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Structural Effects of Cellulose on Hydrolysis and Carbonization Behavior during Hydrothermal Treatment

机译:纤维素在水热处理过程中对水解和碳化行为的结构效应

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This study aims to investigate how the morphology of cellulose influences the hydrolysis and carbonization during hydrothermal treatment at temperatures between 180 and 240 °C. The morphology of cellulose, especially different crystallinities and degrees of polymerization, is represented by microcrystalline cellulose and α-cellulose. Kinetic analysis is considered a tool to allow the determination of the mechanisms of the two types of cellulose during the hydrothermal process. A kinetic model, in which cellulose is assumed to be hydrolyzed to a limited extent, is proposed. Five scenarios are used as models for pyrolysis of nonhydrolyzed cellulose that forms primary char, along with reaction pathways of hydrolyzable cellulose and its derivatives that latterly form secondary char. The morphologies of solid products are in good agreement with the results of the proposed model.
机译:本研究旨在调查纤维素的形态如何在180至240℃的温度下在水热处理过程中影响水解和碳化。纤维素,特别是不同的荧光和聚合度的形态由微晶纤维素和α-纤维素表示。动力学分析被认为是一种工具,以允许在水热过程中测定两种类型的纤维素的机制。提出了一种动力学模型,其中假设纤维素在有限程度上水解。五种情况用作非水溶性纤维素热解的模型,其形成初级炭,以及可水解纤维素的反应途径及其衍生物,其后者形成二级炭。固体产品的形态与拟议模型的结果一致。

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