• 제목/요약/키워드: radon gas

검색결과 92건 처리시간 0.027초

라돈 흡착형 경화체의 시험 조건에 따른 흡착특성 (Properties Adsorption According to Test Condition of Radon Adsorption-type Matrix)

  • 임현웅;김헌태;권오한;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2016년도 추계 학술논문 발표대회
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    • pp.109-110
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    • 2016
  • This study is a absorbing Radon gas to occur indoor or outdoor. As a absorbent Radon gas, making cementless abso rbent matrix that accomplish experiment. In other to accomplish this experiment, Confirming Radon gas release ratio and accurating absorption, reduction of a half-life that 3,8 days from Radon gas source, we need to decide Radon absorbent experiment method. So, we accomplish to find Radon measurement method considering properties and a half-life that 3,8 days from Radon gas source. As the experimental factors, After stabilizing of Radon gas source and so on, we accomplish the experiment that is there or not and seal of Radon source.

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The effect of geometrical parameters on the radon emanation coefficient and different radon parameters

  • Entesar H. El-Araby;A. Azazi
    • Nuclear Engineering and Technology
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    • 제55권11호
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    • pp.4096-4101
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    • 2023
  • Radon is a radioactive gas produced from the uranium-238 series. Radon gas affects public health and is the second cause of lung cancer. The study samples were collected from one area of the city of Jazan, southwest of the Kingdom of Saudi Arabia. The influence of engineering and physical parameters on the emanation coefficient of gas and other gas parameters was studied. Parameters for radon were measured using a CR-39 Solid-State Nuclear Track Detector (SSNTD) through a sealed emission container. The results showed that the emanation coefficient was affected directly by the change in the grain size of the soil. All parameters of measured radon gas have the same behavior as the emanation coefficient. The relationship between particle size and emanation coefficient showed a good correlation. The values of the emanation coefficient were inversely affected by the mass of the sample, and the rest of the parameters showed an inverse behavior. The results showed that increasing the volume of the container increases the accumulation of radon sons on the wall of the container, which increases the emission factor. The rest of the parameters of radon gas showed an inverse behavior with increasing container size. The results concluded that changing the engineering and physical parameters has a significant impact on both the emanation coefficient and all radon parameters. The emanation coefficient affects the values of the radiation dose of an alpha particle.

주거용 건축물의 실내 라돈농도 경감방안에 관한 연구(I) -Test Cell Study (A Study on Mitigation Methods of Indoor Radon Concentration in Residential Buildings(I) - Test Cell Study)

  • 차동원
    • KIEAE Journal
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    • 제1권2호
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    • pp.21-28
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    • 2001
  • Naturally-ocurring short-lived decay products of radon gas in indoor air are the dominant source of ionizing radiation exposure to the general public. It is written in BEIR VI Report(l999l the radon progeny were identified as the second cause of lung cancer next to cigarette or 10 % to 14 %(15,400 to 21,800 persons p.a.) of all lung cancer deaths in USA. Indoor radon concentrations in houses typically result from radon gaining access to houses mainly from the underlying soil. In the States, they have "Indoor Radon Abatement Act" which was converted from "Toxic Substance Control Act" in 1988 to establish the national long-term goal that indoor air should be as free of radon as the ambient air outside of buildings. To review and study techniques for controlling radon, two test cells were constructed for a series of tests and are under measuring indoor and soil gas (underneath of floor slab)radon concentrations according to EPA's measurement protocol. In this paper, important theoretical studies are previewed and the following paper will explain the test results and confirm the theories reviewed to find out suitable coefficients. On the basis of test analysis, it will be described and evaluated various techniques that can be used to mitigate elevated indoor concentration of radon including the control of radon and its decay products.

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Assessment of radon potential in the areas covered with granite and gneiss in Korea

  • Je Hyun-Kuk;Chon Hyo-Taek
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.501-503
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    • 2003
  • Soil-gas radon level and other atmospheric factors have been measured at residual soil profiles that overlie granite bedrock which consists of major geology in Korea for 6 months from November, 2000 to April, 2001. Seasonal variations of soil-gas radon concentration are generally of greater magnitude than day-to-day fluctuations. The highest radon concentrations of 5,131 pCi/L measured during winter season and the lowest radon concentrations of 107 pCi/L during spring season. Two study areas, Bongcheon-dong(granite bedrock) and Seongnam-Yongin(gneiss bedrock) were investigated to assess the radon potential according to their field survey and emanation tests. The mean values of radon decrease in sequentially from Suji-A(813 pCi/L)>Suji-B(757 pCi/L)>Bundang-B(691 pCi/L)>Bundang-A(643 pCi/L)>Bongcheon-dong(513 pCi/L). Estimated soil-gas radon potential using maximum radon emanation ratios of each study area decreases in the order of Bongcheondong(950 pCi/L)>Suji-B(524 pCi/L)>Bundang-A(437 pCi/)>Bundang-B(259 pCi/L)>Suji-A(230 pCi/L) areas. The values of indoor radon and its daughter product concentrations in Bongcheon-dong area show that indoor basement rooms in poor ventilation condition could be classified as extremely high radon risk location of more than 4 pCi/L Rn and 0.02 WL.

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안트라사이트를 혼입한 시멘트 보드의 라돈흡착 특성 (Radon adsorption properties of cement board using anthracite)

  • 경인수;편수정;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2018년도 춘계 학술논문 발표대회
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    • pp.232-233
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    • 2018
  • Among the recent environmental pollution, indoor air pollution has an adverse effect on the health of indoor residents. Radon, one of the causes of indoor air pollution, is released from concrete, gypsum board and asbestos slate among building materials. Radon is a primary carcinogen and is a colorless, tasteless, odorless inert gas that adheres to airborne dust and enters the body through breathing. At this time, there is a risk of developing cancer if the alpha rays from the lononggas entering the human body destroys the lung tissue and is continuously exposed to a high concentration of lonon gas. The World Health Organization (WHO) has emphasized the reduction of radon and its exposure to radon by classifying it as a first-level carcinogen, but many people have not recognized it yet, and the research is underdeveloped. Therefore, this study was carried out to investigate the properties of adsorbed coconut radon to prevent the inflow of radon gas, which is an air pollution source of indoor air, and to prevent inflow into the human body.

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결합재 종류에 따른 분말활성탄소를 혼입한 경화체의 밀도 및 흡수율 특성 (Density and Water Absorption Properties of Matrix Mixing with Powdered Active Carbon according to Binder Type)

  • 편수정;김원종;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2017년도 추계 학술논문 발표대회
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    • pp.111-112
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    • 2017
  • Radon has been considered the greatest source of exposure within the total radiation exposure of the human body. xposure from radon, which exists in indoor air quality, lacks public perception, Radon, which exists anywhere on earth, is not regarded as a state of attention even if it is above the average level. Indoor radon exposure situations are not intentionally introduced, and essentially the attention and responsibilities of radon exposures are assumed to be in indoor occupants. So, these are caused by common uranium and thorium scattering on Earth, and are brought into the building by fine cracks or exposed indicators of the buildings. Therefore, this study aims to reduce the risk of radon rays and reduce radon, which induces diseases caused by breathing in the body of indoor air pollutants and emitting diseases by emitting alpha rays from the radon gas.

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활성탄소 입도에 따른 산화마그네슘 경화체의 공극특성과 흡착성능 평가 (Pore Characterisitics and Adsorption Performance Evaluation of Magnesium Oxide Matrix by Active Carbon Particle Size)

  • 편수정;이상수
    • 한국건축시공학회지
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    • 제18권1호
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    • pp.59-65
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    • 2018
  • 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.

서울대학교 관악캠퍼스 지역에서의 실내 라돈농도 분포 (Indoor Radon Levels in the Room of Kwanak Campus, Seoul National University)

  • 제현국;강치구;전효택
    • 자원환경지질
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    • 제31권5호
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    • pp.425-430
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    • 1998
  • The results of radon $(^{222}Rn)$ concentrations and working levels (WL) for forty rooms in Kwanak Campus, Seoul National University on granite bedrock of Jurassic age showed that radon concentration have mean value of 3.0 pCi/L and 0.011 for working level. A number of rooms where these values exceed the EPA's action level are five (13%). It was also suggested that indoor basement rooms in poor ventilation condition can be classified as extremely high radon risk zone having more than 4 pCi/L and 0.020 WL. It was proved that inflow of soil-gas was a primary factor that governs indoor radon level by comparison of soil-gas radon concentrations with indoor radon concentrations.

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G광역시 N유치원의 라돈 농도 (Radon Concentration at N-Kindergarten in G-City)

  • 박윤;김원준
    • 한국방사선학회논문지
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    • 제9권6호
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    • pp.421-424
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    • 2015
  • 본 연구는 G광역시 N유치원을 대상으로 창문을 닫고 열은 상태에서 라돈 가스를 측정하였다. 측정 결과 라돈가스를 측정한 N유치원의 실내 평균 라돈농도는 창문을 닫았을 때 2.9pCi, 창문을 열었을 때 0.8pCi로 미국 일반인 공기 중 라돈가스 최대허용농도 기준치인 4pCi 이하의 값으로 나타났다. 이러한 결과는 N유치원에서 라돈 가스에 대한 피폭은 문제가 되지 않으나 라돈 가스가 폐에 축척이 되면 폐암과 같은 피해를 입을 수 있다. 따라서 방어적 측면에서 유치원 내의 창문을 자주 열어 환기를 하는 것이 매우 중요함을 알 수 있었다.

안트라사이트를 활용한 산화마그네슘 보드의 실내 공기질 중 라돈가스 농도 저감 평가 (Evaluation of Decreasing Concentration of Radon Gas for Indoor Air Quality with Magnesium Oxide Board using Anthracite)

  • 편수정;임현웅;이상수
    • 한국건축시공학회지
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    • 제18권1호
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    • pp.9-15
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    • 2018
  • 지구상에 존재하는 라돈가스는 바위, 토양, 건축자재 등에서 방출되는 1급 발암물질로 유일한 기체상으로 존재하고 있다. 공기에 비해 무겁고 분자량이 커 하부에 가라앉아 있지만 이동성이 크다. 라돈가스는 특성상 실외에서 대기에 확산되지만 밀폐되고 환기가 어려운 실내공간의 농도는 수천 배까지 증가할 수 있다. 이러한 라돈가스의 위해성을 해결하기 위해 안트라사이트를 활용한 경화체의 라돈가스 저감 특성과 더불어 실내 마감재로 사용할 수 있는 기초 성능평가를 진행하였다. 기존 여과재로 사용된 안트라사이트를 사용하여 경화체를 제작하였으며, 기존 실내에서 사용된 건축자재 중 라돈을 방출하는 석고보드를 대체할 수 있는 시험을 진행하였다. 결합재로는 경소 마그네시아를 사용하였고, 경소마그네시아의 경화를 위해 염화마그네슘을 사용하였다. 흡착재로 사용된 안트라사이트의 치환율은 0, 10, 20, 30, 40, 50 (%)로 총 6수준으로 진행하였으며,W/B는 40%로 고정하였다. 시험항목은 휨파괴 하중, 열전도율, 라돈가스 농도를 진행하였으며, 양생조건은 항온항습 양생(습도 $80{\pm}5%$, 온도 $20{\pm}2^{\circ}C$)으로 진행하였다.