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Optimisation of sepiolite clay with phosphoric acid treatment as support material for CoB catalyst and application to produce hydrogen from the NaBH_4 hydrolysis

机译:磷酸作为CoB催化剂载体材料的海泡石粘土的优化及其在NaBH_4水解中制氢的应用

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Herein, the CoB catalyst supported on the sepiolite clay treated with phosphoric acid was utilized to produce hydrogen from the NaBH4 hydrolysis. In order to analyse the performance of the phosphoric acid treated sepiolite clay supported-CoB catalyst, the NaBH4 concentration effect, phosphoric acid concentration effect, phosphoric acid impregnation time effect, CoB catalyst percentage effect, and temperature effect were studied. In addition, XRD, XPS, SEM, TEM, BET, and FTIR analysis were performed for characterization of Co-B catalyst supported on the acid-treated sepiolite. The completion time of this hydrolysis reaction with Co-B (20%) catalyst supported on the sepiolite treated by 5 M phosphoric acid was approximately 80 min, whereas the completion time of this hydrolysis reaction with acid-free sepiolite-supported Co-B (20%) catalyst was approximately 260 min. There is a five-fold increase in the maximum production rate. The maximum hydrogen production rates of this hydrolysis reaction at 30 and 60 degrees C were found as 1486 and 5025 ml min(-1)g(catalyst)(-1), respectively. Activation energy was found as 21.4 kJ/mol. This result indicates that the acid treatment on sepiolite is quite successful. The re-usability of NaBH4 hydrolysis reaction by CoB catalyst supported on sepiolite treated phosphoric acid for successive five cycles of NaBH4 at 30 degrees C was investigated. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,负载在用磷酸处理的海泡石粘土上的CoB催化剂被用于由NaBH4水解产生氢。为了分析磷酸处理的海泡石粘土负载型CoB催化剂的性能,研究了NaBH4浓度效应,磷酸浓度效应,磷酸浸渍时间效应,CoB催化剂百分比效应和温度效应。另外,进行了XRD,XPS,SEM,TEM,BET和FTIR分析以表征负载在酸处理的海泡石上的Co-B催化剂。用5 M磷酸处理的负载在海泡石上的Co-B(20%)催化剂进行的水解反应的完成时间约为80分钟,而用无酸海泡石负载的Co-B进行的水解反应的完成时间( 20%)的催化剂约为260分钟。最大生产率提高了五倍。发现该水解反应在30和60摄氏度下的最大产氢速率分别为1486和5025 ml min(-1)g(催化剂)(-1)。发现活化能为21.4kJ / mol。该结果表明,对海泡石的酸处理是相当成功的。研究了负载在海泡石处理过的磷酸上的CoB催化剂对NaBH4水解反应的可重复使用性,用于在30摄氏度下连续5个NaBH4循环。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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