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Development and evaluation of an automated multi-channel multiplug filtration cleanup device for pesticide residue analysis on mulberry leaves and processed tea

机译:桑树叶片杀虫剂残留分析自动多通道倍增清除装置的开发与评价及加工茶叶

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An automated multi-channel multiplug filtration cleanup (m-PFC) device was designed and developed. m-PFC columns were suitably installed in the device. The cycle times, speed and nitrogen pressure parameters of the m-PFC column were optimized. The device was utilized to analyze the 82 pesticide residues in fresh mulberry leaves and processed tea with GC-MS/MS detection. Method validation was performed on 82 pesticide residues in fresh mulberry leaves and processed tea at spiked levels of 0.01, 0.05 and 0.5 mg kg ~(?1) . The fortified recoveries of 82 pesticides were 72–115% and the relative standard deviations were 1–15%, except for diniconazole and clodinafop-propargyl in mulberry leaves. The automated multi-channel m-PFC device was successfully applied to detect the pesticide residues in fresh mulberry leaves and processed tea samples. With comparison to the conventional QuEChERS method, the current method using this device did not need additional vortex or centrifugation steps, and could process 48–64 samples in about one hour. The automated m-PFC method saved labor and improved the precision and was shown to be efficient and practical in pesticide residue analysis.
机译:设计并开发了一种自动多通道倍增过滤清理(M-PFC)设备。 M-PFC色谱柱适当地安装在装置中。优化了M-PFC柱的循环时间,速度和氮气压力参数。该装置用于分析新鲜桑叶中的82个农药残留物,并用GC-MS / MS检测加工茶。在新鲜桑树叶中的82个农药残留物中进行了方法验证,加工茶的加工水平为0.01,0.05和0.5mg kg〜(α1)。除了在桑树叶中的大胆唑和Clodinafop-丙烯基外,含有82个农药的强化恢复为72-115%,相对标准偏差为1-15%,桑树叶中的二尼氨基唑和康康啶醇。成功应用自动化多通道M-PFC器件以检测新鲜桑叶和加工茶样品中的农药残留物。随着与传统QueChers方法的比较,使用该装置的电流方法不需要额外的涡流或离心步骤,并且可以在约1小时内处理48-64个样品。自动化的M-PFC方法保存了劳动力并改善了精度,并显示出农药残留分析中的高效实用。

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