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Measurement uncertainty associated with sample processing of oranges and tomatoes for pesticide residue analysis

机译:与用于农药残留分析的橙子和西红柿样品处理相关的测量不确定度

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摘要

The homogeneity of analytical samples and the stability of pesticides during the sample processing of oranges and tomatoes were evaluated. The mean concentrations of 14C-labeled chlorpyrifos in analytical portions (subsamples) after processing show that homogeneity is dependent on sample type as well as the processing procedure. The homogeneity of analytical samples of tomatoes processed cryogenically was much better than those processed at ambient temperature. For tomatoes, the minimum analytical portion masses required for between-analytical portion variation of < 0.3 Ho were 110 and 5 g for processing at ambient and cryogenic temperatures, respectively. Results for orange showed that analytical portion sizes of 5 g provided sufficient homogeneity from both sample processing procedures. Assessments of pesticide stability demonstrated that most were relatively stable during processing at either ambient or cryogenic temperatures. However, some pesticides, including dichlofluanid, chlorothalonil, tolylfluanid, and dicloran, appeared to suffer much greater losses (>20%) during processing at ambient temperature. For these analytes, loss is interpreted as chemical degradation.
机译:评价了橙子和西红柿样品处理过程中分析样品的均质性和农药的稳定性。加工后分析部分(子样品)中14C标记的毒死rif的平均浓度表明,同质性取决于样品类型以及加工程序。低温加工的西红柿的分析样品的均质性比在环境温度下加工的西红柿的均质性好得多。对于西红柿,在环境温度和低温下进行处理时,分析之间的差异小于0.3 Ho所需的最小分析部分质量分别为110和5 g。橙色的结果表明,5 g的分析份量在两种样品处理程序中均具有足够的均质性。对农药稳定性的评估表明,大多数农药在环境温度或低温条件下相对稳定。但是,在环境温度下加工过程中,某些农药(包括双氯氟苯胺,百菌清,甲苯基氟苯胺和双氯然)遭受的损失似乎更大(> 20%)。对于这些分析物,损失被解释为化学降解。

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