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Point of zero charge (PZC) and double layer adsorption - An equilibrium calculation approach

机译:零电荷点(PZC)和双层吸附-平衡计算方法

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摘要

Solid particles, especially oxides/hydroxides, develop an electrical charge on their surface when submerged in aqueous solution. Parks was able to relate PZC (point of zero charge) of an oxide to its minimum solubility and isoelectric point. Dzombak has compiled an extensive database for adsorption reactions on ferrihydrite surfaces using the double layer theory. The equilibrium calculational program, STABCAL has been used to extend the considerations of Parks and Stumm. The PZC for many hydroxides, complex oxides, and non-oxides have been investigated and the results are reported in the literature. Removal of arsenic and metals by adsorption on ferrihydrite as the substrate has been computed using STABCAL and the computational results are compared to experimental data. Absorbents other than ferrihydrite such as aluminum hydroxide are also discussed.
机译:固体颗粒,特别是氧化物/氢氧化物,浸入水溶液后会在其表面上产生电荷。 Parks能够将氧化物的PZC(零电荷点)与其最小溶解度和等电点联系起来。 Dzombak使用双层理论为水铁矿表面上的吸附反应编辑了一个广泛的数据库。平衡计算程序STABCAL已用于扩展Parks和Stumm的考虑范围。已对许多氢氧化物,复合氧化物和非氧化物的PZC进行了研究,其结果已在文献中报道。使用STABCAL计算了通过吸附在作为基质的水铁矿上的砷和金属的去除,并将计算结果与实验数据进行了比较。还讨论了除亚铁酸盐以外的吸收剂,例如氢氧化铝。

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