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草甘膦在针铁矿上的吸附:表面络合物的分子表征

Adsorption of glyphosate on goethite: molecular characterization of surface complexes.

作者信息

Sheals Julia, Sjöberg Staffan, Persson Per

机构信息

Department of Chemistry, Inorganic Chemistry, Umeå University, Sweden.

出版信息

Environ Sci Technol. 2002 Jul 15;36(14):3090-5. doi: 10.1021/es010295w.

Abstract

As a component of herbicides, the fate of glyphosate (PMG) in the environment is of significant interest. The nature of PMG adsorption on mineral surfaces plays a significant role in the degradation of PMG. The adsorption of PMG on goethite (alpha-FeOOH) has been studied as a function of pH and PMG concentration. Adsorption was investigated with batch experiments, attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR), and X-ray photoelectron spectroscopy (XPS). The N 1s line in XPS spectra showed deprotonation of the amine group of PMG (NH2+) with increasing pH. IR analyses showed no evidence for the interaction of PMG's carboxylate group with the goethite surface, while the phosphonate group formed inner-sphere complexes. There is evidence for intramolecular hydrogen bonding between NH2+ and both the carboxylate and the phosphonate groups at low pH. Intramolecular hydrogen bonding is lost when the amine group is deprotonated, and the trend in intramolecular hydrogen bonding between NH2+ and phosphonate shows that PMG adsorbs via predominantly monodentate complexation. A minor quantity of bidentate complexes is thought to form both at near-neutral pH and when the surface concentration of PMG is low. While the phosphonate group of PMG binds directly, the carboxylate group remains relatively "free" from complexation with goethite, leaving it subject to degradation and/or complexation with metal ions present in the environment.

摘要

作为除草剂的一个成分,草甘膦(PMG)在环境中的归宿备受关注。PMG在矿物表面的吸附性质在其降解过程中起着重要作用。已研究了PMG在针铁矿(α-FeOOH)上的吸附与pH值和PMG浓度的关系。通过批量实验、衰减全反射傅里叶变换红外光谱(ATR-FTIR)和X射线光电子能谱(XPS)对吸附进行了研究。XPS光谱中的N 1s谱线显示,随着pH值升高,PMG的胺基(NH2+)发生去质子化。红外分析表明,没有证据表明PMG的羧基与针铁矿表面发生相互作用,而膦酸基团形成了内球络合物。有证据表明,在低pH值下,NH2+与羧基和膦酸基团之间存在分子内氢键。当胺基去质子化时,分子内氢键消失,NH2+与膦酸基团之间分子内氢键的趋势表明,PMG主要通过单齿络合吸附。在接近中性的pH值以及PMG表面浓度较低时,认为会形成少量的双齿络合物。虽然PMG的膦酸基团直接结合,但羧基与针铁矿的络合相对“自由”,使其易于被环境中存在的金属离子降解和/或络合。

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