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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Nano-bismuth sulfide based dispersive micro-solid phase extraction combined with energy dispersive X-ray fluorescence spectrometry for determination of mercury ions in waters
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Nano-bismuth sulfide based dispersive micro-solid phase extraction combined with energy dispersive X-ray fluorescence spectrometry for determination of mercury ions in waters

机译:基于硫化物的分散微固相萃取结合能量分散X射线荧光光谱法测定水中汞离子的硫化物分散微固 - 固相萃取

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摘要

A selective method for the determination of mercury ions in different types of water samples by energy dispersive X-ray fluorescence spectrometry (EDXRF) was developed. Quantification of Hg(Ⅱ) by EDXRF was preceded by ultra-sound assisted dispersive micro-solid phase extraction (USA-DMSPE) on nano-bismuth sulfide (nano-Bi_2S_3) as a solid sorbent. At pH 1 nano-Bi_2S_3 selectively adsorbs Hg(u) ions from aqueous samples with an adsorption capacity of 499.1 mg g~(-1). The experimental data fitted well with the Langmuir isotherm model, which confirms the chemical character of the adsorption process. Under optimized preconcentration conditions, i.e. a sample pH of 1, adsorbent mass of 1 mg, sample volume of 50 mL and sonication time of 15 min, the linear response between fluorescence radiation intensity and the metal concentration was obtained within 1-200 ng mL~(-1) range with a correlation coefficient of 0.9988. The method allows the detection of mercury ions at a concentration of only 0.06 ng mL~(-1). The determination of Hg(Ⅱ) ions after the nano-Bi_2S_3 based USA-DMSPE-EDXRF procedure is possible even in the presence of a high concentration of anions and cations typically coexisting in surface waters. The described method was applied to the determination of Hg(Ⅱ) ions in mineral, spring, river, and artificial sea waters. The correctness of the procedure was confirmed by analysis of the certified reference material (Seawater QC3163).
机译:通过能量分散X射线荧光光谱法(EDXRF)开发了一种选择性方法,用于测定不同类型水样中的水样中的汞离子。 EDXRF的定量HG(Ⅱ)在纳米铋硫化物(Nano-Bi_2S_3)上以超声辅助分散微固 - 相萃取(USA-DMSPE)作为固体吸附剂。在pH1 1纳米Bi_2S_3,选择性地吸附来自水性样品的Hg(U)离子,吸附容量为499.1mg g〜(-1)。实验数据与Langmuir等温模型合理,证实了吸附过程的化学特性。在优化的前浓缩条件下,即1的样品pH,吸附剂质量为1mg,样品体积为50ml和超声处理时间为15分钟,在1-200ng ml内获得荧光辐射强度与金属浓度之间的线性响应。 (-1)范围,相关系数为0.9988。该方法允许以仅0.06ng mL〜(-1)的浓度检测汞离子。即使在高浓度的阴离子和阳离子存在下,纳米-2S_3基于US-DMSPE-EDXRF程序的HG(Ⅱ)离子的测定也可以在表面水中共存的高浓度阴离子和阳离子。将所述方法应用于矿物,春,河流和人造海水中Hg(Ⅱ)离子的测定。通过分析认证参考资料(海水QC3163)确认了该程序的正确性。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2021年第4期|786-795|共10页
  • 作者单位

    Institute of Chemistry University of Silesia Szkolna 9 40-006 Katowice Poland;

    Institute of Chemistry University of Silesia Szkolna 9 40-006 Katowice Poland;

    Institute of Physics University of Silesia 75 Pulku Piechoty la 41-500 Chorzow Poland;

    Faculty of Materials Science and Ceramics University of Science and Technology al. Mickiewicza 30 30-059 Krakow Poland;

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