首页> 外文期刊>Journal of Agricultural and Food Chemistry >Assessment of Test Portion Sizes after Sample Comminution with Liquid Nitrogen in an Improved High-Throughput Method for Analysis of Pesticide Residues in Fruits and Vegetables
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Assessment of Test Portion Sizes after Sample Comminution with Liquid Nitrogen in an Improved High-Throughput Method for Analysis of Pesticide Residues in Fruits and Vegetables

机译:液氮样品粉碎后试验部分尺寸评估改进的高通量法分析水果和蔬菜农药残留量

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In this study, sample processing of bulk commodities using an efficient one-step comminution procedure with liquid nitrogen (LN2) was devised and assessed in the analysis of pesticide residues in fruits and vegetables. LN2 was added to the fresh samples from a tank by opening a valve, and the standard food chopper was kept in a laboratory hood to reduce safety risks. Test portions of four replicates each of 0.25, 0.5, 1, 2, 5, 10, and 15 g were taken from eight fruits and vegetables (tomato, squash, broccoli, apple, grape, peach, green bean, and cucumber) individually comminuted with LN2. For comparison without comminution, similar test portions of a reconstituted freeze-dried certified reference material of pesticides in cucumber were also analyzed by the same method. More than 100 pesticides were monitored by both ultra-high-performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS) and instrument top sample preparation (ITSP) + fast low-pressure gas chromatography-tandem mass spectrometry (LPGC-MS/MS). A new version of QuEChERS-based sample preparation was followed, in which 5 mL of 4:1 (v/v) acetonitrile/water per gram of sample is used for extraction and 200 mu L of initial extract is quickly evaporated, reconstituted in water, and ultracentrifuged for UHPLC-MS/MS analysis. For ITSP+LPGC-MS/MS, another portion of the initial extract undergoes salt-out partitioning with 4:1 (w/w) anhydrous MgSO4/NaCl and the upper layer extract is transferred to an autosampler vial for automated cleanup and analysis in parallel. Quality control spikes were made during the comminution, extraction, cleanup, and analysis steps to isolate and estimate the individual and overall measurement uncertainties of the approach. The recommended test portion size is 2 g for routine monitoring by this approach, but results demonstrated that subsamples as low as 0.5 g typically gave overall biases and relative standard deviations of <10% for nearly all pesticides, commodities, and methods, which is 3-5% lower than previously evaluated sample processing and analytical methods. This approach can be used to improve data quality, laboratory efficiency, and sample throughput in routine monitoring programs for regulatory, risk assessment, and other purposes.
机译:在该研究中,设计了使用液氮(LN2)的有效的一步法粉碎方法的散装商品的样品处理,并评估了水果和蔬菜中的农药残留情况。通过打开阀门将LN2从罐中加入新鲜样品中,并将标准的食物斩波器保存在实验室罩中,以减少安全风险。从八个水果和蔬菜(番茄,南瓜,西兰花,苹果,葡萄,桃,青豆和黄瓜)中取出0.25,0.5,1,2,5,10和15g的四个重复的测试部分。用ln2。为了在不粉碎的情况下,还通过相同的方法分析了在黄瓜中的杀虫剂的重构冻干经认证参考材料的类似测试部分。通过超高效液相色谱 - 串联质谱(UHPLC-MS / MS)和仪器顶部样品制备(ITSP)+快速低压气相色谱 - 串联质谱(LPGC-MS /)通过超高效液相色谱 - 串联质谱(UHPLC-MS / MS)和仪器顶部样品制备(LPGC-MS /多发性硬化症)。遵循新版本的基于QueCher的样品制剂,其中每克样品5ml 4:1(v / v)乙腈/水用于萃取,200μmL初始提取物迅速蒸发,重构在水中,和UHPLC-MS / MS分析的超速离心。对于ITSP + LPGC-MS / MS,初始提取物的另一部分用4:1(w / w)无水MgSO 4 / NaCl经历盐除去分配,并且上层提取物转移到自动进样器小瓶中以进行自动清理和分析平行线。在粉碎,提取,清理和分析步骤中进行质量控制尖峰,以隔离和估计该方法的个体和总体测量不确定性。通过这种方法的常规监测,建议的测试部分尺寸为2g,但结果表明,低至0.5g的副样片通常为几乎所有杀虫剂,商品和方法提供总体偏差和相对标准偏差<10%,这是3 -5%低于先前评估的样品处理和分析方法。这种方法可用于提高数据质量,实验室效率和示例吞吐量,以进行监管,风险评估和其他目的的日常监测计划。

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