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Lowering the detection limit for arsenic: Implications for a future practical quantitation limit

机译:降低砷的检出限:对未来实际定量限的意义

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The practical quantitation limit (PQL) for arsenic (As) is currently orders of magnitude higher than its nonenforceable, health-based standard in California. Analytical limitations caused by chloride (Cl) interference can be overcome using high-resolution, inductively coupled plasma mass spectrometry (ICP/MS), which has a method detection limit for As of 29 ng/L in the presence of 35.5 mg/L Cl. Increasing Cl concentration (0-355 mg/L) resulted in a nonlinear increase in the As signal. Therefore, standard addition was used to test four water samples with unknown As and Cl concentrations. Because standard addition is not suitable for routine analyses, further investigation of matrix effects and interferences is needed to optimize the application of high-resolution ICP/MS for water quality testing. Nonetheless, broader adoption of this and other methods for trace As analysis could result in lowering of the PQL for As in the future, with consequent downward pressure on reporting levels.
机译:砷的实际定量限(PQL)当前比其在加利福尼亚基于健康的非强制性标准高出几个数量级。使用高分辨率电感耦合等离子体质谱法(ICP / MS)可以克服由氯离子(Cl)干扰引起的分析限制,该方法在存在35.5 mg / L Cl的情况下对As的检测限为29 ng / L 。 Cl浓度增加(0-355 mg / L)导致As信号非线性增加。因此,使用标准添加物测试了四个未知As和Cl浓度的水样品。由于标准添加方法不适用于常规分析,因此需要进一步研究基质效应和干扰,以优化高分辨率ICP / MS在水质测试中的应用。尽管如此,在痕量砷分析中广泛采用此方法和其他方法可能会导致将来砷的PQL降低,从而导致报告水平下降的压力。

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