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首页> 外文期刊>Analytica chimica acta >A new analytical application of nylon-induced room-temperature phosphorescence: Determination of thiabendazole in water samples
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A new analytical application of nylon-induced room-temperature phosphorescence: Determination of thiabendazole in water samples

机译:尼龙诱导的室温磷光的新分析应用:水样品中噻菌灵的测定

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摘要

This paper discusses the first analytical determination of the widely used fungicide thiabendazole by nylon-induced phosphorimetry. Nylon was investigated as a novel solid-matrix for inducing room-temperature phosphorescence of thiabendazole, which was enhanced under the effect of external heavy-atom salts. Among the investigated salts, lead(II) acetate was the most effective in yielding a high phosphorescence signal. An additional enhancement of the phosphorescence emission was attained when the measurements were carried out under a nitrogen atmosphere. There was only a moderate increase in the presence of cyclodextrins. The room-temperature phosphorescence lifetimes of the adsorbed thiabendazole were measured under different working conditions and, in all cases, two decaying components were detected. On the basis of the obtained results, a very simple and sensitive phosphorimetric method for the determination of thiabendazole was established. The analytical figures of merit obtained under the best experimental conditions were: linear calibration range from 0.031 to 0.26 mu g ml(-1) (the lowest value corresponds to the quantitation limit), relative standard deviation, 2.4% (n = 5) at a level of 0.096 mu g ml(-1), and limit of detection calculated according to 1995 IUPAC Recommendations equal to 0.010 mu g ml(-1) (0.03 ng/spot). The potential interference from common agrochemicals was also studied. The feasibility of determining thiabendazole in real samples was successfully evaluated through the analysis of spiked river, tap and mineral water samples. (c) 2006 Elsevier B.V. All rights reserved.
机译:本文讨论了尼龙诱导的荧光法对广泛使用的杀菌剂噻菌灵的首次分析测定。尼龙被研究为诱导噻菌灵在室温下发磷光的新型固体基质,其在外部重原子盐的作用下得到增强。在研究的盐中,乙酸铅(II)在产生高磷光信号方面最有效。当在氮气氛下进行测量时,磷光发射得到了另外的增强。环糊精的存在仅适度增加。在不同的工作条件下测量了噻苯达唑在室温下的磷光寿命,并且在所有情况下均检测到两个衰减成分。根据获得的结果,建立了一种非常简单而灵敏的磷光法测定噻菌灵。在最佳实验条件下获得的性能指标的分析数据为:线性校准范围为0.031至0.26μg ml(-1)(最小值对应于定量极限),相对标准偏差为2.4%(n = 5)。水平为0.096μg ml(-1),根据1995 IUPAC建议计算得出的检出限为0.010μg ml(-1)(0.03 ng /点)。还研究了常见农药的潜在干扰。通过分析加标的河流,自来水和矿泉水样品,成功评估了测定真实样品中噻菌灵的可行性。 (c)2006 Elsevier B.V.保留所有权利。

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