Bismuth-impregnated aluminum/copper oxide-pillared montmorillonite for efficient vapor iodine sorption

蒙脱石 吸附 氧化物 吸附 氧化铝 化学 材料科学 无机化学 化学工程 有机化学 冶金 复合材料 工程类
作者
Alemtsehay Tesfay Reda,Dongxiang Zhang,Xiyan Xu,Meng Pan,Chang Cui,Constantin Muhire,Xiaoru Liu,Jiayi Sun
出处
期刊:Separation and Purification Technology [Elsevier]
卷期号:270: 118848-118848 被引量:37
标识
DOI:10.1016/j.seppur.2021.118848
摘要

AlCu-oxides pillared Montmorillonite (MMN) was synthesized by the ion-exchange reaction and then impregnated by bismuth (Bi) to produce single-phase material ([email protected]) aiming at vapor iodine (I2) capture. The resulting [email protected] mesoporous material demonstrated high capture capacity and thermal stability. The displayed capture capacity, 485 ± 54 mg-I/g-sorbent, was benefited from the strong affinity of Bi to iodine and the pores of the material. The gaseous I2 was captured chemically by [email protected] via Bi-O-I and BiI3 formation in the inner surface of the AlCu-PILC and pillars, respectively. In addition to the chemisorption, molecular I2 was captured physically in the pores of the material. The stability of the iodine-containing material was investigated by a leaching experiment before and after Bi2O3 treatment of the material. Without Bi2O3 treatment, [email protected] showed 22.12 mass% iodine losses after exposure to hot aqueous media for 7 days. On the other hand, after the post-sorption treatment at 500 °C, the iodine loss was only 0.75 mass% under similar conditions, indicating the material is stabilized significantly after the treatment. Post-sorption treatment of [email protected] by Bi2O3 at high temperature transformed BiI3 into a more thermally durable form (Bi-O-I). These results indicate that [email protected] is a promising material for vapor iodine capture and subsequent final disposal.

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