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Direct and Sensitive Determination of Antimony in Water by Hydrogen-Doped Solution Anode Glow Discharge-Optical Emission Spectrometry Without Hydride Generation

化学 氢化物 辉光放电 阳极 兴奋剂 分析化学(期刊) 质谱法 光电子学 无机化学 电极 物理化学 环境化学 等离子体 色谱法 有机化学 物理 量子力学
作者
Chun Yang,Cheng Guo,Shuang-Quan Cheng,Xing Liu,Ying Liu,Hongtao Zheng,Shenghong Hu,Zhenli Zhu
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:93 (49): 16393-16400 被引量:21
标识
DOI:10.1021/acs.analchem.1c02940
摘要

In the present work, a novel, simple, and sensitive method for the direct determination of trace Sb in water samples was developed based on hydrogen-doped solution anode glow discharge-optical emission spectrometry (SAGD-OES). It was found that the vapor generation and excitation of Sb occurred simultaneously in the SAGD, contributing to the significant improvement in the sensitivity of Sb as compared with normal pure He-operated SAGD or solution cathode glow discharge. Besides, the proposed hydrogen-doped SAGD-OES could be operated even at pH = 14, which could reduce the interference of coexisting ions as many metal ions could be precipitated and removed. Our results demonstrated that the proposed method offered good tolerance to the interferences of Li, Na, Ca, Mg, Fe, Ni, Mn, and Zn ions even at a concentration of 50 mg L–1. Under optimized conditions, the limit of detection of Sb was 0.85 μg L–1, which was comparable to that of microplasma sources coupled with conventional hydride generation. The linearity of the Sb calibration curve reached R2 > 0.999 in the 5–5000 μg L–1 range. Finally, the accuracy of the proposed method was validated by the determination of certified reference materials [GSB 07-1376-2001 (1) and (2))] and real water samples. The proposed low-power (6 W), green, sensitive, rapid, and robust method provides a promising approach for on-site trace Sb analysis and may also be extended to other elements.
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