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Environ Technol. 2014 Nov-Dec;35(21-24):3153-64. doi: 10.1080/09593330.2014.934739. Epub 2014 Jul 11.
The effects of calcium on the equilibrium adsorption capacity of As(III) and As(V) onto iron oxide-coated sand (IOCS) and granular ferric hydroxide (GFH) were investigated through batch experiments, rapid small-scale column tests (RSSCT) and kinetics modelling. Batch experiments showed that at calcium concentrations ≤ 20 mg/L, high As(III) and As(V) removal efficiencies by IOCS and GFH are achieved at pH 6. An increase of the calcium concentration to 40 and 80 mg/L reversed this trend, giving higher removal efficiencies at higher pH (8). The adsorption capacities of IOCS and GFH at an equilibrium arsenic concentration of 10 μg/L were found to be between 2.0 and 3.1 mg/g for synthetic water without calcium and between 2.8 and 5.3 mg/g when 80 mg/L of calcium was present at the studied pH values. After 10 hours of filter run in RSSCT, approximately 1000 empty bed volumes, the ratios of C/Co for As(V) were 26% and 18% for calcium-free model water; and only 1% and 0.2% after addition of 80 mg/L of Ca for filter columns with IOCS and GFH, respectively. The adsorption of As(III) and As(V) onto GFH follows a second-order reaction, with and without addition of calcium. The adsorption of As(III) and As(V) onto IOCS follows a first-order reaction without calcium addition, and moves to the second-reaction-order kinetics when calcium is added. Based on the intraparticle diffusion model, the main controlling mechanism for As(III) adsorption is intraparticle diffusion, while surface diffusion contributes greatly to the adsorption of As(V).
通过批量实验、快速小柱试验(RSSCT)和动力学模型,研究了钙对氧化铁涂层砂(IOCS)和颗粒状氢氧化铁(GFH)吸附砷(III)和砷(V)平衡吸附容量的影响。批量实验表明,在钙浓度≤20mg/L 时,IOCS 和 GFH 在 pH 值为 6 时可实现高砷(III)和砷(V)去除率。当钙浓度增加到 40 和 80mg/L 时,这种趋势发生逆转,在较高 pH 值(8)下,去除率更高。在没有钙的合成水中,当平衡砷浓度为 10μg/L 时,IOCS 和 GFH 的吸附容量分别为 2.0 至 3.1mg/g;当研究 pH 值下存在 80mg/L 的钙时,吸附容量分别为 2.8 至 5.3mg/g。在 RSSCT 中过滤 10 小时后,约 1000 个空床体积,无钙模型水中的 As(V)的 C/Co 比值分别为 26%和 18%;而加入 80mg/L 钙后,IOCS 和 GFH 滤柱的 C/Co 比值分别仅为 1%和 0.2%。砷(III)和砷(V)在 GFH 上的吸附遵循二级反应,无论是否添加钙。砷(III)和砷(V)在无钙添加的情况下在 IOCS 上的吸附遵循一级反应,而当添加钙时,吸附动力学转移到二级反应。根据内扩散模型,砷(III)吸附的主要控制机制是内扩散,而表面扩散对砷(V)的吸附贡献很大。