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Microstructure Analysis and Hydrolysis Mechanism of AlLi Alloys Activated by Metal Additives for Hydrogen Generation

机译:金属添加剂活化制氢铝锂合金的微观结构分析与水解机理。

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Microstructure analysis and hydrolytic mechanism of activated Al-Li alloys including low melting point metal additives X (X:indicated as Bi, Sn, In and Ga) are explained for their good hydrogen generation performance in this paper. It is demonstrated that the presence of these metals has a double effect. The metals are helpful to reduce the grain size of Al-Li alloys due to the formation of new intermetallic compounds such as BiLi_3, Sn_5Li_(13), AlLiIn_2, etc., preventing the connection of Al-Al and Li-Li atoms. The metals strongly improved hydrogen generation performance because the metals deposited on the surface of Al and Li metals act as cathodic centers for hydrogen generation. There were dual micro galvantic cells between Al (Li) and metal additives created in the hydrolysis process which stimulated the electrochemical corrosion of Al and Li. The LiX alloy acts as the initial hydrolysis centers due to its low standard potential and its hydrolysis byproduct LiOH further accelerates the micro galvantic cell between Al and X Therefore, hydrogen generation performance is linked to standard potential of metal additives, increased Li and X amounts, uniform distribution of Li and X in the Al matrix in the longer milling time. Our results show that the potential good hydrogen generation performance can be obtained via the design and preparation technology of Al alloys.
机译:本文阐述了含低熔点金属添加剂X(X:Bi,Sn,In和Ga)的活性Al-Li合金的微观结构分析和水解机理。已证明这些金属的存在具有双重作用。由于形成了新的金属间化合物(例如BiLi_3,Sn_5Li_(13),AlLiIn_2等),这些金属有助于减小Al-Li合金的晶粒尺寸,从而阻止了Al-Al和Li-Li原子的连接。这些金属极大地改善了氢气产生性能,因为沉积在Al和Li金属表面上的金属充当了氢气产生的阴极中心。在铝(Li)和在水解过程中产生的金属添加剂之间存在双微原电池,从而刺激了铝和锂的电化学腐蚀。 LiX合金由于其低标准电势而成为初始的水解中心,并且其水解副产物LiOH进一步加速了Al和X之间的微型电化电池。因此,氢生成性能与金属添加剂的标准电势,Li和X量的增加,在较长的研磨时间内,Li和X在Al基体中的分布均匀。我们的结果表明,通过铝合金的设计和制备技术可以获得潜在的良好的氢气产生性能。

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