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首页> 外文期刊>Journal of Materials Science >Hydrothermal degradation of polysaccharides in a semi-batch reactor: product distribution as a function of severity parameter
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Hydrothermal degradation of polysaccharides in a semi-batch reactor: product distribution as a function of severity parameter

机译:半间歇反应器中多糖的水热降解:产物分布与严重性参数的关系

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The naturally occurring polysaccharides, starch and pectic acid, were hydrothermally degraded in a semi-batch reactor coupled with a plug-flow reactor (PFR) to produce valuable chemicals including mono- and oligosaccharides over a temperature range from 160 to 240 degrees C at 10 MPa. The solid polysaccharide samples were solubilized in a semi-batch reactor, and the water-soluble (WS) components instantly entered the PFR in which further degradation took place. The reaction temperature and/or residence time in the PFR significantly affected the yields of oligosaccharides, monosaccharides and secondary decomposition products, and also the average molecular weight of WS components. The product distributions were expressed with severity, which combines the effects of temperature and time on the progress of the reaction, as a single reaction parameter. Using this parameter, it was found that similar product distributions were obtained at equal levels of severity. The severity parameter enabled easy interpretation of the change in product distribution for these reactions.
机译:天然存在的多糖,淀粉和果胶酸在半批量反应器中与活塞流反应器(PFR)进行水热降解,从而在160至240摄氏度的温度范围(10摄氏度)下产生有价值的化学物质,包括单糖和低聚糖MPa。固体多糖样品在半间歇反应器中溶解,水溶性(WS)成分立即进入PFR,在其中发生进一步降解。在PFR中的反应温度和/或停留时间显着影响寡糖,单糖和二次分解产物的产率,以及WS组分的平均分子量。产物分布以严重程度表示,其结合了温度和时间对反应进程的影响,作为单个反应参数。使用此参数,发现在相同严重程度下获得了相似的产品分布。严重性参数可以轻松解释这些反应的产物分布变化。

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