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Simple and Equipment-Free Paper-Based Device for Determination of Mercury in Contaminated Soil

机译:基于简单的设备的纸质装置用于测定污染土壤中的汞

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摘要

This work presents a simple and innovative protocol employing a microfluidic paper-based analytical device (µPAD) for equipment-free determination of mercury. In this method, mercury (II) forms an ionic-association complex of tetraiodomercurate (II) ion (HgI42−(aq)) using a known excess amount of iodide. The residual iodide flows by capillary action into a second region of the paper where it is converted to iodine by pre-deposited iodate to liberate I2(g) under acidic condition. Iodine vapor diffuses across the spacer region of the µPAD to form a purple colored of tri-iodide starch complex in a detection zone located in a separate layer of the µPAD. The digital image of the complex is analyzed using ImageJ software. The method has a linear calibration range of 50–350 mg L−1 Hg with the detection limit of 20 mg L−1. The method was successfully applied to the determination of mercury in contaminated soil and water samples which the results agreed well with the ICP-MS method. Three soil samples were highly contaminated with mercury above the acceptable WHO limits (0.05 mg kg−1). To the best of our knowledge, this is the first colorimetric µPAD method that is applicable for soil samples including mercury contaminated soils from gold mining areas.
机译:这项工作提出了一种简单而创新的协议,采用基于微流体纸的分析装置(μPAD),用于无需汞的无设备测定。在该方法中,使用已知过量的碘化物,汞(II)形成四碘核酸(II)离子(II)离子(HGI42-(AQ))的离子键合络合物。残留的碘化物通过毛细管作用流入纸张的第二区域,其中通过预沉积的碘酸酯将其转化为碘,以在酸性条件下释放I2(g)。碘蒸汽在μPAD的间隔区上扩散,以在位于μPAD的单独层的检测区中形成紫色的三碘淀粉络合物。使用imagej软件分析复数的数字图像。该方法具有50-350mg L-1 Hg的线性校准范围,检测限为20 mg L-1。该方法成功地应用于污染土壤和水样中的汞的测定,结果与ICP-MS方法很好地同意。三种土壤样品高于可接受的汞(0.05mg KG-1)的可接受的汞温度污染。据我们所知,这是第一种比色测量方法,适用于来自金矿地区的汞受污染的土壤的土壤样品。

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