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首页> 外文期刊>International journal of hydrogen energy >Fe doped-CoB catalysts with phosphoric acid-activated montmorillonite as support for efficient hydrogen production via NaBH_4 hydrolysis
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Fe doped-CoB catalysts with phosphoric acid-activated montmorillonite as support for efficient hydrogen production via NaBH_4 hydrolysis

机译:Fe掺杂-COB催化剂,磷酸活化的蒙脱石作为高效氢生产的支持通过NaBH_4水解

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摘要

In this study, montmorillonite (MMT) clay was modified with different acids to be used as support material. The modified MMT clay was used to obtain hydrogen in the hydrolysis reactions of NaBH4 (NaBH4-HR) as a support material for the Co-B and Co-Fe-B catalyst. During the activation of MMT clay, the effects of different acids, phosphoric acid (H3PO4) concentration, and impregnation time with H3PO4 were investigated. During the hydrogen generation from the NaBH4-HR, effects of Co loading, Fe loading, NaBH4 concentration, temperature and, catalyst durability were investigated. The maximum HGRs for MMT-H3PO4-CoB and MMT-H3PO4-CoeFeeB treated with 5 M H3PO4 for 7 days were 1869 and 4536 mL/min/gcatalyst, respectively. The activation energies for MMT-H3PO4-CoB and MMT-H3PO4-Co-Fe-B catalyst samples were 49.5 and 38.90 kJ/mol. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在该研究中,用不同的酸改性蒙脱石(MMT)粘土用作载体材料。用于在NaBH 4(NaBH4-HR)的水解反应中作为CO-B和CO-Fe-B催化剂的载体材料获得改性的MMT粘土。在激活MMT粘土期间,研究了不同酸,磷酸(H3PO4)浓度和与H3PO4的浸渍时间的影响。研究了来自NaBH4-HR的氢气,研究了CO负载,Fe加载,NaBH4浓度,温度和催化剂耐久性的影响。用5M H3PO4处理7天的MMT-H3PO4-COB和MMT-H3PO4-COEFEEB的最大HGR分别为1869和4536ml / min / gcatalyst。 MMT-H3PO4-COB和MMT-H3PO4-CO-FE-F-B催化剂样品的活化能量为49.5和38.90kJ / mol。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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