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Minimizing Chloride Interferences Produced by Calcium Chloride in the Determination of Cd by Graphite Furnace Atomic Absorption Spectrometry

机译:通过石墨炉原子吸收光谱法测定CD氯化钙产生的氯化钙干扰

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Cadmium concentrations in CaCl2extracting solutions at various concentrations were determined by graphite furnace atomic absorption using two background correctors: the deuterium and the high-speed self-reversal background correction systems. Under- and overestimation of the Cd absorbance signals in CaCl2solutions were observed for concentrations greater than 0.005 M using the deuterium lamp while no important effect was observed using the other background correction system. The analytical performance of the spectrometer for the determination of Cd was studied in 0.01 M CaCl2solution and single extractions were performed using reference materials and contaminated soil samples. Cadmium was determined using the two background correction systems and a third method, which consists of the use of the deuterium lamp without any chemical modifier, was added to the study. The results showed that the third method was unable to determine Cd concentrations in the CaCl2solution due to the presence of extractable arsenic and iron. For solutions without any dilution or diluted with a very low dilution factor, the CaCl2-extractable Cd concentrations measured using the deuterium lamp were systematically below those found using the high-speed self-reversal method. These differences were explained by the presence of chloride ions in the atomization step.
机译:通过使用两个背景校正器的石墨炉原子吸收测定各种浓度的CaCl2萃取溶液中的镉浓度:氘和高速自逆背景校正系统。使用氘灯观察到CaCl2Solution中的CaCl2Solutuls中的CAC吸光度信号的低估,而使用氘灯的浓度大于0.005μm,而使用其他背景校正系统没有观察到的重要效果。研究了用于测定CD的光谱仪的分析性能,在0.01MCaCl2溶液中进行,使用参考材料和受污染的土壤样品进行单一提取。使用两个背景校正系统和第三种方法测定镉,该方法包括使用没有任何化学改性剂的氘灯,加入到研究中。结果表明,由于存在可提取的砷和铁,第三种方法不能在CaCl2溶液中测定CACl2浓度。对于没有任何稀释或用非常低的稀释因子稀释的溶液,使用氘灯测量的CaCl2-可提取的CD浓度系统地下面使用高速自转方法的那些。通过雾化步骤中的氯离子存在解释这些差异。

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