首页> 美国卫生研究院文献>The Journal of Automatic Chemistry >Effects of Iron Concentration Level in Extracting Solutions from Contaminated Soils on the Determination of Zinc by Flame Atomic Absorption Spectrometry with Two Background Correctors
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Effects of Iron Concentration Level in Extracting Solutions from Contaminated Soils on the Determination of Zinc by Flame Atomic Absorption Spectrometry with Two Background Correctors

机译:两种背景校正剂火焰原子吸收光谱法测定污染土壤提取液中铁的含量对锌的测定的影响

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摘要

Zinc and iron concentrations were determined after digestion, water, and three-step sequential extractions of contaminated soils. Analyses were carried out using flame absorption spectrometry with two background correctors: a deuterium lamp used as the continuum light source (D2 method) and the high-speed self-reversal method (HSSR method). Regarding the preliminary results obtained with synthetic solutions, the D2 method often emerged as an unsuitable configuration for compensating iron spectral interferences. In contrast, the HSSR method appeared as a convenient and powerful configuration and was tested for the determination of zinc in contaminated soils containing high amounts of iron. Simple, fast, and interference-free method, the HSSR method allows zinc determination at the ppb level in the presence of large amounts of iron with high stability, sensitivity, and reproducibility of results. Therefore, the HSSR method is described here as a promising approach for monitoring zinc concentrations in various iron-containing samples without any pretreatment.
机译:消解,水和三步顺序萃取污染土壤后,测定锌和铁的浓度。使用带有两个背景校正器的火焰吸收光谱法进行分析:用作连续光源的氘灯(D2方法)和高速自反转方法(HSSR方法)。关于用合成溶液获得的初步结果,D2方法经常作为补偿铁谱干扰的不合适结构出现。相比之下,HSSR方法似乎是一种方便且功能强大的配置,并经过测试用于测定含大量铁的受污染土壤中的锌。 HSSR方法简单,快速且无干扰,可在大量铁存在下以ppb含量测定锌,结果具有很高的稳定性,灵敏度和可重复性。因此,这里将HSSR方法描述为一种无需进行任何预处理即可监测各种含铁样品中锌浓度的有前途的方法。

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