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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Noble metals as permanent chemical modifiers for the determination of mercury in environmental reference materials using solid sampling graphite furnace atomic absorption spectrometry and calibration against aqueous standards
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Noble metals as permanent chemical modifiers for the determination of mercury in environmental reference materials using solid sampling graphite furnace atomic absorption spectrometry and calibration against aqueous standards

机译:贵金属作为永久性化学改性剂,使用固体采样石墨炉原子吸收光谱法和水标准品校准法测定环境参考材料中的汞

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Iridium, palladium, rhodium and ruthenium, thermally deposited on the platform, were investigated as permanent modifiers for the determination of mercury in ash, sludge, marine and river sediment reference materials, ground to a particle size of 50 mum, using solid sampling graphite furnace atomic absorption spectrometry. total mass of 250 mug of each modifier was applied using 25 injections of 20 mul of modifier solution (500 mg l~(-1)), and executing a temperature program for modifier conditioning after each injection. The performance of palladium as found to be most consistent, taking the characteristic mass as the major criterion, resulting in an excellent correlation between the measured integrated absorbance values and the certified mercury contents. Mercury was found to be lost in part from aqueous solutions during the drying stage in the presence of all the investigated permanent modifiers, as well as in the presence of the palladium and magnesium nitrates modifier added in solution. A loss-free determination of mercury in aqueous solutions could be reached only after the addition of potassium permanganate, which finally made possible the use of aqueous standards for the direct analysis of solid samples. A characteristic mass of 55-60 pg Hg was obtained for the solid samples,using Pb as a permanent modifier,and also in aqueous solutions after the addition of permanaganate. The results obtained for mercury in ash, sludge and sediment reference materials, using direct solid sapling and calibration against aqueous standards, as well as the detection limit of 0.2 mg kg~(-1) were satisfactory for a routine procedure.
机译:使用固态采样石墨炉对热沉积在平台上的铱,钯,铑和钌进行了永久改性,用于测定灰分,污泥,海洋和河流沉积物参考材料中的汞,并将其研磨至粒径为50μm。原子吸收光谱法。使用25针20 mul的改性剂溶液(500 mg l〜(-1))注入25杯总质量的每种改性剂,并在每次注入后执行温度程序以进行改性剂调节。以特征质量为主要标准,发现钯的性能最为一致,从而导致测得的积分吸光度值与标准汞含量之间具有极好的相关性。发现在所有研究的永久性改性剂的存在下,以及在溶液中添加的钯和硝酸镁改性剂的存在下,在干燥阶段,汞会从水溶液中部分损失。仅在添加高锰酸钾后,才能实现水溶液中汞的无损测定,这最终使使用含水标准液直接分析固体样品成为可能。使用Pb作为永久性改性剂,以及在添加高锰酸根后的水溶液中,固体样品的特征质量为55-60 pg Hg。灰分,淤泥和沉积物参考材料中的汞含量,采用直接固体幼树法和针对水标准品的标定以及0.2 mg kg〜(-1)的检出限,对于常规程序而言是令人满意的。

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