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Determination of trace elements in salt lake brines using inductively coupled plasma optical emission spectrometry after magnesium hydroxide precipitation

机译:氢氧化镁沉淀后电感耦合等离子体发射光谱法测定盐湖盐水中的微量元素。

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摘要

A magnesium hydroxide coprecipitation method for the determination of trace elements in high-salt samples from salt lake brines by inductively coupled plasma optical emission spectrometry (ICP-OES) was developed. Some effects on the coprecipitation and analysis, such as the pH value and Na and Mg amounts in primary brines, have been thoroughly investigated and optimized. After adjusting the pH to 8.70, associated with sodium hydroxide, the complicated matrix was removed from high salt brines, and thus trace amounts of Al, Co, Cu, Fe, Mn, Ni, V, and Zn were simultaneously coprecipitated and precisely determined. Recoveries of all the determined trace elements in the samples of both synthesized and real salt lake brines were more than 90%. The detection limit in the range of 0.62-14.4 mg L-1 was obtained and the precision was less than 3% relative standard deviation. The optimized method has been successfully applied for the determination of trace elements in the intercrystal brine mined from Dachaidan salt lake located in the Qaidam Basin, China.
机译:建立了一种用电感耦合等离子体发射光谱法(ICP-OES)测定盐湖盐水中高盐样品中痕量元素的氢氧化镁共沉淀方法。对共沉淀和分析的一些影响,例如pH值以及初级盐水中的Na和Mg量,已经得到了彻底的研究和优化。调节pH至8.70(与氢氧化钠缔合)后,从高盐盐水中除去复杂的基质,从而同时共沉淀并精确测定了痕量的Al,Co,Cu,Fe,Mn,Ni,V和Zn。合成盐湖盐水和真实盐湖盐水样品中所有测定的痕量元素的回收率均超过90%。获得的检出限为0.62-14.4 mg L-1,并且精密度小于3%相对标准偏差。该优化方法已成功地用于测定位于柴达木盆地大柴旦盐湖的晶间盐水中的微量元素。

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