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Optimization of Lignin-Based Biocatalyst Production from Pine Sawdust and Wheat Straw

机译:松木屑和麦草中木质素为基础的生物催化剂的生产工艺优化

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摘要

Pine sawdust and wheat straw are abundant lignocellulosic wastes that have been recently converted into bioethanol under a biochemical platform scheme whose main waste is lignin. Lignin can be transformed into a wide variety of high added-value products, including its functionalization as a catalyst. A key step in the synthesis of a lignin-based catalyst is the sulfonation reaction, whose operating conditions, namely, H2SO4 to lignin ratio (mL/g), temperature and time, have been arbitrarily chosen. In this contribution, an optimization methodology (i.e., Box-Behnken) is applied in order to found the operating conditions during the sulfonation reaction that maximizes the total acid sites density of lignin-based catalysts from pine sawdust and wheat straw. The optimization results show that the time in sulfonation reactions can be significantly reduced, compared to those previously reported, without affecting the performance of both catalysts in esterification reactions. These results could be further considered for energy and costs reduction purposes during the conceptual design engineering of the sulfonation reaction.
机译:松木屑和麦草是丰富的木质纤维素废物,最近已通过生物化学平台计划将其转化为生物乙醇,其主要废物为木质素。木质素可以转化为多种高附加值产品,包括其作为催化剂的功能化。木质素基催化剂合成中的关键步骤是磺化反应,可以任意选择其操作条件,即H2SO4与木质素之比(mL / g),温度和时间。在这一贡献中,应用了一种优化方法(即Box-Behnken),以便发现在磺化反应期间使来自松木屑和麦草的木质素基催化剂的总酸位点密度最大化的操作条件。优化结果表明,与以前报道的相比,磺化反应的时间可以大大减少,而不会影响两种催化剂在酯化反应中的性能。在磺化反应的概念设计工程过程中,出于节能和降低成本的目的,可以进一步考虑这些结果。

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