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Investigation of chloride impurities in hydrogenated-dehydrogenated Kroll processed titanium powders

机译:氢化脱氢克罗尔加工钛粉中氯化物杂质的研究

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An investigation to identify the chlorides in hydrogenated-dehydrogenated Kroll processed titanium powder was carried out in this study. Jigsaw-like agglomerates containing submicro-scopic particles were observed on titanium particles, and the microcompositional analysis suggests the presence of magnesium and chlorine. Further detailed surface chemical analysis carried out by X-ray photoelectron spectroscopy and corresponding curve fitting work revealed that the magnesium and chlorine mainly exist as Mg(OH)CI and titanium chloride respectively. A mechanism is provided to explain the presence of these chlorides in the Ti powder. The chlorides are considered to arise from the decomposition of hydrated magnesium chloride during the hydrogenation-dehydrogenation process and are supported by thermal analysis of a pure hydrated magnesium chloride. This analysis suggests that the Mg(OH)CI can further decompose into hydrogen chloride gas and magnesium oxide at high temperature. The implications of the formation of these gaseous species on the sintering of Ti powders are discussed.
机译:在这项研究中,进行了鉴定氢化脱氢的Kroll加工的钛粉中的氯化物的研究。在钛颗粒上观察到了包含亚微观颗粒的类似拼图的团聚体,微组成分析表明存在镁和氯。通过X射线光电子能谱进行的进一步详细的表面化学分析和相应的曲线拟合工作表明,镁和氯分别主要以Mg(OH)Cl和氯化钛的形式存在。提供了一种机制来解释钛粉中这些氯化物的存在。氯化物被认为是由氢化-脱氢过程中水合氯化镁的分解产生的,并通过对纯水合氯化镁的热分析得到支持。该分析表明,Mg(OH)Cl可以在高温下进一步分解为氯化氢气体和氧化镁。讨论了这些气态物质的形成对钛粉烧结的影响。

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