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Determination of inorganic mercury in petroleum production water by inductively coupled plasma optical emission spectrometry following photochemical vapor generation

机译:产生光化学蒸气后的电感耦合等离子体发射光谱法测定石油生产水中的无机汞。

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摘要

A photochemical vapor generation system coupled to an inductively coupled plasma optical emission spectrometer (ICP-OES) was used for the determination of inorganic mercury in high salinity water arising from offshore petroleum exploration platforms, i.e., production water (PW). The system comprised a 17 W UV grid lamp for photogeneration along with two gas/liquid separators functioning in tandem to minimize aerosol transport into the plasma. Analytical conditions, including type and concentration of low molecular weight organic acid, UV exposure time and solution pH were optimized. Continuous-flow processing of a sample containing 1.63 mol L-1 formic acid at pH 2.0 for a UV irradiation time of 30 s permitted Hg(II) to be determined based on the method of additions. Procedural limits of detection and quantification of 1.2 and 4.0 \ub5g L-1, respectively, were achieved. Recoveries of 10 - 40 \ub5g L-1 Hg(II) spikes added to real samples ranged from 79 to 121%.
机译:将光化学蒸汽发生系统与电感耦合等离子体发射光谱仪(ICP-OES)耦合用于测定由近海石油勘探平台产生的高盐度水中的无机汞,即生产水(PW)。该系统包括一个用于发电的17 W UV格栅灯以及两个串联工作的气/液分离器,以最大程度地减少气溶胶向等离子体中的传输。优化了分析条件,包括低分子量有机酸的类型和浓度,紫外线暴露时间和溶液pH值。在pH值为2.0的条件下对含有1.63 mol L-1甲酸的样品进行30 s的UV辐照时间的连续流处理,可以根据添加方法确定Hg(II)。分别达到了检测限和检测限,分别为1.2和4.0 \ ub5g L-1。添加到真实样品中的10-40 \ ub5g L-1 Hg(II)峰值的回收率为79%至121%。

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