Li Wen-Ze, Guo Fu-Yu, Li Jing, Zhang Xiao-Sa, Liu Yu, Luan Jian
College of Science, Shenyang University of Chemical Technology, Shenyang, 110142, P. R. China.
Dalton Trans. 2024 Aug 13;53(32):13370-13383. doi: 10.1039/d4dt01554a.
Owing to their high porosity, open metal sites, and huge surface area, metal-organic framework (MOF) materials are commonly employed in iodine adsorption processes. Bimetallic MOFs have drawn a lot of attention since mono-metal MOFs have been unable to keep up with the demand. Bimetallic MOF materials still have drawbacks, including limited adsorption capacity, extended adsorption time, poor stability, and poor selectivity, despite their positive performance in radioactive iodine capture. It has been therefore difficult to develop adsorbents with quick iodine adsorption rates and high iodine adsorption efficiency. This study investigated the adsorption properties of a series of bimetallic MOF-74 materials (Mn-Co-MOF-74, Mn-Zn-MOF-74, and Mn-Ni-MOF-74) for radioactive iodine, as well as their design and synthesis utilizing the reflux approach. It was discovered that the adsorption performance of Mn-Ni-MOF-74 for radioiodine was superior to that of the other two bimetallic MOF-74 materials. Using the bimetallic Mn-Ni-MOF-74 as a precursor, a variety of bimetallic MOF-74 derived carbon compounds (Mn-Ni-CX) were prepared by high-temperature pyrolysis. Simultaneously, the structure of the material and the iodine adsorption characteristics have been thoroughly studied.
由于其高孔隙率、开放的金属位点和巨大的表面积,金属有机框架(MOF)材料常用于碘吸附过程。自从单金属MOF无法满足需求以来,双金属MOF受到了广泛关注。尽管双金属MOF材料在放射性碘捕获方面表现出积极性能,但它们仍然存在缺点,包括吸附容量有限、吸附时间延长、稳定性差和选择性差。因此,开发具有快速碘吸附速率和高碘吸附效率的吸附剂一直很困难。本研究考察了一系列双金属MOF-74材料(Mn-Co-MOF-74、Mn-Zn-MOF-74和Mn-Ni-MOF-74)对放射性碘的吸附性能,以及利用回流法对其进行的设计与合成。结果发现,Mn-Ni-MOF-74对放射性碘的吸附性能优于其他两种双金属MOF-74材料。以双金属Mn-Ni-MOF-74为前驱体,通过高温热解制备了多种双金属MOF-74衍生碳化合物(Mn-Ni-CX)。同时,对材料的结构和碘吸附特性进行了深入研究。