• Title/Summary/Keyword: indoor radon concentration

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안트라사이트 치환율에 따른 경소마그네시아 경화체의 단열특성 (Heat Insulation Properties of Lightweight Magnesia Matrix According to Mixing Ratio of Anthracite)

  • 편수정;권오한;경인수;이동훈;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2017년도 춘계 학술논문 발표대회
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    • pp.113-114
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    • 2017
  • Recently, Subway workers have died from lung cancer. According to the Epidemiological Survey of the Welfare Corporation Institute of Pulmonary Disease of the Welfare Corporation, the family members applied for industrial accidents. The radon concentration in the subway work area was found to exceed 10 times the recommended standard value of 148 becquerels (Bq/㎥) in domestic multipurpose facilities. In addition, as a result of the national indoor radon concentration survey conducted by the Ministry of Environment in 2010 and 2013, housing was found to be over 100 becquerels (Bq/㎥) in 41% of the surveyed subjects. In addition, it was found that in 2012, 16.3% of villages exceeded the radon standard value in the survey on natural radioactive materials containing groundwater.

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Indoor radon and thoron from building materials: Analysis of humidity, air exchange rate, and dose assessment

  • Syuryavin, Ahmad Ciptadi;Park, Seongjin;Nirwono, Muttaqin Margo;Lee, Sang Hoon
    • Nuclear Engineering and Technology
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    • 제52권10호
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    • pp.2370-2378
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    • 2020
  • Building materials contribute significantly to the indoor radon and thoron levels. Therefore, parameters that influence the exhalation rates of radon and thoron from building material need to be analyzed closely. As a preliminary study, the effects of humidity on exhalation rates were measured using a system with an accumulation chamber and RAD7 detector for Korean brick, Korean soil, and Indonesian brick. Resulting doses to a person who resides in a room constructed from the building materials were assessed by UNSCEAR method for different air exchange rates. The measurements have revealed that Korean brick exhaled the highest radon and thoron while Indonesian brick exhaled the lowest thoron. Results showed that for a typical low dense material, radon and thoron exhalation rate will increase until reached its maximum at a certain value of humidity and will remain saturated above it. Analysis on concentration and effective dose showed that radon is strongly affected by air exchange rate (ACH). This is showed by about 66 times decrease of radon dose from 0.00 h-1 to those of 0.50 h-1 ACH and decrease by a factor of 2 from 0.50 h-1 to those of 0.80 h-1. In case of thoron, the ACH doesn't have significant effects on effective dose.

서울시 지하철역사의 라돈농도분포 조사 (Distribution of Radon Concentration at Subway Station in Seoul)

  • 이철민;김윤신;김종철;전형진
    • 한국환경보건학회지
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    • 제30권5호
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    • pp.469-480
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    • 2004
  • The radon concentrations were measured to survey distribution of radon concentrations in Seoul subway stations. The radon concentrations in air and water were measured at seventeen subway stations(Mapo, Chungjongno, Sodaemun, Kwanghwamun, Chongno3ga, Ulchiro4ga, Tangdaemun, Sangildong on Line 5;Nowon, Chunggye, Hagye, Kongnung, Taenung, Mokkol, Chunghwa, Sangbong, Myomok on Line 7) using the $RAdtrak^{TM}$ radon gas detector, Pylon AB-5 continuous passive radon detector and liquid scintillation counting method from January to May 1999. The major results obtained from this study were as follows: The long-term mean concentrations of radon were $61.8\;Bq/m^3$ in office, $78.9\;Bq/m^3$ in platform, $38.2\;Bq/m^3$ in concourse and $20.1\;Bq/m^3$ in outdoor, respectively. These levels were less than the action level ($148\;Bq/m^3$) of the U.S. EPA. The highest level of short-term mean concentrations was $116.55\;Bq/m^3$ at Chongno3ga station on the 5th line subway stations, while the lowest mean concentration was $19.55\;Bq/m^3$ at Mokkol station on the 7th line subway stations. The highest concentration of radon in the road water and storing underground water in the subway stations was $234.7\;KBq/m^3\;and\;155.5\;KBq/m^3$ in Sodaemun subway station, respectively. The results suggest that radon concentration in subway stations seems to be affected by ventilation and radon concentratin in underground water in the subway stations.

탄화슬러지 치환율에 따른 시멘트 경화체의 특성 (Properties of Cement Matrix According to Carbonized Sludge Replacement Ratio)

  • 박채울;김연호;최병철;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 가을 학술논문 발표대회
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    • pp.143-144
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    • 2020
  • For modern people who spend 80% of the day indoors, indoor air quality is an important factor in their lives. Radon and fine dust, which are indoor air quality pollutants, cause various diseases and lung diseases, so a method is needed to reduce them. Therefore, this study intends to utilize the air pollutant adsorption properties of the carbonized sludge by using the carbonized sludge generated through drying and carbonization of the sludge. As a result of the experiment, it was shown that the concentration of radon and fine dust gradually decreased as the replacement ratio of carbonized sludge increased. The reason is that the carbonized sludge has the ability to adsorb fine dust and radon, so it is considered that it gradually decreases as the replacement ratio increases. Also, the compressive strength and flexural strength tend to decrease gradually. The reason for this is that the carbonized sludge has a number of internal voids, and as the replacement ratio increases, the internal voids increase and the strength decreases. If the refinement and strength of the carbonized sludge replacement ratio are supplemented, it is believed that it will be able to replace the existing finishing materials.

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지구화학환경에서의 라돈농도분포와 라돈농도의 지배요인(사례연구) (Radon distribution in geochemical environment and controlling factors in Radon concentration(Case study))

  • 전효택
    • 지질공학
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    • 제10권2호
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    • pp.189-214
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    • 2000
  • 기반암별로 구획화된 지역(서울대학교 관악캠퍼스, 경기도 가평, 충북 보은)에서의 사례연구결과, 화강암질 암석의 잔류토양에서 라돈농도가 상대적으로 높은 값을 나타냈다. 이는 기반암에 따른 우라늄의 지구화학적 분포의 차이가 1차적 원인으로 작용했기 때문이라 판단된다. 라돈의 발산율에 영향을 미치는 토양의 함수율과 우라늄-라듐간의 방사는평형도 토양가스 중 라돈농도를 지배하는 2차적 요인임이 실험에 의해 증명되었다. 서울대학교 관악캠퍼스 지역에서 선정한 40개의 실내공간에서 라돈 및 리돈후대핵종농도 분포를 조사한 결과, 지하실에 위치하면서 환기가 불량한 일부 실내공간에서 EPA의 라돈 기준치인 4pCi/L을 초과하는 농도를 나타냈다. 또한, 실내에서의 라돈농도와 비교한 결과, 일반적으로 양의 상관성을 보여, 토양가스가 실내라돈유입의 주 원임이 확인되었다. 단층이 위치한 경주 및 가평지역에서 단층선과의 거리에 따른 라돈농도분포를 조사한 결과, 일부 지역에서 단층구조의 영향으로 인해 라돈의 이동성이 증가하여, 해당 토양의 우라늄함량만으로는 설명할 수 없는 라돈이상치가 나타났다.

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라돈 저감형 기능성 보드제작을 위한 흡착재의 라돈 저감 성능 (Radon Reduction Performance of Adsorbent for Making Radon-Reducing Functional Board)

  • 김기훈;편수정;김연호;이상수
    • 한국건축시공학회지
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    • 제19권2호
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    • pp.139-147
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    • 2019
  • 본 연구는 최근 방사능 물질의 위험성에 대한 관심이 커지며 원전사고 등의 대규모 인명 피해와 위험지역 선정 등의 이유로 인체의 방사능 안전성에 대한 관심이 커지면서 요구되는 실내 건축용 마감재에 대한 것이다. 일상에서 방사능에 노출되는 여러 가능성 중 실내 공기 중 라돈가스에 대한 관심이 커지면서 라돈가스 흡착형 경화체에 대한 기초연구 자료를 제시한다. 본 연구에 흡착재로 활용된 재료는 규조토와 실리카겔로, 천연 흡착재인 규조토와 인공 흡착재인 실리카겔의 기초 성능 및 흡착 성능을 평가하였다. 향후 실내 공기 중 라돈가스 농도 저감에 대한 정밀한 추가 실험에 대한 연구결과가 필요할 것으로 예상되고, 실험결과에 따른 인공 흡착재인 실리카겔의 라돈가스 흡착 가능성을 기대한다.

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.

대전시(大田市) 지역(地域) 라돈 환경(環境) 지화학(地化學) 연구(硏究) (Environmental Geochemistry of Radon at the Taejon City Area in Korea)

  • 홍영국
    • 자원환경지질
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    • 제30권1호
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    • pp.51-60
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    • 1997
  • The high radon (Rn222) potentials of soil, groundwater, hotspring and indoor environments in the Taejon city area were delineated by use of an EDA RDA-200 radon detector. The U and Th contents were also analysed using a Multi Channel Analyzer to illustrate the sources of the radon potentials. The average U concentrations in Taejon vary according to the type of granites such as $4.14{\pm}2.36ppm$ in schistose granite (SG), $3.13{\pm}1.70ppm$ in biotite granite (BG) and $3.01{\pm}1.95ppm$ in two mica granite (TG). The U contents in the granites are closely related with the amounts of uraniferous minerals. However, the U contents in the soil are found to be $5.05{\pm}4.75ppm$ in TG, $4.07{\pm}1.69ppm$ in BG and $3.87{\pm}1.91ppm$ in SG which are mainly explained by the different cation exchange capacities (CEC) of the soils from various granites. The levels of soil radon are $552{\pm}656pCi/l$ in SG, in which levels at two locations exceed the level of 1,350 pCi/l established as guideline for follow-up action by the U.S. Environmental Protection Agency (EPA), $443{\pm}284pCi/l$ in TG and $224{\pm}115pCi/l$ in the BG. The soil radon concentrations are found to be proportional to the U content and hardness of the soils. The groundwater radon concentrations in the domestic wells of - 30~-100 m depth show that $6,907{\pm}4,665pCi/l$ in TG, $5,503{\pm}6,551pCi/l$ in SG and $2,104{\pm}1,157pCi/l$ in BG which are positively related with U contents in soils. The radon levels of six groundwater wells in TG and two in SG are greater than guideline for drinking water level, 10,000 pCi/l by EPA (1986). Average radon contents of hotsprings and public bathes in the TG area are $7,071{\pm}1,942pCi/l$ and $1,638{\pm}709pCi/l$, respectively, which are below the EPA standard for remedial action value of the 10,000 pCi/l. The mean indoor radon concentrations of the TG and SG areas are $1.60{\pm}1.20pCi/l$ and $1.60{\pm}0.70pCi/l$, respectively. The elevated indoor radon levels of 5.6 pCi/l and 6.7 pCi/l are found to be particularly in TG area, which exceeds 4 pCi/i guideline, correlating positively with the U contents in the soil and radon concentration in the groundwater.

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대나무 활성탄을 활용한 고로슬래그 경화체의 라돈흡착 특성 (Radon Adsorption Characteristics of Blast Furnace Slag Matrix Using Bamboo Activated Carbon)

  • 박채울;이재훈;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2019년도 춘계 학술논문 발표대회
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    • pp.27-28
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    • 2019
  • Recently, a bed company detected a radon more than Red Politics and became a hot topic of conversation. This has led to increased interest in radon, and a number of free-of-charge bodies have also been established to recognize the dangers of radon. In addition, the Korean Institute of Geological and Resource Research is planning to assist the installation of radon alarm systems in 10,000 households nationwide, free of charge. Since radon is a colorless, odorless and tasteless gas that causes lung cancer, it aims to reduce lung cancer incidence by absorbing radon using bamboo activated carbon as a way to reduce it. Due to the use of bamboo activated carbon, radon concentration per hour tends to decrease as substitution rate increases, and table flow tends to decrease as substitution rate increases. Through this experiment, 30% of the replacement rate of bamboo activated carbon is judged to be the most suitable replacement rate.

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