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Validation of an electrothermal atomization atomic absorption spectrometry method for the determination of aluminum, copper, and lead in grapes

机译:电热雾化原子吸收光谱法测定葡萄中铝,铜和铅的验证

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摘要

An electrothermal atomization atomic absorption spectrometry method was validated to quantify aluminum, copper, and lead in grapes. The limits of detection were 1.11, 0.19, and 0.35 mu g/L for Al, Cu, and Pb, respectively. The linearity ranges under optimized conditions were 1.11-50.0, 0.19-25, and 0.35-50.0 mu g/L for Al, Cu, and Pb, respectively. The limits of quantification were 74.0, 12.5, and 11.6 ng/g of dry weight for Al, Cu, and Pb, respectively. For all of the metals, the precision for the instrumental method was lower than 5.4% and for the analytical method, lower than 10%. The accuracy of the method was evaluated by the standard additions method, the recoveries being higher than 90% for all of the concentrations added. An interference study was also carried out in a simulated matrix, and it was verified that the deviations from the expected values were lower than 3.4% for all of the metals. The method was applied to the monitoring of the metals referred to above in 35 samples of grapes obtained in marketplaces and at farmhouses. The metals were quantified in the whole grapes, washed or not, and in the peel and pulp of unwashed grapes.
机译:验证了电热雾化原子吸收光谱法可定量葡萄中的铝,铜和铅。 Al,Cu和Pb的检出限分别为1.11、0.19和0.35μg / L。在优化条件下,Al,Cu和Pb的线性范围分别为1.11-50.0、0.19-25和0.35-50.0μg / L。 Al,Cu和Pb的定量限分别为74.0、12.5和11.6 ng / g干重。对于所有金属,仪器方法的精度均低于5.4%,而分析方法的精度均低于10%。通过标准添加方法评估了该方法的准确性,所有添加浓度的回收率均高于90%。还在模拟矩阵中进行了干扰研究,结果证明所有金属与预期值的偏差均低于3.4%。该方法用于监测在市场和农舍中获得的35个葡萄样品中的上述金属。在整个葡萄中(无论是否洗涤)以及未洗涤葡萄的果皮和果肉中的金属含量都进行了定量。

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