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在潮湿条件下,三乙烯二胺(TEDA)-金属浸渍活性炭对气态碘化甲基的吸附去除。

Adsorptive removal of gaseous methyl iodide by triethylenediamine (TEDA)-metal impregnated activated carbons under humid conditions.

机构信息

Department of Chemical and Biomolecular Engineering, Yonsei University, Yonsei-ro 50, Seodaemun-gu, Seoul, 037225, Republic of Korea.

Defense Industry Technology Center, Agency for Defense Development, Duteopbawi-ro 54-99, Yongsan-gu, Seoul, 04353, Republic of Korea.

出版信息

J Hazard Mater. 2019 Apr 15;368:550-559. doi: 10.1016/j.jhazmat.2019.01.078. Epub 2019 Jan 24.

Abstract

Removal of gaseous radioactive iodine (I and I) compounds from nuclear facilities is an important issue. Herein we assessed the adsorptive capacity of gaseous non-radioactive methyl iodide (CHI) as a simulant on two commercial TEDA-metal impregnated activated carbon(AC)s. The characterizations of the ACs were determined ICP-MS, XPS, and 77 K N isotherms. As a result, it was found that one AC has a small amount of TEDA but a well-developed porosity, and the other one was abundant with TEDA, but the porosity was relatively less developed. The methyl iodide removal performances were evaluated under 10 ppm and 400 ppm using breakthrough experiments under various relative humidities (RH). Desorption was also carried out using nitrogen after adsorption to investigate adsorption affinity. Methyl iodide adsorption capacity of TEDA-rich AC decreased significantly as RH increased at 10 ppm. Conversely, performance degradation was clearly observed from less TEDA-impregnated AC with well-developed porosity as RH increased at 400 ppm. It is demonstrated that the amount of physisorbed methyl iodide is decreased as RH increased. Although moisture decreases the adsorption amount, it enhances the adsorption affinity. Also, additional TEDA impregnation to ACs results in improving the performance under severe condition (RH90%, 400 ppm).

摘要

从核设施中去除气态放射性碘(I 和 I)化合物是一个重要问题。在此,我们评估了两种商业 TEDA-金属浸渍活性炭(AC)对气态非放射性甲基碘(CHI)作为模拟物的吸附能力。通过 ICP-MS、XPS 和 77 K N 等手段对 AC 进行了表征。结果表明,一种 AC 含有少量 TEDA,但具有发达的孔隙率,另一种 AC 富含 TEDA,但孔隙率相对较低。采用穿透实验,在 10 ppm 和 400 ppm 下,在不同相对湿度(RH)下评价了甲基碘的去除性能。吸附后采用氮气进行脱附,考察了吸附亲和力。在 10 ppm 时,随着 RH 的增加,富含 TEDA 的 AC 的甲基碘吸附容量显著下降。相反,在 400 ppm 时,具有发达孔隙率的 TEDA 浸渍量较少的 AC 的性能退化明显随着 RH 的增加而增加。这表明随着 RH 的增加,物理吸附的甲基碘量减少。尽管水分会降低吸附量,但会增强吸附亲和力。此外,向 AC 中额外浸渍 TEDA 可改善恶劣条件(RH90%,400 ppm)下的性能。

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