首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Preconcentration of traces of gold,silver and palladium on activated carbon and its determination in geological samples by flame AAS after wet ashing
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Preconcentration of traces of gold,silver and palladium on activated carbon and its determination in geological samples by flame AAS after wet ashing

机译:活性炭中痕量金,银和钯的富集及湿灰化后火焰原子吸收光谱法测定地质样品中的痕量金

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摘要

A simple, rapid and cost effective preconcentration method is described for the determination of traces of gold (Au), silver (Ag) and palladium (Pd) in geological samples by flame atomic absorption spectrophotometry (AAS). The method is based on sorption of analytes (Au, Ag and Pd) on powdered activated carbon (AC) at pH -I in hydrochloric acid (HCI) medium. The samples are decomposed by aqua regia -HCI treatment. The quantitative sorption (better than 92%) of analytes is obtained on AC (in absence of complexing agent), by simply manipulating optimal conditions. The unique feature of the method is, the analytes are recovered quantitatively from AC by oxidizing and completely solubilising the carbon using concentrated nitric acid (HNO3) and perchloric acid (HCIO4) i.e. by wet ashing. The method of wet ashing has several advantages over conventional dry ashing. The accuracy of the method is evaluated by analysing, five Canada centre for mineral and energy technology (CANMET) standards; MA-3, MA-Ib, FER-I, SU-IA, and CPB-I. In addition, ASK-3 and one inhouse standard, kolar gold field (KGF) samples was also analysed. As no standard for Pd is available, iCts accuracy was evaluated by standard addition method. The method was applied on numerous geological samples for the determination of Au, Ag and Pd down to 0.1 ppm (based on 10 g sample) within :t 10% R.S.D. (n = 5). The method could easily be adopted by any laboratory as the inputs are minimal (AC), inexpensive and easily available.
机译:描述了一种简单,快速且经济高效的预富集方法,用于通过火焰原子吸收分光光度法(AAS)测定地质样品中的痕量金(Au),银(Ag)和钯(Pd)。该方法基于在盐酸(HCl)介质中pH-I的粉末状活性炭(AC)上吸附分析物(Au,Ag和Pd)。通过王水-HCl处理将样品分解。通过简单地控制最佳条件,即可在AC上(不存在络合剂的情况下)获得被分析物的定量吸附(优于92%)。该方法的独特之处在于,通过使用浓硝酸(HNO3)和高氯酸(HCIO4)氧化并完全溶解碳,即通过湿灰化,从AC中定量回收分析物。湿灰化的方法与常规干灰相比具有几个优点。通过分析加拿大五个矿产和能源技术中心(CANMET)的标准来评估该方法的准确性; MA-3,MA-1b,FER-1,SU-IA和CPB-1。此外,还分析了ASK-3和一种内部标准的可乐金矿(KGF)样品。由于没有可用的Pd标准品,因此通过标准添加方法评估iCts准确性。该方法适用于许多地质样品,用于在10%R.S.D.范围内测定低至0.1 ppm(基于10 g样品)的Au,Ag和Pd。 (n = 5)。该方法很容易为任何实验室所采用,因为它们的输入量最少(AC),价格低廉且易于获得。

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