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首页> 外文期刊>Soil Science >Macroscopic and Extended X-ray Absorption Fine Structure Spectroscopic Investigation of Ligand Effect on Zinc Adsorption to Kaolinite as a Function of pH
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Macroscopic and Extended X-ray Absorption Fine Structure Spectroscopic Investigation of Ligand Effect on Zinc Adsorption to Kaolinite as a Function of pH

机译:宏观和扩展的X射线吸收精细结构光谱研究了配体对锌对高岭石吸附锌的pH的影响

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Adsorption of zinc (Zn) to mineral surfaces is affected by various factors including naturally occurring ligands in soil environment. This study was conducted to elucidate the influence of citrate, humic acid (HA), siderophore desferrioxamine B (DFO-B) and phosphate (PO4-3) on Zn adsorption to kaolinite at varying pH using macroscopic adsorption isotherm and extended X-ray absorption fine structure spectroscopy. Zinc was adsorbed in kaolinite suspensions at Zn: ligand ratio of 1: 1 and pH 4.5 to 7.5. Humic acid and PO4-3 enhanced Zn adsorption throughout the pH range, whereas citrate and DFO-B slightly increased Zn adsorption at approximately pH 5.7 or less but greatly suppressed it at greater than pH 5.7. Extended X-ray absorption fine structure analysis revealed that, at pH 5.5, Zn was adsorbed to kaolinite forming innersphere edge-sharing bidentate linkages in the absence (control) and presence of citrate, HA, and DFO-B. With pH increase to 7.5, the same adsorption geometry was evident in the presence of HA and DFO-B, whereas Zn was incorporated into a Zn-aluminum LDH surface precipitate in the control and formed outer-sphere complexes in the citrate presence. Phosphate precipitated Zn across the pH range studied. Overall, Zn adsorption mechanism of kaolinite varied with specific ligand and pH.
机译:锌(Zn)在矿物表面的吸附受到多种因素的影响,包括土壤环境中天然存在的配体。进行了这项研究以阐明柠檬酸,腐殖酸(HA),铁载体去铁胺B(DFO-B)和磷酸盐(PO4-3)在不同pH下使用宏观吸附等温线和扩展X射线吸收对锌吸附到高岭石的影响精细结构光谱学。锌以1:1的Zn:配体比例和pH 4.5至7.5吸附在高岭石悬浮液中。腐殖酸和PO4-3在整个pH范围内均增强了Zn的吸附,而柠檬酸盐和DFO-B在pH约为5.7或更低时略微增加了Zn的吸附,但在pH大于5.7时却大大抑制了锌的吸附。扩展的X射线吸收精细结构分析表明,在不存在(对照)和存在柠檬酸盐,HA和DFO-B的情况下,pH在5.5时,Zn吸附到高岭石上,形成内球边缘共享双齿键。随着pH值增加到7.5,在HA和DFO-B的存在下,相同的吸附几何结构变得明显,而在对照物中,将Zn掺入Zn-铝LDH表面沉淀物中,并在柠檬酸盐的存在下形成外球络合物。在所研究的pH范围内,磷酸盐使Zn沉淀。总体而言,高岭石对锌的吸附机制随特定的配体和pH值而变化。

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