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Preferential alkaline leaching of amphoteric elements from super-stoichiometric hydrogen storage alloy

机译:来自超级化学计量储氢合金的两性元素的优先碱性浸出

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Long-lasting charge/discharge cycling (-0.5C/+0.5C) of a super-stoichiometric hydrogen storage alloy with LaNi4.5Co0.5Al0.32Sn0.34Zn0.10 composition has been carried out in a 6 M KOH solution to evaluate the role of selective dissolution of amphoteric elements (Al, Sn and Zn) in electrochemical hydrogenation properties and corrosion behaviour of the hydride electrode. Among alloy constituents, leaching efficiency is the most evident for Sn and Zn additions. Rates of Ni and Co leaching are 2 orders of magnitude lower whereas La is not leached at all. Selective leaching of Al, Sn and Zn is prone to improved material activation and has a minor effect on material passivation and capacity fade. Selective leaching of amphoteric elements as a result of alkaline cycling follows a first-order chemical kinetics law. (C) 2020 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:使用Lani4.5Co0.5Al0.32Sn0.34Zn0.10组合物在6M KOH溶液中进行了长期化学计量储氢循环(-0.5℃/ + 0.5℃)的超级化学计量储氢合金,以评估两性元素(Al,Sn和Zn)在电化学氢化性质中的选择性溶解和氢化物电极的腐蚀行为的作用。在合金成分中,浸出效率是Sn和Zn添加最明显的。 Ni和Co浸出的速率下降了2个级,而La根本没有浸出。 Al,Sn和Zn的选择性浸出易于改善材料激活,并对材料钝化和容量淡化产生轻微影响。由于碱性循环而选择的两性元素的选择性浸出遵循一阶化学动力学法。 (c)2020年由elsevier有限公司发布代表氢能出版物LLC。

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