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首页> 外文期刊>Journal of Agricultural and Food Chemistry >New Understandings of the Relationship and Initial Formation Mechanism for Pseudo-lignin, Humins, and Acid-Induced Hydrothermal Carbon
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New Understandings of the Relationship and Initial Formation Mechanism for Pseudo-lignin, Humins, and Acid-Induced Hydrothermal Carbon

机译:伪木质素,腐害和酸诱导的水热碳关系与初始形成机制的新谅解

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The generation of pseudo-lignin as byproduct during the lignocellulose acidic pretreatment has been proposed for many years. However, the detailed formation mechanism is still unclear. Moreover, there is a lack of understanding in the initial reaction during the formation of humins (byproducts in furfural production) and acid-induced hydrothermal carbon (carbon material). In this work, the initial formation of these three substances were investigated. We first found the common feature of their formation process was that carbohydrate-hydrolyzed compounds could form black polymers by condensing in acidic media, but the difference was dependent on the reaction degree. Furthermore, the results revealed that oxidation was an accelerator for condensations during producing black polymers because oxidized compounds could enhance the acidity of the reaction system. However, condensations of oxidized compounds were more difficult to proceed. Meanwhile, during the initial stage, the dominating pathway was that furfural condensed with itself and isomerized xylose via aldol-condensation.
机译:已经提出了多年来在木质纤维素酸性预处理中作为副产物的伪木质素的产生。但是,详细的形成机制仍然不清楚。此外,在腐烂(糠醛生产中的副产物)和酸诱导的水热碳(碳材料)的初始反应中缺乏了解。在这项工作中,研究了这三种物质的初始形成。我们首先发现其形成过程的常见特征是碳水化合物 - 水解化合物可以通过缩合酸性介质形成黑色聚合物,但差异取决于反应程度。此外,结果显示,氧化是在生产黑色聚合物期间的用于缩合的促进剂,因为氧化化合物可以增强反应体系的酸度。然而,氧化化合物的缩合更难以进行。同时,在初始阶段,主导途径是通过醛醇缩合与本身和异构化木糖凝结的糠醛。

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