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An Automated Hydride Generation Interface to ICPMS for Measuring Total Arsenic in Environmental Samples

机译:ICPMS的自动氢化物生成界面,用于测量环境样品中的总砷

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An automated hydride generation (AHG) interface to inductive coupled plasma mass spectroscopy (ICPMS) was developed for measuring arsenic in environmental samples. This technique provides statistically indistinguishable response slopes (within about 3percent) for hydride generation-ICPMS (HG-ICPMS) analysis of all major As species, inorganic As(III), dimethylarsinic acid (DMA), momomethylarsonic acid (MMA), and inorganic As(V); this has not previously been achieved. Previously, sample pretreatment to convert all forms of As into As(V) has been a prerequisite for measuring total arsenic in complex matrices. Under our operating conditions, arsenobetaine (AsB), until now regarded to be inert, also generates a hydride (albeit the response is only approx7percent of others). The limit of detection (LOD) based on three times the standard deviation of the blank with this technique for AsB, DMA, As(III), MMA, and As(V) is 90, 66, 63, 63, and 63 pg As, respectively. This AHG-ICPMS technique was compared with a flow injection-UV photolysis-HG-ICPMS (FIUV-ICPMS) and liquid chromatography-UV-HG-ICPMS analysis of arsenic content in National Institute of Standards & Technology (NIST) standard rice flour (standard reference material: SRM 1568a) and rice samples collected from West Bengal, India. Both oxidative acid digestion and methanol:water (1:1) extraction were used. The analytical results for total As in the SRM 1568a digest were 99.2 +- 0.6 and 100.2 +- 0.8percent of the certified value (290 +- 3 (mu)g As/kg) by the AHG-ICPMS and the FI-UVHG-ICPMS techniques, respectively. For rice extracts and the digests, the two techniques provided results that were correlated with linear r~(2) values of 0.9988 and 0.9987 with intercepts statistically indistinguishable from zero. Chromatographic analysis indicated that As in these rice samples were 75-90percent inorganic.
机译:开发了自动氢化物发生(AHG)接口与电感耦合等离子体质谱仪(ICPMS),用于测量环境样品中的砷。这项技术为氢化物生成-ICPMS(HG-ICPMS)分析所有主要的As种类,无机As(III),二甲基ar酸(DMA),甲基甲基s酸(MMA)和无机As (V);这以前没有实现。以前,样品预处理将所有形式的As转化为As(V)一直是测量复杂基质中总砷的先决条件。在我们的工作条件下,迄今仍被认为是惰性的砷甜菜碱(AsB)也会生成氢化物(尽管反应仅占其他反应的7%)。 AsB,DMA,As(III),MMA和As(V)的该技术基于空白标准偏差三倍的检测限(LOD)为90、66、63、63和63 pg As , 分别。在美国国家标准技术研究院(NIST)标准大米粉中,将该AHG-ICPMS技术与流动注射-UV光解-HG-ICPMS(FIUV-ICPMS)和液相色谱-UV-HG-ICPMS分析砷含量(标准参考材料:SRM 1568a)和从印度西孟加拉邦采集的大米样品。氧化酸消化和甲醇:水(1:1)萃取均被使用。 SRM 1568a消化液中总砷的分析结果为AHG-ICPMS和FI-UVHG-A的认证值(290±3μgAs / kg)的99.2±0.6和100.2±0.8%。 ICPMS技术。对于大米提取物和消化液,这两种技术提供的结果与线性r〜(2)值0.9988和0.9987相关,截距在统计上与零没有区别。色谱分析表明,这些大米样品中的砷是75-90%的无机盐。

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