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Electrospray ionization collision-induced dissociation mass spectrometry: a tool to characterize synthetic polyaminocarboxylate ferric chelates used as fertilizers

机译:电喷雾电离碰撞诱导解离质谱:一种表征用作肥料的合成聚氨基羧酸铁螯合物的工具

摘要

Fertilizers based on synthetic polyaminocarboxylate ferric chelates have been known since the 1950s to be successful in supplying Fe to plants. In commercial Fe(III)-chelate fertilizers, a significant part of the water-soluble Fe-fraction consists of still uncharacterized Fe byproducts, whose agronomical value is unknown. Although collision-induced dissociation (CID) tandem mass spectrometry (MS/ MS) is a valuable tool for the identification of such compounds, no fragmentation data have been reported for most Fe(III)-chelate fertilizers. The aim of this study was to characterize the CID-MS2 fragmentation patterns of the major synthetic Fe(III)-chelates used as Fe-fertilizers, and subsequently use this technique for the characterization of commercial fertilizers. Quadrupole-time-of-flight (QTOF) and spherical ion trap mass analyzers equipped with an electrospray ionization (ESI) source were used. ESI-CID-MS2 spectra obtained were richer when using the QTOF device. Specific differences were found among Fe(III)-chelate fragmentation patterns, even in the case of positional isomers. The analysis of a commercial Fe(III)-chelate fertilizer by high-performance liquid chroma-tography (HPLC) coupled to ESI-MS(QTOF) revealed two previously unknown, Fe-containing compounds, that were successfully identified by a comprehensive comparison of the ESI-CID-MS2(QTOF) spectra with those of pure chelates. This shows that HPLC/ESI-CID-MS2(QTOF), along with the Fe(III)-chelate fragmentation patterns, could be a highly valuable tool to directly characterize the water-soluble Fe fraction in Fe(III)-chelate fertilizers. This could be of great importance in issues related to crop Fe-fertilization, both from an agricultural and an environmental point of view.
机译:自1950年代以来,就已经知道基于合成的聚氨基羧酸铁螯合物的肥料可以成功地为植物提供铁。在商业化的Fe(III)-螯合物肥料中,水溶性Fe-馏分的很大一部分由仍未表征的Fe副产物组成,其农用价值尚不清楚。尽管碰撞诱导解离(CID)串联质谱(MS / MS)是鉴定此类化合物的有价值的工具,但大多数Fe(III)-螯合肥料的碎片化数据尚未见报道。这项研究的目的是表征用作铁肥的主要合成Fe(III)螯合物的CID-MS2碎裂模式,随后将该技术用于表征商业化肥。使用配备了电喷雾电离(ESI)源的四极飞行时间(QTOF)和球形离子阱质量分析仪。使用QTOF设备时,获得的ESI-CID-MS2光谱更丰富。即使在位置异构体的情况下,Fe(III)-螯合物的碎片形式之间也存在特定差异。通过高效液相色谱(HPLC)结合ESI-MS(QTOF)对商品化的Fe(III)螯合物肥料进行分析,发现了两种以前未知的含铁化合物,这些化合物已通过对以下化合物的全面比较而成功鉴定ESI-CID-MS2(QTOF)光谱与纯螯合物的光谱。这表明HPLC / ESI-CID-MS2(QTOF)以及Fe(III)-螯合物的碎裂模式可能是直接表征Fe(III)-螯合物肥料中水溶性Fe组分的极有价值的工具。从农业和环境的角度来看,这在与作物铁肥相关的问题中可能非常重要。

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