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首页> 外文期刊>Advances in Environmental Chemistry >Bioremediation of Waste Water Containing Hazardous Cadmium Ion with Ion Imprinted Interpenetrating Polymer Networks
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Bioremediation of Waste Water Containing Hazardous Cadmium Ion with Ion Imprinted Interpenetrating Polymer Networks

机译:离子印迹互穿聚合物网络对含镉离子废水的生物修复

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A novel Cd(II) ion imprinted interpenetrating polymer network (Cd(II)IIP) was prepared by free radical polymerization using alginic acid and NNMBA-crosslinked polyacrylamide in presence of initiator potassium persulphate. Cd(II)IIP showed higher capacity and selectivity than the nonimprinted polymer (NIP). The sorption capacities of Cd(II)IIP and NIP for Cd(II) ions were 0.886 and 0.663meqmole-1, respectively. Kinetics studies showed that the sorption process closely agreed with a pseudosecond-order model. The thermodynamic data suggest that the sorption is a spontaneous endothermic process. Equilibrium experiments showed very good fit with the Langmuir isotherm equation for the monolayer sorption process. Cd(II)IIP exhibited good reusability, and the sorption capacity of Cd(II)IIP was stable within the first 4 cycles without obvious decrease. Also Cd(II)IIP showed almost 100% removal efficiency for Cd(II) ions in real environmental water samples, indicating that Cd(II)IIP could have wide application prospects in Cd(II) ion removal.
机译:在引发剂过硫酸钾存在下,利用藻酸和NNMBA交联聚丙烯酰胺通过自由基聚合制备了一种新型的Cd(II)离子印迹互穿聚合物网络(Cd(II)IIP)。 Cd(II)IIP比非印迹聚合物(NIP)具有更高的容量和选择性。 Cd(II)IIP和NIP对Cd(II)离子的吸附能力分别为0.886和0.663meqmole-1。动力学研究表明,吸附过程与伪二级模型非常吻合。热力学数据表明吸附是自发的吸热过程。平衡实验表明,Langmuir等温方程非常适合单层吸附过程。 Cd(II)IIP表现出良好的可重复使用性,并且Cd(II)IIP的吸附容量在前4个循环内保持稳定,而没有明显下降。另外,Cd(II)IIP在实际环境水样中对Cd(II)离子的去除率几乎达到100%,这表明Cd(II)IIP在Cd(II)离子去除方面具有广阔的应用前景。

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