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Interaction between glyphosate and montmorillonite in the presence of artificial seawater

机译:草甘膦与蒙脱石在人造海水中的相互作用

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摘要

Glyphosate (N- (phosphonomethyl) glycine) is one of the most widely used herbicides in the world. In the literature, there are several studies describing the interaction between glyphosate and clay minerals. However, there is a lack of data of this interaction in marine environments. In this research, we examined the adsorption of glyphosate onto montmorillonite in the presence of artificial seawater. Mössbauer data showed that the interaction of the phosphonate group of glyphosate with Fe of montmorillonite prevents its oxidation to Fe . X-ray diffractograms showed that glyphosate adsorption takes place only onto the montmorillonite surface and not in its interlayers. Infrared spectroscopy data demonstrate that the interaction between glyphosate and montmorillonite could be through the amino group. FT-IR spectra of aqueous solutions of salts of seawater showed that Ca interacts with glyphosate of the phosphonate group, thus causing an increase in its adsorption onto montmorillonite. However, glyphosate dissolved in 0.50 mol L NaCl and 0.034 mol L-1MgCl2 solutions showed the lowest adsorption onto montmorillonite. In addition, the adsorption of glyphosate onto montmorillonite decreased when the NaCl concentration increased. The results fitted the Sips isotherm model, probably because the Ca interacts with glyphosate, making the adsorption process more homogeneous. Thus, n values for Freundlich and Sips isotherm models decreased with an increase in ionic strength. Glyphosate and ions of artificial seawater increased the pH of montmorillonite.
机译:草甘膦(N-(膦酰基甲基)甘氨酸)是世界上使用最广泛的除草剂之一。在文献中,有几项研究描述了草甘膦和粘土矿物之间的相互作用。然而,在海洋环境中缺乏这种相互作用的数据。在这项研究中,我们研究了在人造海水存在下草甘膦在蒙脱石上的吸附。 Mössbauer的数据表明,草甘膦的膦酸酯基团与蒙脱石的Fe相互作用可防止其氧化成Fe。 X射线衍射图表明,草甘膦吸附仅发生在蒙脱土表面,而不发生在其中间层。红外光谱数据表明草甘膦和蒙脱石之间的相互作用可能是通过氨基进行的。海水盐水溶液的FT-IR光谱表明,Ca与膦酸酯基团的草甘膦相互作用,从而导致其在蒙脱石上的吸附增加。然而,草甘膦溶解在0.50 mol L NaCl和0.034 mol L-1MgCl2溶液中对蒙脱石的吸附最低。另外,当NaCl浓度增加时,草甘膦在蒙脱石上的吸附减少。结果符合Sips等温线模型,可能是因为Ca与草甘膦相互作用,使吸附过程更均匀。因此,Freundlich和Sips等温线模型的n值随离子强度的增加而降低。草甘膦和人造海水中的离子增加了蒙脱石的pH值。

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