首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Ultra-trace determination of arsenic species in environmental waters, food and biological samples using a modified aluminum oxide nanoparticle sorbent and AAS detection after multivariate optimization
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Ultra-trace determination of arsenic species in environmental waters, food and biological samples using a modified aluminum oxide nanoparticle sorbent and AAS detection after multivariate optimization

机译:多元优化后,使用改良的氧化铝纳米颗粒吸附剂和AAS检测,可超痕量测定环境水,食品和生物样品中的砷

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摘要

We describe a simple and efficient method for solid phase extraction and speciation of trace quantities of arsenic. It is based on the use of functionalized aluminum oxide nanoparticles and does not require any oxidation or reduction steps. The experimental parameters affecting extraction and quantitation were optimized using fractional factorial design methods. Adsorbed arsenic was eluted from the sorbent with 1 M hydrochloric acid and determined by graphite furnace atomic absorption spectrometry. Preconcentration factors up to 750 were achieved depending on the sample volume. Studies on potential interferences by various anions and cations showed the method to be highly selective. Under optimum conditions, the calibration plots are linear in the 5.0 to 280 ng L-1 and 8.0 to 260 ng L-1 concentration ranges for As(III) and total arsenic, respectively. The detection limits (calculated for S/N ratios of 3) are 1.81 and 1.97 ng L-1 for As(III) and total arsenic, respectively. The method was successfully applied to the determination and speciation of arsenic in (spiked) environmental, food and biological samples and gave good recoveries. The method was validated using a certified geological reference material.
机译:我们描述了一种简单有效的固相萃取和痕量砷形态分析方法。它基于功能化氧化铝纳米颗粒的使用,不需要任何氧化或还原步骤。使用分数阶因子设计方法优化了影响提取和定量的实验参数。用1 M盐酸从吸附剂中洗脱吸附的砷,并通过石墨炉原子吸收光谱法测定。根据样品量,可以达到750的预浓缩系数。对各种阴离子和阳离子的潜在干扰的研究表明,该方法具有很高的选择性。在最佳条件下,As(III)和总砷的校准曲线分别在5.0至280 ng L-1和8.0至260 ng L-1浓度范围内呈线性。砷(III)和总砷的检出限(信噪比为3时计算)分别为1.81和1.97 ng L-1。该方法已成功应用于环境中,食品和生物样品中砷的测定和形态分析,并具有良好的回收率。该方法已通过认证的地质参考材料进行了验证。

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