磷钼酸铵去除核废水中铯的研究进展

    Research Progress of Ammonium Phosphomolybdate on Removal of Cesium From Nuclear Wastewater

    • 摘要: 在当前废物资源化利用的背景下,人们开始积极探索核燃料循环利用的可持续发展之路。磷钼酸铵(AMP)在核废水处理领域的创新应用是核能可持续发展的研究热点之一,主要涉及对放射性废液中高释热裂变产物137Cs的分离、纯化及浓缩。然而AMP的晶粒较小,使用时存在分离困难、易堵塞吸附柱等问题,限制了其在工业中的大规模应用。近年来,随着对Cs+吸附剂的深入研究,通过优化合成路线制备大粒径的AMP或将其负载在合适载体上制备出复合吸附剂,有望解决上述难题。本文归纳了多种大粒径AMP制备方法以及AMP与有机载体(聚丙烯腈、聚甲基丙烯酸甲酯、海藻酸盐)和无机载体(多孔二氧化硅、金属有机框架、磁性材料和氧化铝)的复合方式;综述了近几年大粒径AMP及负载有AMP的复合吸附剂对水溶液中Cs+的吸附研究进展;并结合各自的吸附性能包括吸附量、吸附分配系数、耐酸碱程度、抗辐照性及循环利用率等,总结了大粒径AMP及各类载体的独特优势,以期为AMP应用于核废水中Cs的高效分离提供参考。

       

      Abstract: Under the current background of waste resource recycling utilization, people have begun to actively explore the sustainable development path of nuclear fuel recycling. The innovative application of ammonium phosphomolybdate(AMP) in the field of nuclear wastewater treatment is one of the research hotspots in the sustainable development of nuclear energy, which mainly involves the separation, purification and concentration of high heat release fission product 137Cs from radioactive. However, AMP has small crystal grains, which makes it difficult to separate from waste liquid and prone to clogging adsorption columns when used. This limits its large-scale industrial application. In recent years, with in-depth research on Cs+ adsorbents, various AMP-based adsorbents have emerged, which are prepared by optimizing the synthesis route to produce larger particle sizes of AMP or by loading AMP onto suitable carriers. These innovations are expected to solve the aforementioned challenges. This article summarizes various methods for the preparation of large-size AMP, as well as the composite methods of AMP with organic carriers(polyacrylonitrile, polymethyl methacrylate, and alginate) and inorganic carriers(porous silica, metal-organic framework, magnetic materials and alumina). It reviews the research progress on the adsorption of Cs+ from aqueous solutions by large-size AMP and AMP-loaded composite adsorbents in recent years. By considering the adsorption performance of each adsorbent, including adsorption capacity, distribution coefficient, acid and alkali resistance, radiation resistance, and recyclability, the unique advantages of coarse-grained AMP and various carriers are summarized, in the hope of providing a reference for the application of AMP in the efficient separation of Cs from nuclear wastewater.

       

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