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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Acid base reactions, phosphate and arsenate complexation, and their competitive adsorption at the surface of goethite in 0.7 M NaCl solution
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Acid base reactions, phosphate and arsenate complexation, and their competitive adsorption at the surface of goethite in 0.7 M NaCl solution

机译:在0.7 M NaCl溶液中酸碱反应,磷酸盐和砷酸盐的络合及其在针铁矿表面的竞争性吸附

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Potentiometric titrations of the goethite-water interface were carried out at 25 degreesC in 0.1, 0.3 and 0.7 M NaCl solutions. The acid/base properties of goethice at pH > 4 in a 0.7 M NaCl solution can be reproduced successfully using either the Constant Capacitance (CCM), the Basic Stern (BSM) or the Triple Layer models (TLM) when two surface acidity constants are considered. Phosphate and arsenate complexation at the surface of goethite was studied in batch adsorption experiments. The experiments were conducted in 0.7 mol/L NaCl solutions at 25 degreesC in the pH range of 3.0 to 10.0. Phosphate shows a strong affinity for the goethite surface and the amount of phosphate adsorbed decreases with increasing pH. Phosphate complexation is described using a model consisting of three monodentate surface complexes. Arsenate shows a similar adsorption pattern on goethite but a higher affinity than phosphate. A model including three surface complexation constants describes the arsenate adsorption at [AsO4](init) = 23 and 34 mu mol/L. The model prediction, however, overestimates arsenate adsorption at [AsO4](init) = 8.8 mu mol/L. The goethite surface acidity constants as well as the preceding phosphate and arsenate surface complexation constants were evaluated by the CCM and BSM with the aid of the computer program FITEQL, version 2.0. The experimental investigation of phosphate and arsenate competitive adsorption in 0.7 mol/L NaCl was performed at [PO4]/[AsO4] ratios of 1:1, 2.5:1 and 5:1 with [AsO4](init) = 9.0 mu mol/L and at a [PO4]/[AsO4] ratio of 1:1 with [AsO4](init) = 22 mu mol/L. The surface complexation of arsenate decreases significantly in competitive adsorption experiments and the decrease is proportional to the amount of phosphate present. Phosphate adsorption is also reduced but less drastically in competitive adsorption and is not affected significantly by incremental additions of arsenate at pH > 7. The equilibrium model derived by combining the single oxyanion subsystems predicts the shape of the competitive adsorption data but fails to reproduce it, quantitatively. In competitive experiments, phosphate adsorption is underpredicted whereas arsenate adsorption is overpredicted. The inability of the models to accurately predict competitive adsorption may be due to site heterogeneity, adsorption kinetics, as well as the limitations of the present models. Copyright (C) 2001 Elsevier Science Ltd. [References: 68]
机译:针铁矿-水界面的电位滴定是在25°C,0.1、0.3和0.7 M NaCl溶液中进行的。在0.7 M NaCl溶液中pH> 4的情况下,当使用两个表面酸度常数作为常数时,可以使用恒定电容(CCM),碱性船尾(BSM)或三层模型(TLM)成功复制甘地精的酸/碱性质。考虑过的。通过分批吸附实验研究了针铁矿表面的磷酸盐和砷酸盐络合。实验是在25℃,pH范围为3.0至10.0的0.7 mol / L NaCl溶液中进行的。磷酸盐对针铁矿表面表现出很强的亲和力,并且随着pH值的增加,吸附的磷酸盐量减少。使用由三个单齿表面复合物组成的模型描述了磷酸盐复合物。砷酸盐在针铁矿上显示出相似的吸附模式,但比磷酸盐具有更高的亲和力。包含三个表面络合常数的模型描述了[AsO4](init)= 23和34μmol / L下的砷酸盐吸附。然而,模型预测高估了[AsO4](init)= 8.8μmol / L时砷酸盐的吸附。通过CCM和BSM借助计算机程序FITEQL,版本2.0,评估针铁矿表面的酸度常数以及之前的磷酸盐和砷酸盐表面络合常数。 [PO4] / [AsO4]比例为1:1、2.5:1和5:1,[AsO4](init)= 9.0μmol/ L时,在0.7 mol / L NaCl中进行磷酸盐和砷酸盐竞争性吸附的实验研究。 L和[PO4] / [AsO4]比例为1:1,[AsO4](init)= 22μmol / L。在竞争性吸附实验中,砷酸盐的表面络合物显着降低,并且降低与存在的磷酸盐量成正比。磷酸盐吸附也会减少,但在竞争性吸附中的吸收却不那么剧烈,并且在pH> 7时砷的增量添加不会显着影响磷酸盐。通过结合单个含氧阴离子子系统得出的平衡模型可以预测竞争性吸附数据的形状,但无法复制它,数量上。在竞争性实验中,磷酸盐吸附被低估,而砷酸盐吸附被高估。模型无法准确预测竞争性吸附可能是由于位点异质性,吸附动力学以及当前模型的局限性所致。版权所有(C)2001 Elsevier Science Ltd. [参考:68]

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