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Facile synthesis of highly efficient and recyclable magnetic solid acid from biomass waste

机译:从生物质废料轻松合成高效可回收的磁性固体酸

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摘要

In this work, sawdust, a biomass waste, is converted into a magnetic porous carbonaceous (MPC) solid acid catalyst by an integrated fast pyrolysis–sulfonation process. The resultant magnetic solid acid has a porous structure with high surface area of 296.4 m2 g−1, which can be attributed to the catalytic effect of Fe. The catalytic activity and recyclability of the solid acid catalyst are evaluated during three typical acid-catalyzed reactions: esterification, dehydration, and hydrolysis. The favorable catalytic performance in all three reactions is attributed to the acid's high strength with 2.57 mmol g−1 of total acid sites. Moreover, the solid acid can be reused five times without a noticeable decrease in catalytic activity, indicating the stability of the porous carbon (PC)–sulfonic acid group structure. The findings in the present work offer effective alternatives for environmentally friendly utilization of abundant biomass waste.
机译:在这项工作中,锯末(一种生物质废物)通过集成的快速热解-磺化过程转化为磁性多孔碳质(MPC)固体酸催化剂。所得的磁性固体酸具有高表面积为296.4μm 2 g -1 的多孔结构,这归因于Fe的催化作用。在三种典型的酸催化反应过程中,对固体酸催化剂的催化活性和可回收性进行了评估:酯化,脱水和水解。在所有三个反应中,良好的催化性能归因于该酸的高强度,其总酸位为2.57 mmol g -1 。此外,固体酸可以重复使用五次而不会明显降低催化活性,这表明多孔碳(PC)-磺酸基团结构的稳定性。本工作中的发现为环保利用丰富的生物质废物提供了有效的替代方法。

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