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PHOSPHATE AND GLYPHOSATE ADSORPTION BY HEMATITE AND FERRIHYDRITE AND COMPARISON WITH OTHER VARIABLE-CHARGE MINERALS

机译:赤铁矿和亚铁酸盐对磷酸盐和草甘膦的吸附以及与其他可变电荷矿物的比较

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Adsorption by synthetic 2-line ferrihydrite and hematite of glyphosate and phosphate, separately and together, was compared with adsorption results for goethite, gibbsite and two kaolinites in order to determine adsorption differences and similarities, in particular competition and phosphate preference, of these variable-charge minerals. Hematite rapidly adsorbed both compounds, while adsorption by ferrihydrite was slow, in particular of glyphosate, probably because of very slow diffusion of the bulky glyphosate molecules into interior sites in ferrihydrite particles. Accordingly, the Langmuir adsorption capacity of glyphosate (G_(AC)) was considerably smaller (1.85 μmol m~(-2)) than G_(AC) for hematite (2.61 μmol m~(-2)). The phosphate adsorption capacities (P_(AC)) for ferrihydrite and hematite were more alike, 2.91 μmol m~(-2) and 2.85 μmol m~(-2), respectively. Differences between surface coordination (mono- or bidentate) may also contribute to the observed differences but conflicting information about the nature of the surface complexes makes this a difficult contributary factor to assess. The minerals were found to exhibit great variation in extent of competition and phosphate preference. Little competition and phosphate preference characterized hematite adsorption, while phosphate almost completely outcompeted glyphosate on goethite; ferrihydrite adsorption fell between these extremes. These differences may be attributed to different numbers of common (competitive) and specific (selective) adsorption sites on the three Fe oxides with a decreasing number of common sites in the order: goethite » ferrihydrite > hematite, i.e. almost all goethite sites are common but with strong phosphate preference, while most hematite sites are specific for either glyphosate or phosphate. Alternatively, the result may be explained by adsorption in more planes, e.g. glyphosate adsorption onto the inner-Helmholtz-plane-adsorbed phosphate. For all six minerals compared, desorption of glyphosate following phosphate addition was found to be significantly correlated with the difference between the amounts of phosphate and glyphosate adsorbed indicating that this difference may be used as a competition index for predicting the influence of phosphate on glyphosate adsorption.
机译:将草甘膦和磷酸盐的合成两线铁水铁矿和赤铁矿分别和一起吸附,与针铁矿,三水铝石和两种高岭石的吸附结果进行比较,以确定这些变量的吸附差异和相似性,尤其是竞争性和磷酸盐偏好性,充电矿物质。赤铁矿迅速吸附了这两种化合物,而水铁矿(尤其是草甘膦)的吸附缓慢,这可能是由于笨重的草甘膦分子扩散到铁水合物颗粒内部的位置非常缓慢。因此,草甘膦(G_(AC))的Langmuir吸附容量(1.85μmolm·(-2))比赤铁矿(2.61μmolm·(-2))的G_(AC)小得多。亚铁酸盐和赤铁矿的磷酸盐吸附能力(P_(AC))相似,分别为2.91μmolm〜(-2)和2.85μmolm〜(-2)。表面配位之间的差异(单齿或双齿)也可能导致观察到的差异,但是有关表面配合物性质的信息冲突使这成为难以评估的因素。发现这些矿物在竞争程度和磷酸盐偏爱方面表现出很大的差异。竞争少和磷酸盐偏爱是赤铁矿吸附的特征,而磷酸盐几乎完全优于针铁矿上的草甘膦。在这些极端之间,水铁矿的吸附下降。这些差异可能归因于三种铁氧化物上不同数量的普通(竞争性)和特定(选择性)吸附位点,并且其公共位点的数量递减顺序为:针铁矿»三水铁矿>赤铁矿,即几乎所有针铁矿位点都是常见的,但具有强烈的磷酸盐偏爱,而大多数赤铁矿位点都对草甘膦或磷酸盐具有特异性。或者,可以通过在更多平面中吸附来解释结果。草甘膦吸附到内部亥姆霍兹平面吸附的磷酸盐上。对于所比较的所有六种矿物,发现添加磷酸盐后草甘膦的解吸与磷酸盐和草甘膦吸附量之间的差异显着相关,这表明该差异可用作预测磷酸盐对草甘膦吸附影响的竞争指数。

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