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Spatially resolved quantification of agrochemicals on plant surfaces using energy dispersive X-ray microanalysis

机译:使用能量色散X射线微分析技术对植物表面农药的空间分辨定量

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In the present study the principle of energy dispersive X-ray microanalysis (EDX), i.e. the detection of elements based on their characteristic X-rays, was used to localise and quantify organic and inorganic pesticides on enzymatically isolated fruit cuticles. Pesticides could be discriminated from the plant surface because of their distinctive elemental composition.RESULTS: Findings confirm the close relation between net intensity (Nl) and area covered by the active ingredient (Al area). Using wide and narrow concentration ranges of glyphosate and glufosinate, respectively, results showed that quantification of Al requires the selection of appropriate regression equations while considering Nl, peak-to-background (P/B) ratio, and Al area. The use of selected internal standards (ISs) such as Ca(N03)2 improved the accuracy of the quantification slightly but led to the formation of particular, non-typical microstructured deposits. The suitability of SEM-EDX as a general technique to quantify pesticides was evaluated additionally on 14 agrochemicals applied at diluted or regular concentration.CONCLUSION: Among the pesticides tested, spatial localisation and quantification of Al amount could be done for inorganic copper and sulfur as well for the organic agrochemicals glyphosate, glufosinate, bromoxynil and mancozeb.
机译:在本研究中,能量色散X射线微分析(EDX)的原理(即基于特征X射线的元素检测)用于对酶法分离的水果角质层上的有机和无机农药进行定位和定量。由于其独特的元素组成,因此可以从植物表面区分农药。结果:研究结果证实了净强度(N1)与有效成分覆盖的面积(Al面积)之间的密切关系。结果分别使用草甘膦和草铵膦的宽和窄浓度范围,结果表明,对Al进行定量分析时需要选择适当的回归方程,同时考虑N1,峰-背景(P / B)比和Al面积。使用诸如Ca(NO3)2之类的选定内标(ISs)可以稍微提高定量精度,但会导致形成特殊的非典型微结构化沉积物。此外,还对14种以稀释或标准浓度施用的农药进行了SEM-EDX通用定量农药的评价。结论:在所测试的农药中,无机铜和硫也可以进行Al的空间定位和定量用于有机农业化学品草甘膦,草铵膦,溴苯腈和代森锰锌。

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