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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Catalytic Aerobic Oxidation of Renewable Furfural with Phosphomolybdic Acid Catalyst: an Alternative Route to Maleic Acid
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Catalytic Aerobic Oxidation of Renewable Furfural with Phosphomolybdic Acid Catalyst: an Alternative Route to Maleic Acid

机译:磷钼酸催化剂催化可再生糠醛的好氧氧化:马来酸的另一条路线

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摘要

Developing new technologies to obtain chemicals from biomass in place of the fossil feedstock have attracted attention in academic and industrial communities. In this work, using renewable furfural as the feedstock, catalytic aerobic oxidation of furfural to maleic acid was investigated with phosphomolybdic acid catalyst in the aqueous/organic biphase system. The oxidation happens in the aqueous phase, and the organic phase serves as the reservoir to release the substrate gradually through phase equilibrium. Under the optimized conditions, 34.5% yield of maleic acid could be obtained with 68.6% of selectivity, and the conversion of furfural is 50.4%. Because furfural and maleic acid dominantly exist in two different phases, the product separation and reactant recycle would be very simple in its potential application. The FT-IR and P NMR technologies were applied to characterize the phosphomolybdic acid catalyst, and the pathway of maleic acid formation was also discussed based on obtained mechanistic information. This work demonstrates an alternative, renewable route to maleic acid, and the mechanistic information from this study also provides clues to improve the catalyst for efficient oxidation of furfural to maleic acid.
机译:开发新技术以从生物质中获取化学物质代替化石原料已引起了学术界和工业界的关注。在这项工作中,使用可再生糠醛为原料,在水/有机双相系统中使用磷钼酸催化剂研究了糠醛催化好氧氧化为马来酸。氧化发生在水相中,有机相充当储库,通过相平衡逐渐释放底物。在最佳条件下,马来酸的收率为34.5%,选择性为68.6%,糠醛的转化率为50.4%。由于糠醛和马来酸主要存在于两个不同的相中,因此产物分离和反应物再循环在其潜在应用中将非常简单。应用FT-IR和P NMR技术表征了磷钼酸催化剂,并根据获得的机理信息讨论了马来酸的形成途径。这项工作展示了一种替代性的,可再生的生产马来酸的途径,这项研究的机理信息也为改进将糠醛有效氧化为马来酸的催化剂提供了线索。

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