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Production of renewable hydrogen through aqueous-phase reforming of glycerol over Ni/Al_2O_3-MgO nano-catalyst

机译:Ni / Al_2O_3-MgO纳米催化剂上甘油的水相重整制氢

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In this study, a series of Ni nano-catalysts supported on Al2O3 and MgO were prepared through the co-precipitation technique. Effects of the Al/Mg ratio on physicochemical characteristics of Ni/Al2O3-MgO catalysts were examined. Moreover, catalytic performance was investigated in order to determine the optimum catalyst for H-2 production in aqueous phase reforming (APR) of glycerol. It was revealed that, the APR activity of synthesized catalysts strongly depended on the aforementioned ratio. In addition, it was observed that, the catalytic activity of Ni/MgO and Ni/Al2O3 samples were both lower than that of the corresponding mixed oxide supports. Furthermore, it was shown that, amongst the compositionally different prepared mixed oxide materials, the respective catalytic activities increased through enhancing of the Al/Mg ratio. It was demonstrated that the Ni/Al2Mg1 catalyst possessed highest catalytic activity of 92% glycerol conversion and selectivity towards hydrogen production of 76%. Ultimately, it was concluded that, the APR activity lowered in the following order: Ni/Al2Mg1 Ni/Al2Mg1 Ni/Al/Mg-2 Ni/Al Ni/Mg for the understudied synthesized materials. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,通过共沉淀技术制备了一系列负载在Al2O3和MgO上的Ni纳米催化剂。考察了Al / Mg比对Ni / Al2O3-MgO催化剂理化特性的影响。此外,为了确定在甘油的水相重整(APR)中生产H-2的最佳催化剂,对催化性能进行了研究。揭示了合成催化剂的APR活性强烈取决于上述比例。另外,观察到Ni / MgO和Ni / Al2O3样品的催化活性均低于相应的混合氧化物载体的催化活性。此外,表明在组成不同的制备的混合氧化物材料中,各自的催化活性通过提高Al / Mg比而增加。结果表明,Ni / Al2Mg1催化剂具有最高的催化活性(甘油转化率为92%)和对产氢的选择性为76%。最终得出结论,对于被研究的合成材料,APR活性按以下顺序降低:Ni / Al2Mg1> Ni / Al2Mg1> Ni / Al / Mg-2> Ni / Al> Ni / Mg。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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