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Effect of loading bimetallic mixture of Ni and Pd on hydrogen storage capacity of MCM-41

机译:Ni和Pd双金属混合物的负载量对MCM-41储氢容量的影响

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MCM-41 was produced by microwave irradiation, which allows high yield, improved product purity, increased reaction rate and crystallization. As transition metals enhance the hydrogen uptake, Pd and Ni were loaded on MCM-41 to increase the hydrogen storage capacity of the structure. The surface areas of the samples were measured by N-2 adsorption and it was observed that they had large surface area around 938-1369 m(2)/g. The successful incorporation of metals into the structure was confirmed by characterization using X-ray diffraction and X-ray photoelectron spectroscopy. The hydrogen adsorption capacities of the samples were measured by the Intelligent Gravimetric Analyzer at room temperature and up to 10 bar pressure. The hydrogen storage capacity of MCM-41 was improved by increasing content of bimetallic mixture of Pd and Ni. The maximum hydrogen uptake was obtained as 0.98 wt% with 10:100 Pd Ni:MCM-41. Copyright (c) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:MCM-41通过微波辐射生产,可实现高收率,提高的产品纯度,更高的反应速率和结晶度。随着过渡金属增加氢的吸收,Pd和Ni负载在MCM-41上以增加结构的氢存储能力。样品的表面积通过N-2吸附测量,观察到它们在938-1369 m(2)/ g附近具有较大的表面积。通过使用X射线衍射和X射线光电子能谱进行表征,证实了金属成功结合到结构中。通过智能重量分析仪在室温和最高10 bar的压力下测量样品的氢吸附容量。通过增加Pd和Ni的双金属混合物的含量,提高了MCM-41的储氢能力。用10:100 Pd Ni:MCM-41获得的最大氢气吸收量为0.98 wt%。 Hydrogen Energy Publications,LLC版权所有(c)2015。由Elsevier Ltd.出版。保留所有权利。

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