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首页> 外文期刊>Canadian Journal of Chemistry >Application of the high-speed seif-rewersal background corrector to the determination of cadmium by chemical wapor generation atomic absorption spectrometry
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Application of the high-speed seif-rewersal background corrector to the determination of cadmium by chemical wapor generation atomic absorption spectrometry

机译:高速Seif-Rervesal背景校正器在化学波发生原子吸收光谱法测定镉中的应用

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摘要

Concentrations of cadmium (Cd) in extracting solutions (neutral salts) from contaminated soils are often too low to be determined by conventional flame atomic absorption spectrometry. For this reason, determination of Cd requires sensitive analytical methods free from interference problems generated by samples. In this context, vapor generation atomic absorption spectrometry (HGAAS) was combined with a high-speed self-reversal background corrector. This new approach was successfully applied after optimization of the analytical parameters to obtain a maximal absorbance signal of the volatile Cd species. The optimum condition was achieved with a 3% (m/v) NaBH4 in 1.5% (m/v) NaOH reducing solution and a solution containing 0.3 mol/L HNO3. The detection limit was 1 ng mL~(-1) under the previous conditions and the relative standard deviation was up to 5% for 10 replicate analyses of Cd at 0.2 and 1 ng mL~(-1), reflecting a very highly sensitive and reproducible method. Moreover, the results showed that the proposed combination was an efficient method to overcome the interference problems caused by different coexisting cations, As, Al, Ca, Cu, Fe, Mg, Mn, Ni, Pb, Se and Zn, up to 10 μg mL~(-1). The method was validated with analyses of two standard reference materials and was used for Cd determination in 0.01 mol/L CaCl2 extracts from contaminated kitchen garden soils. The data were compared with those obtained by two other more conventional methods, electrothermal atomic absorption spectrometry (ETAAS) and flame atomic absorption spectrometry (FAAS). The analytical results obtained by the ETAAS and HGAAS were in a good agreement, suggesting the suitability of the method for Cd determination in 0.01 mol/L CaCl2 extracting solution.
机译:从受污染的土壤中提取溶液(中性盐)中的镉(Cd)浓度通常过低,无法通过常规火焰原子吸收光谱法测定。因此,镉的测定需要灵敏的分析方法,而不会产生样品产生的干扰问题。在这种情况下,将蒸气发生原子吸收光谱法(HGAAS)与高速自反转背景校正器结合使用。在优化分析参数后,成功地应用了这种新方法以获得挥发性Cd种类的最大吸收信号。最佳条件是在1.5%(m / v)NaOH还原溶液中使用3%(m / v)的NaBH4和含有0.3 mol / L HNO3的溶液实现的。在以前的条件下,检出限为1 ng mL〜(-1),在0.2和1 ng mL〜(-1)的Cd重复分析10次时,相对标准偏差高达5%。可重复的方法。此外,结果表明,所提出的组合是一种有效的方法,可以解决由最多10μg的As,Al,Ca,Cu,Fe,Mg,Mn,Ni,Pb,Se和Zn共存的不同阳离子引起的干扰问题。毫升〜(-1)。该方法通过分析两种标准参考物质而得到验证,并用于从受污染的菜园土壤中的0.01 mol / L CaCl2提取物中进行镉测定。将数据与通过其他两种更常规的方法获得的数据进行比较,这些方法是电热原子吸收光谱法(ETAAS)和火焰原子吸收光谱法(FAAS)。 ETAAS和HGAAS的分析结果吻合良好,表明该方法适用于0.01 mol / L CaCl2萃取溶液中的Cd测定。

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