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Role of graphite in isotopic analysis of boron in metal boron alloys by Positive-Thermal Ionization Mass Spectrometry (P-TIMS)

机译:正热电离质谱法(P-TIMS)在石墨在金属硼合金中硼的同位素分析中的作用

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摘要

Isotopic composition of boron in alloy samples was determined by Positive-Thermal Ionization Mass Spectrometry (P-TIMS) using Rb_2BO_2~+. The titanium based boron alloy sample was treated with nitric acid to bring it to slurry form which was fused with rubidium carbonate on the high purity Rhenium filament for the formation of borate. Control of pH was found necessary to be necessary for both the formation of alkali borate compound as well as for obtaining good yield Rb_2BO_2~+. Alkaline conditions were required for the formation of rubidium borate during fusion though neutral pH favored formation of Rb_2BO_2~+ions in the ion source. The sample loading procedure was suitably modified to obtain good ion intensities for Rb_2BO_2~+for high precision analysis. Steady ion beam was obtained when graphite was loaded on the filament after fusion of alloy carbonate mixture contrary to the reverse procedure that is normally followed. Sequence of graphite addition on the filament plays an important role in the formation of Rb_2BO_2~+ions. The paper gives the details of the investigations carried out.
机译:使用Rb_2BO_2〜+通过正电离质谱法(P-TIMS)测定合金样品中硼的同位素组成。钛基硼合金样品用硝酸处理,使其成为浆状,然后在高纯度with丝上与碳酸rub熔合,形成硼酸盐。发现控制pH对于形成碱金属硼酸盐化合物以及获得良好的产率Rb_2BO_2〜+都是必需的。尽管中性pH有利于离子源中Rb_2BO_2〜+离子的形成,但在熔融过程中形成硼酸required需要碱性条件。适当修改了样品加载程序,以获得用于Rb_2BO_2〜+的良好离子强度,可进行高精度分析。与通常遵循的相反步骤相反,在碳酸盐合金混合物熔融后将石墨加载到细丝上时,获得了稳定的离子束。细丝上的石墨添加顺序在Rb_2BO_2〜+离子形成中起重要作用。该文件提供了进行调查的细节。

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