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首页> 外文期刊>Environmental sciences Europe >Rational synthesis, characterization, and application of environmentally friendly (polymer–carbon dot) hybrid composite film for fast and efficient UV-assisted Cd2 removal from water
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Rational synthesis, characterization, and application of environmentally friendly (polymer–carbon dot) hybrid composite film for fast and efficient UV-assisted Cd2 removal from water

机译:对环境友好(聚合物 - 碳点)杂化复合膜的合理合成,表征及应用,用于快速高效的紫外线辅助CD2从水中去除

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Background Carbon dots (CDs) are of particular interest in numerous applications. However, their efficiency for heavy metal removal from wastewater was not yet reported. Herein, we rationally synthesized CDs from petroleum coke waste via hydrothermal treatment in the presence of ammonia. Results This drove the formation of outstanding photoluminescent, water-soluble, biocompatible, and high yield of monodispersed sub-5?nm CDs. The CDs are co-doped with high 10% of N and 0.2% of S. The as-prepared CDs possess unprecedented photoluminescent properties over broad pH range making these dots unique efficient pH sensor. Conclusions Chitosan (CH)–CDs hybrid hydrogel nanocomposite film was further prepared as a platform membrane for the removal Cd 2 metal from wastewater. The as-prepared CH–CDs membranes show relatively good mechanical properties, based on stress resistance and flexibility to facilitate handling. The equilibrium state was reached within 5?min. Intriguingly, the UV-light illuminations enhanced the Cd 2 removal efficiency of the photoluminescent CDs substantially by four times faster under. It was found that adsorption followed pseudo-second-order kinetic and Langmuir isotherm models. The maximum adsorption capacity at 25?°C was found to be 112.4?mg?g ?1 at pH 8. This work paves the way to new applications of CDs in water treatment.
机译:背景技术碳点(CDS)对许多应用特别感兴趣。然而,尚未报道它们对废水中的重金属的效率尚未报道。在此,我们在氨存在下通过水热处理合理合成来自石油焦炭废物的CD。结果这开发了形成的光致发光,水溶性,生物相容性的形成和高产率的单分散亚-5?NM CD。 CDS具有高10%N和0.2%S的CD。当制备的CD在宽的pH范围内具有前所未有的光致发光性能,使得这些点是独特的有效的pH传感器。结论壳聚糖(CH)-CS杂合水凝胶纳米复合膜进一步制备为来自废水中去除CD 2金属的平台膜。基于应力抗性和柔韧性以方便处理,制备的CH-CDS膜显示出相对良好的机械性能。在5?分钟内达到平衡状态。有趣的是,UV光照明在光致发光CD的CD 2去除效率上显着增加了四倍。发现吸附遵循伪二阶动力学和Langmuir等温模型。发现25°C的最大吸附容量为112.4毫克?G?1在pH 8.这项工作铺平了CD在水处理中的新应用。

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