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首页> 外文期刊>Environmental Science and Pollution Research >Arsenic removal by copper-impregnated natural mineral tufa part II: a kinetics and column adsorption study
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Arsenic removal by copper-impregnated natural mineral tufa part II: a kinetics and column adsorption study

机译:铜浸渍天然矿物Tufa第II部分砷脱砷:动力学和柱吸附研究

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This batch and column kinetics study of arsenic removal utilized copper-impregnated natural mineral tufa (T-Cu(A-C)) under three ranges of particle size. Non-competitive kinetic data fitted by the Weber-Morris model and the single resistance mass transfer model, i.e., mass transfer coefficient k(f)a and diffusion coefficient (D-eff) determination, defined intra-particle diffusion as the dominating rate controlling step. Kinetic activation parameters, derived from pseudo-second-order rate constants, showed low dependence on adsorbent geometry/morphology and porosity, while the diffusivity of the pores was significant to removal efficacy. The results of competitive arsenic adsorption in a multi-component system of phosphate, chromate, or silicate showed effective arsenic removal using T-Cu adsorbents. The high adsorption rate-pseudo-second-order constants in the range 0.509-0.789gmg(-1)min(-1) for As(V) and 0.304-0.532gmg(1)min(1) for As(III)-justified further application T-Cu(A-C) in a flow system. The fixed-bed column adsorption data was fitted using empirical Bohart-Adams, Yoon-Nelson, Thomas, and dose-response models to indicate capacities and breakthrough time dependence on arsenic influent concentration and the flow rate. Pore surface diffusion modeling (PSDM), following bed-column testing, further determined adsorbent capacities and mass transport under applied hydraulic loading rates.
机译:此除砷利用铜浸渍的天然矿物凝灰岩批次和列动力学研究(T-Cu系(A-C))下的粒径的三个范围。装配由韦伯 - 莫里斯模型和单个电阻传质模型,即质量传递系数k(f)非竞争的动力学数据和扩散系数(d-EFF)判定,定义颗粒内扩散的支配速率控制步。动能激活参数,从伪二级速率常数得到,显示出对吸附剂几何/形态和孔隙率依赖性低,而孔的扩散率是除去功效显著。有竞争力的砷吸附在磷酸盐,铬酸盐,或硅酸盐的多组分体系的结果表明有效除去砷使用T-铜吸附剂。在范围0.509-0.789gmg高吸附速率伪二阶常数(-1)分钟(-1)的As(V)和0.304-0.532gmg(1)分钟(1)对As(III) - 正当进一步应用T-铜(AC)在流动体系中。固定床柱吸附数据使用经验博哈特亚当斯,允尼尔森,托马斯和剂量 - 响应模型,以指示容量和砷进水浓度和流量突破时间依赖性拟合。孔表面扩散模型(PSDM),以下床柱测试,进一步确定吸附剂的能力,并在施加液压负荷率传质。

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