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Cellulose and Hemicellulose Hydrolysis Models for Application to Current and Novel Pretreatment Processes

机译:纤维素和半纤维素水解模型在当前和新型预处理工艺中的应用

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Acids catalyze the hydrolysis of cellulose and hemicellulose to produce sugars that organisms can ferment to ethanol and other products. However, advanced low- and no-acid technologies are critical if we are to reduce bioethanol costs to be competitive as a pure fuel. We believe carbohydrate oligomers play a key role in explaining the performance of such hydrolysis processes and that kinetic models would help us understand their role. Various investigations have developed reaction rate expressions based on an Arrhenius temperature dependence that is first order in substrate concentration and close to first order in acid concentration. In this article, we evaluate these existing hydrolysis models with the goal of providing a foundation for a unified model that can predict performance of both current and novel pretreatment process configurations.
机译:酸催化纤维素和半纤维素的水解,产生生物可发酵成乙醇和其他产品的糖。但是,先进的低酸和无酸技术对于我们降低生物乙醇成本以使其具有纯燃料竞争力而言至关重要。我们认为,碳水化合物低聚物在解释此类水解过程的性能方面起着关键作用,动力学模型将有助于我们理解它们的作用。各种研究已经基于Arrhenius温度依赖性开发了反应速率表达式,该温度对底物浓度是一级,而对酸浓度则接近一级。在本文中,我们评估这些现有的水解模型,旨在为可预测当前和新型预处理工艺配置性能的统一模型提供基础。

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