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Identification and quantification of benzimidazole metabolites of thiophonate-methyl sprayed on celery cabbage using SiO_2@NiO solid-phase extraction in combination with HPLC-MS/MS 被引量:1
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作者 Qiongwei Yu Shijie Liu +3 位作者 Feng Zheng Huaming Xiao Hongyan Guan Yuqi Feng 《Chinese Chemical Letters》 SCIE CAS CSCD 2020年第2期482-486,共5页
Thiophonate-methyl(TPM) is one of fungicides and pesticides widely used in agriculture field.However,the residue of its benzimidazole(BZD) metabolites in related agricultural products poses a potential risk to consume... Thiophonate-methyl(TPM) is one of fungicides and pesticides widely used in agriculture field.However,the residue of its benzimidazole(BZD) metabolites in related agricultural products poses a potential risk to consumers.In this paper,nickel oxide nanoparticle-deposited silica(SiO_2@NiO) composite was used for the selective enrichment and purification of TPM's BZD metabolites in celery cabbage sprayed with TPM.Meanwhile,high-performance liquid chromatography coupled with precursor ion scan-mass spectrometry(HPLC-PIS-MS) and high-resolution MS/MS analysis(HR-MS/MS) was utilized for their qualitative and quantitative analysis.Twenty-one potential TPM's BZD metabolites were found and four of them were identified.One metabolite was discovered for the first time.Besides,a robust and sensitive quantitative method was developed with good linearities(R^2> 0.9972) within a wide range of 10.00-1000 ng/g.The detection limits of three known TPM's metabolites were within the range of 3.20-4.90 ng/g.Relative standard deviations(RSDs) of intra-day and inter-day precisions were less than 18.3%,which showed perfect reproducibility.The method was successfully applied to monitoring TPM's BZD metabolites in celery cabbage sprayed with TPM and the concentration versus time curves of TPM's metabolites in celery cabbage were plotted.This method is expected to be used to monitor BZD residues in various fruits and vegetables. 展开更多
关键词 Thiophonate-methyl BENZIMIDAZOLE METABOLITES Precursor ion scan-mass spectrometry High-resolution MS/MS analysis CELERY CABBAGE
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质子转移反应质谱在食品挥发性有机物检测分析中的应用 被引量:6
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作者 申丹宁 赵学玒 +3 位作者 孙运 汪曣 蒋学慧 宓捷波 《食品科学》 EI CAS CSCD 北大核心 2017年第23期289-297,共9页
挥发性有机化合物(volatile organic compounds,VOCs)是食品风味的主要组成成分,同时也包含了食品特性的大量信息。直接检测食品释放的VOCs来进行食品科学和技术方面的研究具有便利的优点,已成为食品检测领域的重要研究方向。质子转移... 挥发性有机化合物(volatile organic compounds,VOCs)是食品风味的主要组成成分,同时也包含了食品特性的大量信息。直接检测食品释放的VOCs来进行食品科学和技术方面的研究具有便利的优点,已成为食品检测领域的重要研究方向。质子转移反应质谱(proton transfer reaction-mass spectrometry,PTR-MS)作为一种痕量VOCs检测技术,具有灵敏度高、响应时间短、操作简单且样品无需前处理等优点,可以在几秒钟内获得VOCs的绝对浓度,因此能够实时监测食品相关过程中VOCs的变化情况,对食品安全监督、质量控制以及新产品的研发等提供有力帮助。本文首先介绍了PTR-MS的工作原理、基本结构及发展现状,然后按照PTR-MS的全谱图扫描检测和VOCs实时监测两种检测方式详细总结了其在食品领域的应用和研究现状,并对其发展前景做出了展望。 展开更多
关键词 挥发性有机化合物 食品检测 质子转移反应质谱 全谱图扫描 实时监测
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