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Preconcentration of gallium(III) and indium(III) by coprecipitation with hafnium hydroxide for electrothermal: Atomic absorption spectrometry.

机译:通过与氢氧化铪共沉淀用于电热预浓缩镓(III)和铟(III):原子吸收光谱法。

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摘要

The trace amounts of gallium and indium in water were determined by graphite furnace atomic absorption spectrometry after being concentrated by the coprecipitation technique with hafnium hydroxide. Hafnium hydroxide coprecipitates quantitatively 0.2 -3 ng of gallium from 50 - 400 ml of sample solution at pH 6.0-10.5 and 0.2 -4 ng of indium from 50 - 400 ml at pH 6.0-11.0. The atomic absorbances of gallium and indium are increased about 3 times by the presence of hafnium; the reproducibilities of the measurements are also improved. The calibration curve is linear from 8 to 120 ng ml-1 of gallium or from 8 to 160 ng ml-1 of indium. Twenty seven diverse ions tested did not interfere seriously with either element. These methods are applicable to the determination of gallium and indium in river or seawater which contains down to 0.5 ng ml-1 of these elements. © 1988, The Japan Society for Analytical Chemistry. All rights reserved.
机译:采用氢氧化ha共沉淀技术浓缩后,用石墨炉原子吸收光谱法测定水中痕量的镓和铟。氢氧化在pH 6.0-10.5时从50-400毫升样品溶液中共沉淀0.2 -3 ng镓,在pH 6.0-11.0时从50-400毫升中共沉淀0.2 -4 ng铟。 ha的存在使镓和铟的原子吸收率增加了约3倍;测量的可重复性也得到了改善。校准曲线从8到120 ng ml-1的镓或从8到160 ng ml-1的铟呈线性。测试的二十七种不同离子并未严重干扰任何一种元素。这些方法适用于测定低至0.5 ng ml-1的这些元素的河流或海水中的镓和铟。 ©1988,日本分析化学学会。版权所有。

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  • 作者

    Ueda, Joichi; Mizui, Chika;

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  • 年度 1988
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