Abou-Mesalam Mamdouh M, El-Naggar Ibrahim M
Nuclear Fuel Technology Department, Hot Labs. Centre, Atomic Energy Authority, Post Code 13759, Cairo, Egypt.
J Hazard Mater. 2008 Jun 15;154(1-3):168-74. doi: 10.1016/j.jhazmat.2007.10.007. Epub 2007 Oct 9.
Synthetic magneso-silicate and magnesium alumino-silicate as inorganic ion exchange materials with the formula MgSi5.59O(12.18).5.93H2O and MgAl2.32Si5.2O(14.88).18.23H2O, respectively, have been found to be suitable for the removal of Cs+, Co2+ and Eu3+ ions with the selectivity sequence Eu3+>Co2+>Cs+. Samples of Cs-, Co- and Eu-loaded were prepared and thermally treated at 850 degrees C in a furnace for the creation of specific cavity. Surface area, IR and X-ray diffraction patterns of the products were conducted. Surface area values of OMS, OMAS, TMS, TMAS, ETMS and ETMAS were measured and indicated an increasing in the surface area values for the TMS and TMAS samples and decreasing in the ETMS and ETMAS samples. Desorption studies in nitric acid medium were carried out and reloading of the eluted solids with the studied cations were conduced and the data show an ion memory behaviour for the eluted solids. Finally, the rate of Cs+ ion sorption on OMS, OMAS, ETMS and ETMAS was studied. The diffusion coefficients calculated indicated that the diffusion of Cs+ ion is high for the ETMS and ETMAS samples compared to the OMS and OMAS samples.
合成镁硅酸盐和镁铝硅酸盐作为无机离子交换材料,其化学式分别为MgSi5.59O(12.18).5.93H2O和MgAl2.32Si5.2O(14.88).18.23H2O,已被发现适用于去除Cs+、Co2+和Eu3+离子,其选择性顺序为Eu3+>Co2+>Cs+。制备了负载Cs、Co和Eu的样品,并在炉中于850℃进行热处理以形成特定的空腔。对产物进行了表面积、红外和X射线衍射图谱分析。测量了OMS、OMAS、TMS、TMAS、ETMS和ETMAS的表面积值,结果表明TMS和TMAS样品的表面积值增加,而ETMS和ETMAS样品的表面积值减小。在硝酸介质中进行了解吸研究,并对洗脱后的固体重新加载所研究的阳离子,数据显示洗脱后的固体具有离子记忆行为。最后,研究了Cs+离子在OMS、OMAS、ETMS和ETMAS上的吸附速率。计算得到的扩散系数表明,与OMS和OMAS样品相比,ETMS和ETMAS样品中Cs+离子的扩散速率较高。