膨润土-海藻酸钙微珠吸附水溶液中某些有害元素的动力学模拟

R. Abou-Lilah, N. Badway, A. Gamal, H. Rizk, Amal M. I. Ali, Mostafa A. Elshorbagy
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摘要

采用膨润土-海藻酸钙包封法处理水体中的Cs、Sr、UO2和Co。去除这些离子的最佳pH值为5.5。在辐射稳定性方面,研究了膨润土-海藻酸钙;使用Co源将其暴露在伽马辐射中。从(FT-IR)中获得的数据评估了辐射诱导对膨润土-海藻酸钙稳定性的影响。辐照样品直到100kgy不损害所检查离子的吸收。在色谱柱应用中,用固定床色谱柱检测了膨润土-海藻酸钙复合微珠从多组分溶液中释放这些离子的情况。考察了床层高度、流量、初始进口浓度等参数对塔产量的影响。当流速为0.5mL/min,床深为3cm,初始金属浓度为50mg/L时,Cs、Sr、UO2和Co的柱效分别为49、46、47和46.6%。Thomas和Yoon-Nelson模型确定了突破曲线,成功预测了突破吸附曲线。
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Modeling of the dynamics adsorption of some hazardous elements from aqueous solution onto bentonite-calcium-alginate beads
Encapsulation of bentonite-Ca-alginate was employed for discharge of Cs, Sr, UO2 and Co from aquatic solution. Preferable pH for elimination of these ions was 5.5. For radiation stability, bentonite-Ca-alginate was investigated; a Co source was used to expose it to gamma radiation. Data obtained from (FT-IR) assessed radiation-induced effect on a stability of bentonite-Ca-alginate. Irradiated samples untill 100 kGy do not impair an absorption of an ions examined. In a column application, bentonite-Ca-alginate composite beads were examined for the discharge of these ions from multicomponent solution using fixed-bed column. Effect on column output of various parameters, like bed height, flow rate and initial inlet concentration were investigated. The column performance was 49, 46, 47 and 46.6% for Cs, Sr, UO2 and Co, respectively at flow rate of 0.5mL/min, 3cm bed depth and initial metal concentration, 50mg/L for each element. Thomas and Yoon-Nelson models identified a breakthrough curves, which successfully predict breakthrough adsorption curves.
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