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y Determination of Atrazine, Simazine, Alachlor, and Metolachlor in Surface Water Using Dispersive Pipette Extraction and Gas Chromatography-Mass Spectrometry

机译:使用色散移液管萃取和气相色谱 - 质谱法测定地表水中阿拉津,西嗪,甲醛和地表水中的二元组

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摘要

Four commonly found pesticides (alachlor, atrazine, metolachlor, and simazine) in surface water were determined using dispersive pipette extraction followed by gas chromatography-mass spectrometry. The rapid mixing and equilibrium between the dispersive pipette extraction adsorbent and water sample resulted in fast and efficient extraction. Using only 5mL of water sample, the estimated time consumption for extraction of each sample was less than 5min. Method validation was performed to evaluate accuracy, precision, linearity, the limits of detection, and the limits of quantitation. Average recovery of above 90% was obtained with relative standard deviations below 10%, which indicated good accuracy and precision of the dispersive pipette extraction method. Coefficients of determination were all above 0.9901 and showed good linearity. For the four pesticides studied using the current method, the limits of detection ranged from 7 to 40ngL(-1), and limits of quantitation were from 20 to 130ngL(-1). Method validation results supported the application of the current method for drinking water safety monitoring per National Primary Drinking Water Regulations established by the US Environmental Protection Agency. Water samples from Lake Lanier and Stone Mountain Lake (Georgia, USS) were analyzed with this method as a preliminary work for a larger scale drinking water quality study in the future. Trace amounts of simazine and atrazine were found in lake water samples, but both were below the regulation levels of the US Environmental Protection Agency.
机译:使用分散移液管萃取测定表面水中的四种常见的杀虫剂(甲醛,亚哌嗪,甲磺酰脲类和Simazine),然后用气相色谱 - 质谱法测定。色散移液管萃取吸附剂和水样之间的快速混合和平衡导致快速有效地提取。仅使用5毫升水样,每个样品的提取的估计时间消耗小于5分钟。进行方法验证以评估准确性,精度,线性度,检测限和定量限。获得高于90%以上的平均回收率以低于10%的相对标准偏差获得,这表明了分散液管提取方法的良好精度和精度。测定系数全部高于0.9901并显示出良好的线性度。对于使用当前方法研究的四种农药,检测限范率为7至40ng1(-1),并且定量限制为20至130ng1(-1)。方法验证结果支持各种国家初级饮用水法规的当前方法饮用水安全监测,由美国环境保护局成立。利用这种方法分析了Lakier和石山湖(格鲁吉亚,USS)的水样作为未来更大规模饮用水质量研究的初步工作。在湖水样本中发现了痕量的西嗪和阿特拉津,但两者都低于美国环境保护局的监管水平。

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