首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Comparison of hydrochar- and pyrochar-based solid acid catalysts from cornstalk: Physiochemical properties, catalytic activity and deactivation behavior
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Comparison of hydrochar- and pyrochar-based solid acid catalysts from cornstalk: Physiochemical properties, catalytic activity and deactivation behavior

机译:基于玉米烷烃和聚溴固体酸催化剂的比较:生理化学性质,催化活性和失活行为

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摘要

Biochar made from biowaste provides renewable carbon precursors for catalysts preparation. Here, solid acid catalysts were prepared through functionalizing biochars produced via hydrothermal and pyrolytic carbonization of cornstalk with -SO3H groups. Hydrochar-based catalysts (HAC) and pyrochar-based catalysts (PAC) exhibited significantly different physiochemical properties, catalytic activities and deactivation behaviors. The test of catalytic effects on cellulose degradation uncovered that HAC had a higher density of -SO3H but lower surface special area than PAC. Specifically, PAC prepared at 400 degrees C resulted in the maximum increase of cellulose conversion by 16.00-50.50%. In comparison, the highest yields of glucose (11.14%) and 5-hydroxymethylfurfural (29.54%) were achieved catalyzed via HAC prepared at 240 degrees C. The results of catalyst deactivation behavior further revealed that used catalysts had an obvious reduction of -SO3H density. Interestingly, used HAC-240 catalysts showed similar patterns of weight loss to fresh ones due to its high stability.
机译:BioWaste制造的生物炭为催化剂制备提供可再生碳前体。在此,通过通过通过玉米烷串的热分解碳化产生的官能化生物脉冲和-SO 3 H基团的碳酸碳化来制备固体酸催化剂。基于羟基丙烯基催化剂(HAC)和基于热炭的催化剂(PAC)表现出显着不同的生理化学性质,催化活性和失活行为。催化效应对纤维素降解的试验发现,HAC具有比PAC更低的表面特殊区域的较高密度。具体而言,在400℃下制备的PAC导致纤维素转化的最大增加16.00-50.50%。相比之下,通过在240℃下制备的Hac催化葡萄糖(11.14%)和5-羟甲基糠灰(29.54%)的最高收度率催化。催化剂失活行为的结果进一步表明,使用的催化剂的催化剂的催化剂明显减少-SO3H密度。有趣的是,由于其高稳定性,使用的HAC-240催化剂显示出与新鲜的重量损失相似的模式。

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