李 南,熊含鸿,洪泽淳,刘莹莹,陈思敏,简德威,郑悦珊,李星星,孙明蔚,梁旭霞,陈 科.普通白菜(上海青)中农药残留检测技术盲样考核结果与分析[J].食品安全质量检测学报,2020,11(3):996-1002
普通白菜(上海青)中农药残留检测技术盲样考核结果与分析
Results and analysis of blind sample assessment for pesticide residues in ordinary cabbage (Shanghai Qing)
投稿时间:2019-10-29  修订日期:2020-01-16
DOI:
中文关键词:  农药残留  盲样考核  定量  定性
英文关键词:pesticide residue  blind sample examination  quantitative  qualitative
基金项目:广东省食品药品监督管理局科技创新项目(2018TDB11)、广东省科技计划项目(2019B020208008)
作者单位
李 南 广东省食品检验所 
熊含鸿 广东省食品检验所 
洪泽淳 广东省食品检验所 
刘莹莹 广东省食品检验所 
陈思敏 广东省食品检验所 
简德威 广东省食品检验所 
郑悦珊 广东省食品检验所 
李星星 广东省食品检验所 
孙明蔚 广东省食品检验所 
梁旭霞 广东省食品检验所 
陈 科 广东省食品检验所 
AuthorInstitution
LI Nan Guangdong Institute for Food Inspection 
XIONG Han-Hong Guangdong Institute for Food Inspection 
HONG Ze-Chun Guangdong Institute for Food Inspection 
LIU Ying-Ying Guangdong Institute for Food Inspection 
CHEN Si-Min Guangdong Institute for Food Inspection 
JIAN De-Wei Guangdong Institute for Food Inspection 
ZHENG Yue-Shan Guangdong Institute for Food Inspection 
LI Xing-Xing Guangdong Institute for Food Inspection 
SUN Ming-Wei Guangdong Institute for Food Inspection 
LIANG Xu-Xia Guangdong Institute for Food Inspection 
CHEN Ke Guangdong Institute for Food Inspection 
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中文摘要:
      目的 通过“2018年广东省食品承检机构农药残留检测技术盲样考核”项目, 检验本实验室的农药残留检测的能力, 提高实验室在农药检测技术方面的竞争力。方法 根据《2018广东省食品承检机构农药残留检测技术盲样考核作业指导书》的说明进行前处理。将一份空白基质对照样和3份平行盲样分别提取, 按照NY/T 761-2008、GB 23200.8-2016、GB/T 20769-2008方法定量吸取样品提取液进行相应的净化处理, 随后根据相应的仪器进行定性定量检测分析。结果 本次盲样考核必考项目42种定性定量农药组分中, 35种组分未检出, 检出并定量的组分7种。选考项目6种定性农药组分中, 5种组分定性未检出, 1种组分定性检出。本实验室在96 h内上报结果, 组织机构首次判定结果为合格。结论 本次盲样考核项目多, 方法复杂且时间紧迫, 参加本次考核提高了实验室检测农药残留的技术水平及实验室竞争力。
英文摘要:
      Objective To test the ability of the laboratory in pesticide residue detection, and to improve the competitiveness of the laboratory in pesticide detection technology, through the project of “blind sample assessment of pesticide residue detection technology of Guangdong food inspection agency in 2018”. Methods According to the instructions of “2018 Guangdong province food inspection institutions pesticide residue detection technology blind sample assessment work instruction”, pre-treatment was conducted. One blank matrix and three parallel blind samples were extracted, respectively. The sample extract was extracted quantitatively according to NY/T 761-2008, GB 23200.8-2016 and GB/T 20769-2008 methods for corresponding purification treatment, followed by qualitative and quantitative detection and analysis according to the corresponding instruments. Results In this blind sample exam, there were 42 qualitative and quantitative pesticides in the course of the test, and 35 of the ingredients were undetectable, and there were 7 ingredients to be tested and quantified. Of the 6 qualitative pesticide components, 5 were not detected qualitatively and 1 was detected qualitatively. The laboratory reported the results within 96 hours, and the organization judged the results as qualified for the first time. Conclusion This blind sample assessment has many items, complicated methods and short time. This assessment has improved the technical level of laboratory detection of pesticide residues and laboratory competitiveness.
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