聚丙烯腈
吸附
化学
膜
过滤(数学)
离子交换
离子强度
铵
铯
无机化学
有孔小珠
核化学
水溶液
离子
材料科学
聚合物
有机化学
复合材料
统计
生物化学
数学
作者
Dahu Ding,Zhenya Zhang,Rongzhi Chen,Tianming Cai
标识
DOI:10.1016/j.jhazmat.2016.11.054
摘要
The selective removal of radionuclides with extremely low concentrations from environmental medium remains a big challenge. Ammonium molybdophosphate possess considerable selectivity towards cesium ion (Cs+) due to the specific ion exchange between Cs+ and NH4+. Ammonium molybdophosphate – polyacrylonitrile (AMP-PAN) membrane was successfully prepared for the first time in this study. Efficient removal of Cs+ (95.7%, 94.1% and 91.3% of 1 mg L−1) from solutions with high ionic strength (400 mg L−1 of Na+, Ca2+ or K+) was achieved by AMP-PAN composite. Multilayer chemical adsorption process was testified through kinetic and isotherm studies. The estimated maximum adsorption capacities even reached 138.9 ± 21.3 mg g−1. Specifically, the liquid film diffusion was identified as the rate-limiting step throughout the removal process. Finally, AMP-PAN membrane could eliminate Cs+ from water effectively through the filtration adsorption process.
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