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首页> 外文期刊>Scandinavian journal of clinical and laboratory investigation. >Determination of low levels of total mercury in blood and plasma by cold vapour atomic fluorescence spectrometry.
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Determination of low levels of total mercury in blood and plasma by cold vapour atomic fluorescence spectrometry.

机译:冷蒸气原子荧光光谱法测定血液和血浆中的总汞含量低。

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A sensitive and semi-automated analytical method allowing determination of low and normal levels of total mercury in human blood and plasma using cold vapour atomic fluorescence is described. Samples are digested overnight, or at an elevated temperature for 4 h, followed by bromination at room temperature. After reduction with tin (II), analysis is performed using automated continuous flow vapour generation coupled to a fluorescence detector, allowing 20 samples to be analysed per hour. Detection limits for blood and plasma were found to be 0.9 and 0.5 nmol Hg l-1, respectively. The method precision at various concentrations of mercury was determined. For whole blood at 8.1 nmol Hg l-1 and 12.9 nmol Hg l-1, the within-day precision was 5% and 6% and the between-day precision 9% and 6%, respectively. For plasma at 1.3 nmol Hg l-1, the within-day precision was 13% while the between-day precision was 17%. Accuracy was evaluated by an inter-laboratory comparison study. At blood mercury concentrations below 60 nmol Hg l-1 the results from the current method were almost identical to those obtained with radiochemical neutron activation analysis, commonly regarded as a reference method. The present method should have merits in relation to previously used methods using atomic absorption spectrometry.
机译:描述了一种灵敏且半自动的分析方法,该方法允许使用冷蒸气原子荧光法测定人体血液和血浆中总汞的低和正常水平。将样品消化过夜,或在高温下消化4小时,然后在室温下溴化。用锡(II)还原后,使用与荧光检测器耦合的自动连续流蒸气产生仪进行分析,每小时可分析20个样品。血液和血浆的检出限分别为0.9和0.5 nmol Hg 1-1。测定了各种汞浓度下的方法精度。对于8.1 nmol Hg l-1和12.9 nmol Hg l-1的全血,日内精度分别为5%和6%,日间精度分别为9%和6%。对于浓度为1.3 nmol Hg 1-1的血浆,日内精度为13%,而日间精度为17%。通过实验室间比较研究评估准确性。在血液汞浓度低于60 nmol Hg l-1时,当前方法的结果与通过放射化学中子活化分析获得的结果几乎相同,而放射性中子活化分析通常被视为参考方法。与先前使用原子吸收光谱法的方法相比,本方法应具有优点。

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