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Severity Function Describing the Hydrolysis of Xylan Using Carbonic Acid

机译:使用碳酸描述Xylan水解的严重性函数

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Beech wood derived xylan to hydrolyzed to predominantly xylose monomer units after exposure to hot, compressed liquid water saturated with carbon dioxide. Similar treatment without CO_2 saturation resulted in only minor hydrolysis and a smaller fraction of monomers among the hydrolysis products. Severity of the hydrolysis reaction was correlated to reaction time, temperature, and carbon dioxide partial pressure and followed a function similar to those used to characterize mineral acid systems. Results from parallel hydrolysis experiments with an aqueous system and a very dilute sulfuric acid system allowed an approximation of the dissociation constant of carbonic acid in the temperature range of 170-230°C Results suggest that carbonic acid may be a viable reagent for promoting hydrolysis without mineral acids, especially in the case of a bioprocessing plant that produces carbon dioxide.
机译:山毛榉木衍生的Xylan在暴露于热的压缩液体水中饱和二氧化碳后,将Xylan衍生出来,以主要是木糖单体单元。没有CO_2饱和的类似处理仅导致水解产物中仅少量的水解和较小的单体单体。水解反应的严重程度与反应时间,温度和二氧化碳分压相关,然后用与用于表征无机酸系统的功能相似的功能。用水性系统的并联水解实验结果和非常稀硫酸系统允许碳酸在170-230℃的温度范围内的解离常数的近似,结果表明碳酸可以是用于促进水解的活试剂而没有无机酸,特别是在产生二氧化碳的生物处理厂的情况下。

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