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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Application of partial least squares multivariate calibration for the determination of mixtures of carbaryl and thiabendazole in waters by transmitted solid phase spectrophosphorimetry
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Application of partial least squares multivariate calibration for the determination of mixtures of carbaryl and thiabendazole in waters by transmitted solid phase spectrophosphorimetry

机译:偏最小二乘多元校正在透射固相荧光光谱法测定水中甲萘威和噻菌灵混合物中的应用

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摘要

Mixtures of the pesticides carbaryl and thiabendazole were studied using solid phase spectrophosphorimety at room temperature with Whatman No. 4 filter-paper as solid support and Pb(rr) as enhancer of the phosphorescence. The transmitted phosphorescence was used as an analytical signal and its measurement was performed by placing the paper containing the sample between two quartz plates. In this way, the use of a dry inert gas flow to avoid the quenching of atmospheric agents (oxygen and moisture) is not needed. The influence of several experimental parameters (e.g., pH, nature of the enhancers and solid supports, gate and delay times) on the phosphorescent emission of both chemicals was also studied. As a result, a new method for the simultaneous determination of these pesticides is proposed, using partial least squares (PLS-1) multivariate calibration. The statistical parameters of the optimised matrix, are included as a table. The applicable concentration ranges were from 0.16 to 1.20 mg l(-1) for thiabendazole and from 0.50 to 4.00 mg l(-1) for carbaryl. The method was applied to the determination of both pesticides in water, with recoveries between 93.4 and 105.6% for carbaryl and between 90.0 and 105.0% for thiabendazole. HPLC was used as a reference method. [References: 34]
机译:使用Whatman No.4滤纸作为固相载体,Pb(rr)作为磷光增强剂,在室温下使用固相分光光度法研究了农药西维因和噻菌灵的混合物。透射的磷光用作分析信号,通过将包含样品的纸放在两个石英板之间进行测量。以这种方式,不需要使用干燥的惰性气体流来避免大气试剂(氧气和湿气)的淬灭。还研究了几种实验参数(例如pH值,增强剂和固体载体的性质,门控和延迟时间)对两种化学物质磷光发射的影响。结果,提出了使用偏最小二乘(PLS-1)多元校准同时测定这些农药的新方法。表格中包含了优化矩阵的统计参数。噻菌灵的适用浓度范围是0.16至1.20 mg l(-1),而甲萘威的适用浓度范围是0.50至4.00 mg l(-1)。该方法用于水中两种农药的测定,西维因的回收率在93.4%至105.6%之间,噻菌灵的回收率在90.0%至105.0%之间。 HPLC用作参考方法。 [参考:34]

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