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Determination of Boron in Steel by Isotope-Dilution Inductively Coupled Plasma Mass Spectrometry after Matrix Separation

机译:基质分离-同位素稀释电感耦合等离子体质谱法测定钢中的硼

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The concentration of B in steels is important due to its influence on mechanical properties of steel such as hardenability, hot workability, and creep resistance. An analytical method has been developed to determine B in steel samples by high-resolution inductively coupled plasma mass spectrometry (HR-ICP-MS). National Institute of Standard and Technology Standard Reference Material (NIST SRM) 348a was analyzed to validate the analytical method. The steel sample was digested in a centrifuge bottle with addition of aqua regia and 10B spike isotope. Sample pH was then adjusted to higher than 10 to precipitate most matrix elements such as Fe, Cr, and Ni. After centrifugation, the supernatant solution was passed through a cation exchange column to enhance the matrix separation efficiency. B recovery efficiency was about 37%, while matrix removal efficiency was higher than 99.9% for major matrix elements. The isotope dilution method was used for quantification and the determined B concentration was in good agreement with the certified value.
机译:钢中B的浓度很重要,因为它会影响钢的机械性能,例如淬透性,热加工性和抗蠕变性。已经开发出一种分析方法,通过高分辨率电感耦合等离子体质谱法(HR-ICP-MS)测定钢样品中的B。对美国国家标准技术研究院标准参考材料(NIST SRM)348a进行了分析,以验证该分析方法的有效性。在离心瓶中加入王水和10B尖峰同位素消化钢样品。然后将样品的pH值调至高于10,以沉淀出大多数基质元素,如Fe,Cr和Ni。离心后,将上清液通过阳离子交换柱以提高基质分离效率。 B的回收率约为37%,而主要基质元素的基质去除效率高于99.9%。同位素稀释法用于定量,测定的B浓度与认证值高度吻合。

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