, additional conditions were tested to study the dependence of the reaction with time and temperature.
机译:在水热介质中,作为CO2(如NaHCO3)的还原剂,对可能来自生物质的多种有机物质进行了测试。这些反应在300摄氏度和3小时的间歇式反应器中进行。所有物质都将二氧化碳还原为甲酸,产率高达65%。这些结果与文献中提出的机理一致,即还原是由伯醇或仲醇进行的。然而,一些不含这些基团的物质产生了大量甲酸,因此提出了新的机理。在所有测试的化合物中,葡萄糖生成甲酸的产率最高,这可能是因为在所研究的条件下,葡萄糖具有特殊的反应途径。考察了NaOH在葡萄糖反应中的作用,以确保从碳酸氢盐中生成甲酸。对于乙醇和乙二醇,测试了附加条件,以研究反应随时间和温度的依赖性。

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