> Quantification of trace element contents in bauxite by solution ICPMS and other '/> Determination of Trace Elements in Bauxite Using Laser Ablation‐Inductively Coupled Plasma‐Mass Spectrometry on Lithium Borate Glass Beads
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Determination of Trace Elements in Bauxite Using Laser Ablation‐Inductively Coupled Plasma‐Mass Spectrometry on Lithium Borate Glass Beads

机译:使用激光烧蚀电感耦合等离子体质谱法测定铝土矿中铝土矿中的微量元素 - 硼酸锂玻璃珠粒

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> Quantification of trace element contents in bauxite by solution ICPMS and other analytical methods that rely on conventional dissolution techniques can be challenging, because the refractory nature of common host minerals complicates complete digestion. Fusion with lithium borate, frequently used as a sample preparation method for XRF analysis of solid materials, avoids these problems. This manuscript documents that subsequent analysis of the low‐dilution glass beads by laser ablation ICPMS is a fast, accurate and precise method for determining trace element mass fractions in samples of bauxite and similar natural materials. The method was validated by determining thirty trace elements, including thirteen rare earth elements, in international reference materials for bauxite ( ANRT BX ‐N, NIST SRM 69b, NIST SRM 696, NIST SRM 698) and iron formations ( CCRMP FeR‐2). Trace elements were typically measured to within 20% of reference values with an ‘external’ precision of ?20% RSD . Measurement results from various deposits in Suriname illustrate the procedure's effectiveness for studies concerning chemical properties and origin of bauxite.
机译: >通过解决方案的铝土矿中的跟踪元素内容的量化> ICP - MS 和依赖常规溶出技术的其他分析方法可能具有挑战性,因为普通宿主矿物的耐火性质使完全消化复杂化。熔融硼酸锂,经常用作固体材料的 XRF 分析的样品制备方法,避免了这些问题。该稿件文献:随后通过激光烧蚀剂 ICP - Ms 的低稀释玻璃珠的分析是一种快速,准确,精确的方法,用于确定样品中的痕量元素质量分数铝土矿和类似的天然材料。通过在铝土矿的国际参考材料中确定30个微量元素(包括十三个稀土元素)进行验证的方法( ANRT BX -N, NIST SRM 69B, NIST) SRM 696, NIST SRM 698)和铁形成( CCRMP FER-2)。通常以具有“外部”精度的参考值的20%以内测量痕量元素,其具有“20% RSD ”。苏里南各种沉积物的测量结果说明了对化学性质和铝土矿起源的研究的有效性。

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