Quantification of Cl, Br and I in Geological Materials by NH4F Digestion: Comparison with Rapid Acid Digestion

IF 2.7 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Tao He, Mufei Li, Zhaochu Hu, Wen Zhang, Haihong Chen, Zaicong Wang, Yongsheng Liu
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Abstract

The lack of analytical techniques for halogens in geological materials is mainly due to the loss of analytes during sample preparation. This study describes a rapid bulk rock digestion method (NH4F digestion) for determination of the abundances of Cl, Br and I in geological materials by SF-ICP-MS. During high temperature (200–240 °C) digestion, NH3 released from the decomposition of molten NH4F can effectively prevent the loss of halogens released from geological samples. Chlorine, Br and I were not lost during NH4F digestion at 220 °C for 0.25–6 h. The limits of quantitation for NH4F digestion were 2.8, 0.018 and 0.003 μg g-1 Cl, Br and I, respectively. Most results for halogens in geological reference materials by NH4F digestion were in agreement with their certified values, confirming that the high-performance rapid bulk rock NH4F digestion has sufficient digestion capability to extract Cl, Br and I from rocks, sediments and soils. In comparison, results obtained following acid digestion showed that HNO3 + HF digestion could effectively extract Br and I from soil and sediment samples, and that HNO3 acid digestion is only suitable to use for the determination of Br and I in soil samples.

Abstract Image

NH4F消解法与快速酸消解法测定地质物质中的Cl、Br和I
地质材料中卤素缺乏分析技术,主要是由于样品制备过程中分析物的损失。本研究描述了一种用SF-ICP-MS测定地质物质中Cl、Br和I丰度的快速大块岩石消解法(NH4F消解)。在高温(200–240°C)消化过程中,熔融NH4F分解释放的NH3可以有效防止地质样品释放的卤素损失。在220°C的NH4F消化过程中,氯、Br和I在0.25–6小时内没有损失。NH4F消解的定量限分别为2.8、0.018和0.003μg g-1 Cl、Br、I。通过NH4F消解对地质参考物质中卤素的大多数结果与其认证值一致,证实了高性能快速大块岩石NH4F消化具有足够的消解能力,可以从岩石、沉积物和土壤中提取Cl、Br和I。相比之下,酸消化后获得的结果表明HNO3 + HF消解能有效地从土壤和沉积物样品中提取溴和碘,HNO3酸消解仅适用于土壤样品中溴和碘的测定。
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来源期刊
Geostandards and Geoanalytical Research
Geostandards and Geoanalytical Research 地学-地球科学综合
CiteScore
7.10
自引率
18.40%
发文量
54
审稿时长
>12 weeks
期刊介绍: Geostandards & Geoanalytical Research is an international journal dedicated to advancing the science of reference materials, analytical techniques and data quality relevant to the chemical analysis of geological and environmental samples. Papers are accepted for publication following peer review.
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