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Potential for use of industrial waste materials as filter media for removal of Al, Mo, As, V and Ga from alkaline drainage in constructed wetlands - Adsorption studies

机译:使用工业废料作为过滤介质从人工湿地中的碱性排水中去除Al,Mo,As,V和Ga的潜力-吸附研究

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摘要

The potential to remove Al, Mo, V, As and Ga from alkaline (pH 8.0-8.6) drainage originating from seawater neutralized bauxite processing residue storage areas using constructed wetland technology was studied in a laboratory study. Bauxite processing residue sand, bauxite, alum water treatment sludge and blast furnace slag were investigated as potential active filter materials. Al was shown to precipitate as Al(OH) in the pH range 7.0-8.0 in aqueous solution and 6.0-8.5 in the presence of silica sand particles that provided a surface for nucleation. For V As Mo and Ga, adsorption to the surfaces of the adsorbents decreased greatly at elevated pH values (>pH 6-9). Water treatment sludge and bauxite had a greater ability to adsorb V, As and Mo at high pH (As and V at pH 7-9 and Mo at pH 5-7) than processing sand and slag. Adsorption isotherm data for As and V onto all four adsorbent than processing sand and slag. Adsorption isotherm data for As and V onto all four adsorbent materials fitted equally well to the Langmuir and Freundlich equations but for Ga, and to a lesser extent Mo, the Freundlich equation gave higher R values. For all four ions, the maximum adsorption capacity (Langmuir value q) was greatest for water treatment sludge. Bauxite adsorbed more Mo, Ga and V than residue sand or slag. The pseudo-second order equation gave a better fit to the experimental kinetic data than the pseudo-first order model suggesting that chemisorption rather than diffusion/exchange was the rate limiting step to adsorption. It was concluded that water treatment sludge and bauxite were the most effective adsorbents and that for effective removal of the target ions the pH of the drainage water needs to be decreased to 6.0-7.0.
机译:在实验室研究中,研究了利用人工湿地技术从海水中和的铝土矿加工残渣存储区中碱性(pH 8.0-8.6)排水中去除Al,Mo,V,As和Ga的潜力。研究了铝土矿加工残留砂,铝土矿,明矾水处理污泥和高炉矿渣作为潜在的活性过滤材料。在pH范围为7.0-8.0的水溶液中,在6.0-8.5的pH范围内,在提供成核表面的硅砂颗粒存在下,Al以Al(OH)的形式沉淀。对于V As Mo和Ga,在升高的pH值(> pH 6-9)下,吸附剂表面的吸附大大降低。与处理沙子和矿渣相比,水处理污泥和铝土矿在高pH值(pH 7-9的As和V和pH 5-7的Mo)下具有更大的吸附V,As和Mo的能力。与处理沙和矿渣相比,As和V在所有四种吸附剂上的吸附等温线数据。 As和V在所有四种吸附剂材料上的吸附等温线数据均很好地符合Langmuir和Freundlich方程,但对于Ga和Mo程度较小的情况下,Freundlich方程给出的R值较高。对于所有四个离子,水处理污泥的最大吸附容量(朗缪尔值q)最大。铝土矿比残留的沙子或矿渣吸收更多的Mo,Ga和V。拟二阶方程比拟一阶模型更适合实验动力学数据,表明化学吸附而非扩散/交换是吸附的速率限制步骤。结论是水处理污泥和铝土矿是最有效的吸附剂,并且为了有效去除目标离子,排水的pH值需要降低到6.0-7.0。

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