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Selective Adsorption of Uranium(VI) on U(VI) Ion-Imprinted Chitosan Composite Magnetic Microsphers

机译:U(VI)离子印迹壳聚糖复合磁性微球的选择性吸附铀(VI)

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To find an effective method for uranium(VI)adsorption, uranium(VI) ion-imprinted chitosan composite magnetic micros hers (U(VI)¨CICCMM) were synthesized using uranium(VI) as template, chitosan as functional monomer, epichlorohydrin and glutaral dehyde as cross linking agents. Magnetic chitosan micro sphers (MCM) were synthesized without U(VI) ion-imprinted as control. Experiments were conducted in a batch system. As compared with MCM, the adsorption capacity of U(VI)-ICCMM increased 8.6mg¡¤g-1 in 30 minutes at pH 3.5 when the initial concentration of U(VI) was 100 mg¡¤l-1, and the percentage removal of U(VI) by U(VI)¨CICCMM can reached 99.71%when the dosage of the adsorbent was 5.0 g¡¤l-1. Competitive adsorption of multi-ions studies indicated that U(VI)-ICCMM had a high single selectivity for U(VI). The order of metal ion affinity in the competitive conditions was U(VI) > Cr(VI) >Mn(II) > Ca(II). The experimental results showed that U(VI)-ICCMM was an effective adsorbent to adsorb U(VI), and it can be separated in a convenient way under a magnetic field, moreover, it could be reused in an easy way and the adsorption capacity of U(VI)-ICCMM didn¡¯t decrease clearly even after six times regeneration.
机译:为了找到铀(VI)吸附,铀(VI)离子印迹壳聚糖复合磁性万分之一她的一种有效的方法(U(VI)¨CICCMM)使用铀(VI)为模板,脱乙酰壳多糖为功能单体合成,表氯醇和戊二醛醛作为交联剂。磁性壳聚糖微sphers(MCM)无u合成(VI)离子印迹作为对照。实验在间歇系统进行。与MCM,U的吸附能力进行比较(VI)-ICCMM增加8.6mg¡¤g-1在pH 3.5时30分的U(Ⅵ)的初始浓度为100mg¡¤l-1,和百分比用U除去U(Ⅵ)(Ⅵ)¨CICCMM罐达到99.71%时,吸附剂用量为5.0g¡¤l-1。多离子的研究竞争吸附表明,U(Ⅵ)-ICCMM有用于U A高单选择性(VI)。的金属离子亲和在竞争激烈的条件的顺序为U(Ⅵ)>的Cr(VI)>的Mn(II)>的Ca(II)。实验结果表明,U(Ⅵ)-ICCMM是一种有效的吸附剂,以吸附U(Ⅵ),并且其可以以一种方便的方式在磁场下分开,而且,它可以在一个简单的方法和吸附容量被重复使用铀(VI)-ICCMMdidn¡¯t减少清楚即使经过六次再生。

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