白蚁消化产物在线柱预富集火焰原子吸收光谱法测定水样中痕量银。

Joyce Nunes Bianchin, Edmar Martendal, Eduardo Carasek
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引用次数: 8

摘要

建立了固相萃取-流动注射-火焰原子吸收光谱法测定水样中银的新方法。银的预富集提取用的吸附剂为白蚁消化产物。通过多变量程序对系统的流量和化学变量进行了优化。选择的因素有吸附剂质量、缓冲液类型和浓度、样品pH和样品流速。检出限为3.4 μ L(-1),精密度为3.8% (n = 6, 15 μ L(-1))。富集因子为21 μ L,线性工作范围为10 ~ 50 μ L(-1)。不同水样回收率试验结果在96 ~ 107%之间。所提出的方法已成功地应用于测定由位于巴西圣卡塔琳娜的一家工厂提供的浸渍银纳米粒子的衣服洗涤用水中的银。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Determination of trace silver in water samples by online column preconcentration flame atomic absorption spectrometry using termite digestion product.

Determination of trace silver in water samples by online column preconcentration flame atomic absorption spectrometry using termite digestion product.

Determination of trace silver in water samples by online column preconcentration flame atomic absorption spectrometry using termite digestion product.

Determination of trace silver in water samples by online column preconcentration flame atomic absorption spectrometry using termite digestion product.

A new method for Ag determination in water samples using solid phase extraction (SPE) coupled to a flow injection system and flame atomic absorption spectrometry was developed. The sorbent used for Ag preconcentration and extraction was the termite digestion product. Flow and chemical variables of the system were optimized through a multivariate procedure. The factors selected were adsorbent mass, buffer type and concentration, sample pH, and sample flow rate. The detection limit and precision were 3.4 μg L(-1) and 3.8% (n = 6, 15 μg L(-1)), respectively. The enrichment factor and the linear working range were, respectively, 21 and 10-50 μg L(-1). Results for recovery tests using different water samples were between 96 and 107%. The proposed methodology was applied with success for the determination of Ag in water used to wash clothes impregnated with silver nanoparticles, supplied by a factory located in Santa Catarina, Brazil.

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