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Removal of iodide from water using silver nanoparticles-impregnated synthetic zeolites

机译:使用银纳米粒子浸渍的合成沸石从水中去除碘化物

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Synthetic zeolite-based Ag-nanocomposites were synthesized, characterized and used to remove iodide from aqueous solutions. The results showed high removal efficiency (up to 94.85%) and the formation silver iodide which is stable into the material. The maximum achieved adsorption capacity of the nanocomposites was between 19.54 and 20.44 mg/g. The removal mechanism was meticulously studied by taking into account both water chemistry and surface interactions backed by multiple characterization techniques, such as XRD, XRF, SEM/EDX, TEM and BET. The qualitative and quantitative examination of pre- and post-adsorption of nanocomposite samples proved that the anchored silver iodide was formed via oxidation of initial silver nanopartides followed by reaction with iodide to form a stable crystalline precipitate on the surface of the materials. A diffusion-based adsorption model indicated that the controlling mechanism is a slow intraparticle surface diffusion with diffusion coefficients in the range of 0.37-1.72 x 10(-13) cm(2)/s. The investigation of competing and co- existing anions (Cl-, Br-, CO(3)(2-)and CrO42-) on the removal efficiency of iodide demonstrated a negligible effect showing a kinetically favorable precipitation reaction of iodide over other anions. (C) 2019 Elsevier B.V. All rights reserved.
机译:合成,基于沸石的Ag-纳米复合材料进行了表征,表征并用于从水溶液中去除碘化物。结果表明,去除效率高(高达94.85%),并且形成的碘化银对材料稳定。纳米复合材料的最大吸附容量为19.54-20.44 mg / g。通过同时考虑水化学和多种表征技术(例如XRD,XRF,SEM / EDX,TEM和BET)支持的表面相互作用,仔细研究了去除机理。纳米复合材料样品吸附前后的定性和定量检查证明,锚固的碘化银是通过氧化初始的纳米银粒子,然后与碘化物反应在材料表面形成稳定的结晶沉淀而形成的。基于扩散的吸附模型表明,控制机理是颗粒内表面缓慢扩散,扩散系数在0.37-1.72 x 10(-13)cm(2)/ s的范围内。对竞争阴离子和共存阴离子(Cl-,Br-,CO(3)(2-)和CrO42-)对碘化物去除效率的研究表明,与其他阴离子相比,碘化物在动力学上有利的沉淀反应可忽略不计。 (C)2019 Elsevier B.V.保留所有权利。

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