评价纤维素水解固体酸催化剂的新方法

Maksim V. Tyufekchiev, Jordan Finzel, Ziyang Zhang, Wenwen Yao, S. Sontgerath, Christopher A. Skangos, Pu Duan, K. Schmidt-Rohr, M. Timko
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引用次数: 3

摘要

提出了一种系统的、与结构无关的固体酸催化纤维素水解的非均相活性鉴定方法。该方法的基础是通过将固体酸暴露在反应条件下制备上清液,随后将上清液用作纤维素水解催化剂,以确定原位生成的均质酸种类的影响。该方法应用于具有代表性的固体酸催化剂,包括聚合物基、碳质、无机和双功能材料。在所有情况下,由这些催化剂产生的上清液表现出纤维素水解的催化活性。直接比较固体酸催化剂及其上清液的活性不能提供明确的多相催化检测。反应途径动力学模型用于评估上清液测试的潜在假阴性解释,并区分对纤维素水解的非均相和非均相影响。最后,在纤维素存在和不存在的情况下获得的上清液的差异进行了评估,以了解假阳性解释的可能性,使用所用催化剂的结构证据来获得对反应物-催化剂相互作用的新理解。虽然已经提出了许多固体酸催化剂用于纤维素水解,但据我们所知,这是第一次尝试区分非均相和均相活性的影响。由此产生的上清液法应用于所有未来尝试设计和开发用于纤维素水解的固体酸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Method for Solid Acid Catalyst Evaluation for Cellulose Hydrolysis
A systematic and structure-agnostic method for identifying heterogeneous activity of solid acids for catalyzing cellulose hydrolysis is presented. The basis of the method is preparation of a supernatant liquid by exposing the solid acid to reaction conditions and subsequent use of the supernatant liquid as a cellulose hydrolysis catalyst to determine the effects of in situ generated homogeneous acid species. The method was applied to representative solid acid catalysts, including polymer-based, carbonaceous, inorganic, and bifunctional materials. In all cases, supernatant liquids produced from these catalysts exhibited catalytic activity for cellulose hydrolysis. Direct comparison of the activity of the solid acid catalysts and their supernatants could not provide unambiguous detection of heterogeneous catalysis. A reaction pathway kinetic model was used to evaluate potential false-negative interpretation of the supernatant liquid test and to differentiate heterogeneous from homogeneous effects on cellulose hydrolysis. Lastly, differences in the supernatant liquids obtained in the presence and absence of cellulose were evaluated to understand possibility of false-positive interpretation, using structural evidence from the used catalysts to gain a fresh understanding of reactant–catalyst interactions. While many solid acid catalysts have been proposed for cellulose hydrolysis, to our knowledge, this is the first effort to attempt to differentiate the effects of heterogeneous and homogeneous activities. The resulting supernatant liquid method should be used in all future attempts to design and develop solid acids for cellulose hydrolysis.
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