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Surface Interactions and Mechanisms Study on the Removal of Iodide from Water by Use of Natural Zeolite-Based Silver Nanocomposites

机译:天然沸石基银纳米复合材料从水中去除碘化物的表面相互作用及机理研究

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摘要

In this work a natural zeolite was modified with silver following two different methods to derive Ag O and Ag nanocomposites. The materials were fully characterized and the results showed that both materials were decorated with nanoparticles of size of 5–25 nm. The natural and modified zeolites were used for the removal of iodide from aqueous solutions of initial concentration of 30–1400 ppm. Natural zeolite showed no affinity for iodide while silver forms were very efficient reaching a capacity of up to 132 mg/g. Post-adsorption characterizations showed that AgI was formed on the surface of the modified zeolites and the amount of iodide removed was higher than expected based on the silver content. A combination of experimental data and characterizations indicate that the excess iodide is most probably related to negatively charged AgI colloids and Ag-I complexes forming in the solution as well as on the surface of the modified zeolites.
机译:在这项工作中,采用两种不同的方法用银对天然沸石进行了改性,以生成Ag O和Ag纳米复合材料。对该材料进行了充分表征,结果表明这两种材料都用5–25 nm的纳米粒子装饰。天然和改性沸石用于从初始浓度为30-1400 ppm的水溶液中除去碘化物。天然沸石对碘化物没有亲和力,而银的形式非常有效,容量高达132 mg / g。吸附后的表征表明,在改性沸石的表面上形成了AgI,碘的去除量高于基于银含量的预期值。实验数据和表征的结合表明,过量的碘化物最有可能与溶液中以及改性沸石表面上形成的带负电的AgI胶体和Ag-1络合物有关。

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