首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Interaction of copper and fulvic acid at the hematite-water interface
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Interaction of copper and fulvic acid at the hematite-water interface

机译:铜与黄腐酸在赤铁矿-水界面的相互作用

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摘要

The influence of surface-bound fulvic acid on the sorption of Cu(II) to colloidal hematite particles was studied experimentally and the results were compared with model calculations based on the linear additivity assumption. In the first step, proton and Cu binding to colloidal hematite particles and to purified fulvic acid was studied by batch equilibration and ion-selective electrode titration experiments, respectively. The sorption data for these binary systems were modeled with a basic Stern surface complexation model for hematite and the NICA-Donnan model for fulvic acid. In the second step, pH-dependent sorption of Cu and fulvic acid in ternary systems containing Cu, hematite, and fulvic acid in NaNO_3 electrolyte solutions was investigated in batch sorption experiments. Sorption of fulvic acid to the hematite decreased with increasing pH (pH 3-10) and decreasing ionic strength (0.01-0.1 M NaNO_3), while the presence of 22 μM Cu had a small effect on fulvic acid sorption, only detectable at low ionic strength (0.01 M). Sorption of Cu to the solid phase separated by centrifugation was strongly affected y the presence of fulvic acid. Below pH 6, sorption of Cu to the solid phase increased by up to 40% compared with the pure hematite. Above pH 6, the presence of fulvic acid resulted in a decrease in Cu sorption due to increasing concentrations of dissolved metal-organic complexes. At low ionic strength (0.01 M), the effects of fulvic acid on Cu sorption to the solid phase were more pronounced than at higher ionic strength (0.1 M). Comparison of the experimental data with model calculations shows that Cu sorption in ternary hematite-fulvic acid systems is systematically underestimated by up to 30% using the linear additivity assumption. Therefore, specific interactions between organic matter and trace metal cations at mineral surfaces must be taken into account when applying surface complexation models to soils or sediments which contain oxides and natural organic matter.
机译:实验研究了表面结合的富里酸对铜(II)吸附在胶体赤铁矿颗粒上的影响,并将结果与​​基于线性可加性假设的模型计算进行了比较。第一步,分别通过间歇平衡和离子选择电极滴定实验研究了质子和Cu与胶体赤铁矿颗粒和纯化的黄腐酸的结合。这些二元体系的吸附数据使用赤铁矿的基本Stern表面络合模型和黄腐酸的NICA-Donnan模型进行建模。在第二步中,通过分批吸附实验研究了pH和pH依赖性的NaNO_3电解质溶液中含Cu,赤铁矿和黄腐酸的三元体系中Cu和黄腐酸的吸附。随着pH值(pH 3-10)和离子强度(0.01-0.1 M NaNO_3)的增加,黄腐酸对赤铁矿的吸附减少,而22μMCu的存在对黄腐酸的吸附影响较小,仅在低离子浓度下可检测到强度(0.01 M)。富里酸的存在强烈地影响了通过离心将铜吸附到固相中。在低于pH 6的条件下,与纯赤铁矿相比,Cu对固相的吸附增加了40%。在pH值高于6时,由于溶解的金属-有机配合物的浓度增加,黄腐酸的存在导致Cu吸附量降低。在低离子强度(0.01 M)下,富里酸对Cu吸附到固相的影响比在较高离子强度(0.1 M)下更明显。实验数据与模型计算的比较表明,使用线性可加性假设,系统地低估了三元赤铁矿-富里酸体系中的铜吸附,最多可低30%。因此,在对含有氧化物和天然有机物的土壤或沉积物应用表面络合模型时,必须考虑有机物与矿物表面微量金属阳离子之间的特定相互作用。

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