Enhancement on Radon Adsorption Property of GAC using Nano-size Carbon Colloids

Seung-chan Choi, Seon-hong Kim, Do-hyeon Kim, Min-jun Kim, Gyeong-min Kang, Seung-yeon Cho

Abstract


Granular activated carbon (GAC) is well-known as an efficient adsorbent against a number of gaseous pollutants. Radon is one of those pollutants, and radon has been classified as the second leading cause of lung cancer in USA. This study was to enhance the radon removal efficiency with applying nano-technology. Nano-size carbon colloids (NCC) was produced through electrolysis which is simple and cheap. NCC was used for impregnation with activated carbon. Surface areas of both NCC-treated and non-treated activated carbon did not show a significant difference. However, the results of radon removal efficiency show that impregnated carbon with NCC could capture about 1.3 ~ 2 times of more radon gas compared to non-treated activated carbon. It is assumed that nano-size carbon colloids might have filled up meso-pores, and meso-pores turned into micro-pores eventually. Because meso-pores initially accounted for large portion of whole pores, more radon could be captured to NCC-impregnated activated carbon.

Keywords: Radon, Nano-Size Carbon Collid, Activated Carbon


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ISSN (Paper)2224-3232 ISSN (Online)2225-0573

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