首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Determination of synthetic ferric chelates used as fertilizers by liquid chromatography-electrospray/mass spectrometry in agricultural matrices
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Determination of synthetic ferric chelates used as fertilizers by liquid chromatography-electrospray/mass spectrometry in agricultural matrices

机译:液相色谱-电喷雾/质谱法测定农用基质中用作肥料的合成铁螯合物

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摘要

A high-performance liquid chromatography-electrospray ionization/mass spectrometry (time of flight) method has been developed for the simultaneous determination of synthetic Fe(III)-chelates used as fertilizers. Analytes included the seven major Fe(III)-chelates used in agriculture, Fe(III)-EDTA, Fe(III)-DTPA, Fe(III)-HEDTA, Fe(III)-CDTA, Fe(III)-o,oEDDHA, Fe(III)-o,pEDDHA, and Fe(III)-EDDHMA and the method was validated using isotope labeled Fe-57(III)-chelates as internal standards. Calibration curves had R values in the range 0.9962-0.9997. Limits of detection and quantification were in the ranges 3-164 and 14-945 pmol, respectively. Analyte concentrations could be determined between the limits of quantification and 25 g,M (racemic and meso Fe(III)-o,oEDDHA and Fe(III)-EDDHMA) or 50 AM (Fe(III)EDTA, Fe(III)-HEDTA, Fe(III)-DTPA, Fe(III)-CDTA and Fe(III)-o,pEDDHA). The average intraday repeatability values were similar to 0.5 and 5% for retention time and peak area, respectively, whereas the interday repeatability values were similar to 0.7 and 8% for retention time and peak area, respectively. The method was validated using four different agricultural matrices, including nutrient solution, irrigation water, soil solution, and plant xylem exudates, spiked with Fe(III)-chelate standards and their stable isotope-labeled corresponding chelates. Analyte recoveries found were in the ranges 92-101% (nutrient solution), 89-102% (irrigation water), 82-100% (soil solution), and 70-111% (plant xylem exudates). Recoveries depended on the analyte, with Fe(III)-EDTA and Fe(III)-DTPA showing the lowest recoveries (average values of 87 and 88%, respectively, for all agricultural matrices used), whereas for other analytes recoveries were between 91 and 101%. The method was also used to determine the real concentrations of Fe(III)-chelates in commercial fertilizers. Furthermore, the method is also capable of resolving two more synthetic Fe(III)-chelates, Fe(III)-EDDHSA and Fe(III)-EDDCHA, whose exact quantification is not currently possible because of lack of commercial standards.
机译:开发了一种高效液相色谱-电喷雾电离/质谱(飞行时间)方法,用于同时测定用作肥料的合成Fe(III)-螯合物。分析物包括用于农业的七种主要Fe(III)螯合物,Fe(III)-EDTA,Fe(III)-DTPA,Fe(III)-HEDTA,Fe(III)-CDTA,Fe(III)-o, oEDDHA,Fe(III)-o,pEDDHA和Fe(III)-EDDHMA,并且该方法使用同位素标记的Fe-57(III)-螯合物作为内标进行了验证。校准曲线的R值在0.9962-0.9997范围内。检测和定量的极限分别在3-164和14-945 pmol范围内。可以在定量限和25 g,M(外消旋和内消旋Fe(III)-o,oEDDHA和Fe(III)-EDDHMA)或50 AM(Fe(III)EDTA,Fe(III)- HEDTA,Fe(III)-DTPA,Fe(III)-CDTA和Fe(III)-o,pEDDHA)。对于保留时间和峰面积,平均日间重复性值分别类似于0.5和5%,而对于保留时间和峰面积,平均日间重复性值分别类似于0.7和8%。该方法已使用四种不同的农业基质(包括营养液,灌溉水,土壤溶液和木质部木质素分泌液)进行了验证,其中掺入了Fe(III)-螯合物标准品和稳定的同位素标记的相应螯合物。发现的分析物回收率范围为92-101%(营养液),89-102%(灌溉水),82-100%(土壤溶液)和70-111%(植物木质部分泌液)。回收率取决于分析物,其中Fe(III)-EDTA和Fe(III)-DTPA的回收率最低(所有使用的农业基质的平均值分别为87%和88%),而其他分析物的回收率在91之间和101%。该方法还用于确定商业肥料中Fe(III)-螯合物的实际浓度。此外,该方法还能够分离出另外两种合成的Fe(III)-螯合物,Fe(III)-EDDHSA和Fe(III)-EDDCHA,由于缺乏商业标准,目前无法精确定量。

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