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Pore Characterisitics and Adsorption Performance Evaluation of Magnesium Oxide Matrix by Active Carbon Particle Size

활성탄소 입도에 따른 산화마그네슘 경화체의 공극특성과 흡착성능 평가

  • Pyeon, Su-Jeong (Department of Architectural Engineering, Hanbat National University) ;
  • Lee, Sang-Soo (Department of Architectural Engineering, Hanbat National University)
  • Received : 2017.11.30
  • Accepted : 2018.01.17
  • Published : 2018.02.20

Abstract

Radon gas is a colorless, odorless, tasteless gas that occurs when uranium, a natural radioactive material in rocks and soils, collapses. 85% of the annual radiation exposure of the human body is due to natural radiation, of which 50% is radon. According to the US Environmental Protection Agency (EPA) survey, 62 out of 1,000 smokers and 7 out of 1,000 nonsmokers are exposed to lung cancer when exposed to radon gas for a long time. In order to reduce the risk of radon gas, activate carbon was used to fabricate matrix, and the pore properties and radon reduction properties were investigated. When the activate carbon was used, the radon gas concentration was drastically reduced and the graph was changed as the measurement period became longer. The pore distribution and microporous properties, which are one of the material properties of activate carbon, can be grasped.

라돈가스는 암석이나 토양 등에 존재하는 자연 방사성 물질인 우라늄이 붕괴할 때 발생하는 무색, 무취, 무미의 가스이다. 인체가 연간 노출되는 방사선의 85%는 자연 방사선에 의한 것이고, 그 중 50%가 라돈가스이다. 미국 환경보호청(EPA)의 조사결과에 의하면, 라돈가스에 장시간 노출될 경우 흡연자는 1,000명 중 62명, 비흡연자는 1,000명 중 7명이 폐암 발병률에 노출된다. 이러한 라돈가스의 위해성을 저감하고자 활성탄소를 사용하여 경화체를 제작하여 그에 대한 공극 특성과 라돈가스 저감 특성에 대한 실험을 진행하였다. 활성탄소를 활용하였을 경우, 측정기간이 길어질수록 라돈가스 농도는 급격한 저감과 그래프 상의 변화를 확인할 수 있었다. 또한 활성탄소의 재료적 특성 중 하나인 공극 분포와 미세공 특성을 파악할 수 있다.

Keywords

References

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