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首页> 外文期刊>Food additives & contaminants >Multi-residue analysis of captan, captafol, folpet, and iprodione in cereals using liquid chromatography with tandem mass spectrometry
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Multi-residue analysis of captan, captafol, folpet, and iprodione in cereals using liquid chromatography with tandem mass spectrometry

机译:液相色谱-串联质谱法分析谷物中的克菌丹,克他福尔,福尔佩特和异丙隆

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In this study, we propose an improved analytical method for the multiresidue analysis of captan (plus its metabolite, tetrahydrophthalimide), folpet (plus its metabolite, phthalimide), captafol, and iprodione in cereals using liquid chromatography tandem mass spectrometry (LC-MS/MS). As captan, captafol, and folpet are easily degraded during homogenisation and extraction, samples were comminuted with liquid nitrogen, and both QuEChERS and ethyl acetate-based extraction workflows provided a satisfactory method performance. The optimised LC-MS/MS procedure with electrospray ionisation did not degrade these compounds, and offered sufficient method selectivity by resolving and minimising co-eluting matrix-derived interferences. The method also resolved the problem of non-specific mass spectra that these compounds usually produce on GC-MS analysis involving electron ionisation. The method performance was satisfactory for all 6 compounds at 0.01 mg kg(-1) and higher levels of fortification, and validated as per the SANTE/11813/2017 guidelines of analytical quality control in a wide range of cereals including rice, wheat, sorghum, and corn. The method provides special advantage of simultaneous analysis of captan, and folpet along with their metabolites (tetrahydrophthalimide, and phthalimide, respectively) in combination with captafol, and iprodione in a single chromatographic run. Although iprodione is known to degrade to 3,5-dichloroaniline, since this metabolite is not a part of the residue definition, it was not included in the scope of this method. As the method demonstrates satisfactory selectivity, sensitivity, accuracy, precision, and robustness in a wide range of cereal matrices, it is recommended for regulatory testing of these compounds in cereals.
机译:在这项研究中,我们提出了一种改进的分析方法,用于使用液相色谱串联质谱(LC-MS / MS)对谷物中的硫丹(及其代谢物,四氢邻苯二甲酰亚胺),福尔贝特(及其代谢物,邻苯二甲酰亚胺),captafol和异丙洛酮进行多残留分析。多发性硬化症)。由于Captan,Captafol和Folpet在均质化和萃取过程中容易降解,因此将样品用液氮粉碎,QuEChERS和基于乙酸乙酯的萃取工作流程均提供了令人满意的方法性能。采用电喷雾电离的优化LC-MS / MS程序不会降解这些化合物,并且通过解决和最小化共洗脱基质衍生的干扰物提供了足够的方法选择性。该方法还解决了这些化合物通常在涉及电子电离的GC-MS分析中产生的非特异性质谱问题。在0.01 mg kg(-1)和更高的强化水平下,所有6种化合物的方法性能均令人满意,并根据SANTE / 11813/2017分析质量控制准则对包括米,小麦,高粱在内的多种谷物进行了验证和玉米。该方法具有在单色谱运行中同时分析Captan和Folpet及其代谢产物(分别为四氢邻苯二甲酰亚胺和邻苯二甲酰亚胺)与Captafol和异丙苯二酮组合的特殊优势。尽管已知异丙嗪可降解为3,5-二氯苯胺,但由于该代谢物不是残留物定义的一部分,因此该方法未包括在内。由于该方法在多种谷物基质中表现出令人满意的选择性,灵敏度,准确性,精密度和耐用性,因此建议对谷物中的这些化合物进行法规测试。

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