Department of Environmental Engineering, Kyungpook National University, 80 Daehak-ro, Buk-gu, Daegu, 41566, South Korea.
Environ Sci Pollut Res Int. 2018 Aug;25(22):21721-21730. doi: 10.1007/s11356-018-2328-0. Epub 2018 May 22.
Mercury (Hg), one of the most toxic substances in nature, has long been released during the anthropogenic activity. A correct description of the adsorptive behavior of mercury is important to gain a better insight into its fate and transport in natural mineral surfaces, which will be a prerequisite for the development of surface complexation model for the adsorption processes. In the present study, simulation experiments on macroscopic Hg(II) sorption by gibbsite (α-Al(OH)), a representative aluminum (hydr)oxide mineral, were performed using the charge distribution and multi-site complexation (CD-MUSIC) approach with 1-pK triple plane model (TPM). For this purpose, several data sets which had already been reported in the literature were employed to analyze the effect of pH, ionic strength, and co-exisiting ions (NO and Cl) on the Hg(II) adsorption onto gibbsite. Sequential optimization approach was used to determine the acidity and asymmetric binding constants for electrolyte ions and the affinity constants of the surface species through the model simulation using FITEQLC (a modified code of FITEQL 4.0). The model successfully incorporated the presence of inorganic ligands at the dominant edge (100) face of gibbsite with consistent surface species, which was evidenced by molecular scale analysis. The model was verified with an independent set of Hg(II) adsorption data incorporating carbonate binding species in an open gibbsite-water system.
汞(Hg)是自然界中最具毒性的物质之一,长期以来一直通过人为活动释放。正确描述汞的吸附行为对于深入了解其在天然矿物表面的命运和迁移至关重要,这将是开发吸附过程表面络合模型的前提条件。在本研究中,使用电荷分布和多点络合(CD-MUSIC)方法与 1-pK 三重平面模型(TPM),通过宏观模拟实验研究了三水铝石(α-Al(OH))对汞(II)的吸附。为此,利用文献中已经报道的几个数据集,分析了 pH 值、离子强度和共存离子(NO 和 Cl)对三水铝石吸附汞(II)的影响。通过使用 FITEQLC(FITEQL 4.0 的修改代码)对模型进行模拟,采用顺序优化方法确定了电解质离子的酸度和不对称结合常数以及表面物种的亲和常数。该模型成功地将无机配体纳入三水铝石优势棱(100)面,通过分子尺度分析证明了该模型的合理性。该模型通过在开放的三水铝石-水体系中包含碳酸盐结合物种的汞(II)吸附的独立数据集得到了验证。