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相关作者:张全兴潘丙才李爱民更多>>
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发文基金:国家自然科学基金长江学者和创新团队发展计划国家杰出青年科学基金更多>>
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离子交换与吸附树脂的发展及在工业废水处理与资源化中的应用被引量:38
2015年
过去数十年间,离子交换与吸附树脂迅速发展并在有机化工废水处理及资源化领域得到了广泛应用。近年来,随着树脂基复合吸附材料(纳米复合吸附树脂、磁性树脂)的快速发展,树脂吸附材料的应用范围逐步扩展到污水中微污染物(如重金属、磷酸盐、二级出水有机物等)的深度处理与资源回收等领域。本文综述了我国树脂吸附材料的制备、性能、污染物净化机理及其在污水处理与资源化方面的研究进展。
张全兴李爱民潘丙才
关键词:离子交换树脂吸附树脂废水处理资源化
Recyclable polymer-based nano-hydrous manganese dioxide for highly efficient Tl(I) removal from water被引量:3
2014年
TI(I) in water even at a trace level is fatal to human beings and the ecosystem. Here we fabricated a new polymer-supported nanocomposite (HMO-001) for efficient TI(I) removal by encapsulating nanosized hydrous manganese dioxide (HMO) within a polystyrene cation exchanger (D-001). The resultant HMO-001 exhibited more preferable removal of TI(I) than D-001 and IRC-748, an iminodiacetic chelating polymer, particularly in the presence of competing Ca(II) ions at greater levels in solution. Such preference was ascribed to the Donnan membrane effect caused by D-001 as well as the specific interaction between TI(I) and HMO. The adsorbed TI(I) was partially oxidized into insoluble TI(III) by HMO at acidic pH, while negligible oxidation was observed at circumneutral pH. The exhausted HMO-001 was amenable to efficient regeneration by binary NaOH-NaC10 solution for at least 10-cycle batch runs without any significant capacity loss. Fixed-bed column test of Tl(I)-contained indus- trial effluent and natural water further validated that TI(I) retention on HMO-001 resulted in a conspicuous concentration drop from 1.3 mg/L to a value lower than 0.14 mg/L (maximum concentration level for industrial effluent regulated by US EPA) and from 1-4 μg/L to a value lower than 0.1 μg/L (drinking water standard regulated by China Health Ministry), respectively.
PAN BingCaiWAN ShunLiZHANG ShuJuanGUO QingWeiXU ZhengChengLV LuZHANG WeiMing
关键词:THALLIUM
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