Zheng Xianming, Dou Junfeng, Yuan Jing, Qin Wei, Hong Xiaoxi, Ding Aizhong
College of Water Sciences, Beijing Normal University, Beijing 100875, China.
College of Water Sciences, Beijing Normal University, Beijing 100875, China.
J Environ Sci (China). 2017 Jun;56:12-24. doi: 10.1016/j.jes.2016.08.019. Epub 2016 Sep 30.
To remove cesium ions from water and soil, a novel adsorbent was synthesized by following a one-step co-precipitation method and using non-toxic raw materials. By combining ammonium-pillared montmorillonite (MMT) and magnetic nanoparticles (FeO), an MMT/FeO composite was prepared and characterized. The adsorbent exhibited high selectivity of Cs and could be rapidly separated from the mixed solution under an external magnetic field. Above all, the adsorbent had high removal efficiency in cesium-contaminated samples (water and soil) and also showed good recycling performance, indicating that the MMT/FeO composite could be widely applied to the remediation of cesium-contaminated environments. It was observed that the pH, solid/liquid ratio and initial concentration affected adsorption capacity. In the presence of coexisting ions, the adsorption capacity decreased in the order of Ca>Mg>K>Na, which is consistent with our theoretical prediction. The adsorption behavior of this new adsorbent could be expressed by the pseudo-second-order model and Freundlich isotherm. In addition, the adsorption mechanism of Cs was NH ion exchange and surface hydroxyl group coordination, with the former being more predominant.
为了从水和土壤中去除铯离子,采用一步共沉淀法并使用无毒原料合成了一种新型吸附剂。通过将铵柱撑蒙脱石(MMT)与磁性纳米颗粒(FeO)相结合,制备并表征了MMT/FeO复合材料。该吸附剂对Cs具有高选择性,并且在外部磁场作用下能够从混合溶液中快速分离。最重要的是,该吸附剂在铯污染样品(水和土壤)中具有高去除效率,并且还表现出良好的循环性能,这表明MMT/FeO复合材料可广泛应用于铯污染环境的修复。观察到pH、固液比和初始浓度会影响吸附容量。在共存离子存在的情况下,吸附容量按Ca>Mg>K>Na的顺序降低,这与我们的理论预测一致。这种新型吸附剂的吸附行为可以用准二级模型和弗伦德利希等温线来表示。此外,Cs的吸附机制是NH离子交换和表面羟基配位,前者更为主要。