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Single-Drop Solution Electrode Discharge-Induced Cold Vapor Generation Coupling to Matrix Solid-Phase Dispersion: A Robust Approach for Sensitive Quantification of Total Mercury Distribution in Fish

机译:单滴溶液电极放电诱导的冷蒸气产生耦合到基质固相色散:一种用于鱼类总汞分布的敏感定量的鲁棒方法

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摘要

Sensitive quantification of mercury distribution in fish is challenging because of insufficient sensitivities of conventional analytical methods, the limited mass of organs (tens of micrograms to several milligrams), and dilution of analyte concentration from sample digestion. In this work, a simple and robust approach coupling multiwall carbon nanotubes assisted matrix solid-phase dispersion (MWCNTs-MSPD) to single-drop solution electrode glow discharge-induced cold vapor generation (SD-SEGD-CVG) was developed for the sensitive determination of mercury in limited amount of sample. Mercury species contained in a limited amount of sample can be efficiently extracted into a 100 u3bcL of eluent by MWCNTs-MSPD, which are conveniently converted to Hg0 by SD-SEGD-CVG and further transported to atomic fluorescence spectrometry for their determination. Therefore, analyte dilution resulted from sample preparation is avoided and sensitivity is significantly improved. On the basis of consumption of 1 mg of sample, a limit of detection of 0.01 u3bcg Lu20131 (0.2 pg) was obtained with relative standard deviations (RSDs) of 5.2% and 4.6% for 2 and 20 u3bcg Lu20131, respectively. The accuracy of the proposed method was validated by analysis of three Certified Reference Materials with satisfying results. To confirm that SD-SEGD-CVG-AFS coupling to MWCNTs-MSPD is a promising method to quantify mercury distribution in fish, this method was successfully applied for the sensitive determination of mercury in seven organs of common carps (muscle, gill, intestine, liver, gallbladder, brain, and eye) after dietary of mercury species. The proposed method provides advantages of minimum sample dilution, low blank, high sample introduction efficiency, high sensitivity, and minimum toxic chemicals and sample consumption.
机译:由于常规分析方法的敏感性,常规分析方法的敏感性,机器官(几毫克数十几毫克)的敏感性不足,并且从样品消化中稀释分析物浓度的敏感性,鱼类中汞分布的敏感性是挑战性的。在这项工作中,开发了一种简单且坚固的接近耦合多壁碳纳米管辅助基质固相分散(MWCNTS-MSPD),用于对单滴溶液电极辉光放电诱导的冷蒸气产生(SD-SEGD-CVG)进行敏感测定样品有限的汞。可以通过MWCNTS-MSPD将有限量的样品中含有的汞物质通过MWCNTS-MSPD将其通过SD-SEGD-CVG方便地转化为HG0,并进一步转化为原子荧光光谱法以进行测定。因此,避免了样品制剂引起的分析物稀释度,灵敏度显着提高。在1mg样品的消耗的基础上,获得了0.01℃的检测限为0.01℃,相对标准偏差(RSD)为5.2%和4.6%,对于2和20 U3BCG L U20131 , 分别。通过分析具有令人满意的结果的三种认证的参考资料,验证了所提出的方法的准确性。为了确认SD-SEGD-CVG-AFS耦合到MWCNTS-MSPD是一种有望的方法来量化鱼类中的汞分布,该方法成功地应用于血液渗透氧化鲤(肌肉,鳃,肠道,肝脏,胆囊,脑和眼睛)饮食物种膳食。该方法提供了最小样品稀释,坯料,高样品引入效率低,灵敏度高,最小毒性化学品和样品消耗的优点。

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