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首页> 外文期刊>Journal of Hazardous Materials >Cu/Cu_2O-immobilized cellulosic filter for enhanced iodide removal from water
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Cu/Cu_2O-immobilized cellulosic filter for enhanced iodide removal from water

机译:Cu / Cu_2O-固定化的纤维素过滤器,用于增强水中的碘化物去除

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摘要

We developed a Cu/Cu2O-immobilized filter-type adsorbent for efficient iodide anion removal. A cellulose filter (CF) was used as a support, and its surface was modified using acrylic acid to enhance copper immobilization. The modified filter (CF-AA) exhibited 10x higher copper adsorption than the unmodified filter. Cu/Cu2O was prepared on CF-AA by using a simple hydrothermal method to obtain CF-AA-Cu, and the prepared Cu/Cu2O was characterized with scanning electron microscopy/energy-dispersive spectroscopy, x-ray photoelectron spectroscopy, and thermogravimetric analysis. While CF and Cu2O themselves exhibited limited iodide adsorption performance, CF-AA-Cu exhibited fast adsorption kinetics with a half-life of 60 min as well as a high adsorption capacity of 10.32 mg/g, as obtained using the Langmuir adsorption isotherm model. Moreover, it exhibited high selectivity for iodide when high concentrations of other anions were present. The adsorption mechanism was proved by means of material characterization before and after adsorption. The coexistence of Cu-0, Cu+, and Cu2+ in CF-AA-Cu make it effective in broader pH conditions via the redox reaction between Cu-0 and Cu2+. Overall, iodide adsorbents in the form of filters with high adsorption capacity, selectivity, and ability over a wide pH range are potentially useful for removing iodide from water.
机译:我们开发了一种Cu / Cu2O-固定的过滤器型吸附剂,用于去除高效碘化物阴离子。使用纤维素过滤器(CF)作为载体,使用丙烯酸改性其表面以增强铜固定化。改性过滤器(CF-AA)表现出比未修饰的过滤器更高的铜吸附。通过使用简单的水热法在CF-AA上制备Cu / Cu2O,得到CF-AA-Cu,并通过扫描电子显微镜/能量分散光谱,X射线光电子体光谱和热重分析表征制备的Cu / Cu 2 O。 。虽然CF和Cu2O本身具有有限的碘化物吸附性能,但CF-AA-Cu显示出快速吸附动力学,其半衰期为60分钟,并且使用Langmuir吸附等温模型获得的10.32mg / g的高吸附容量为10.32mg / g。此外,当存在高浓度的其他阴离子时,它表现出碘化物的高选择性。通过吸附前后的材料表征证明了吸附机理。 Cu-0,Cu +和Cu2 +在CF-A-Cu中的共存使其在更宽的pH条件下通过Cu-0和Cu 2 +之间的氧化还原反应使其有效。总体而言,过滤器形式的碘化物吸附剂具有高吸附能力,选择性和在宽的pH范围内的能力,可能用于从水中除去碘化物。

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