• 제목/요약/키워드: Water radon concentration

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광주지역 지하수 중 우라늄과 라돈의 함량 분포 특성 (Distribution Characteristics of Uranium and Radon Concentrations of Groundwater in Gwangju Area)

  • 서희정;민경우;박지영;박주현;황호연;박세일;김선정;정숙경;배석진;김성준
    • 한국환경보건학회지
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    • 제48권2호
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    • pp.86-95
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    • 2022
  • Background: As high concentrations of uranium and radon have been detected in some areas in Korea, it is considered necessary to investigate natural radioactive materials in the Gwangju area. Objectives: This study aimed to identify the hydrochemical characteristics of groundwater in Gwangju and investigate the distribution characteristics of uranium and radon, which are naturally radioactive substances. Methods: To determine the uranium and radon concentrations in groundwater according to the geology of the Gwangju area, we measured 62 groundwater wells. A geological distribution map of uranium and radon content was prepared for this study. Results: The groundwater type, defined using a Piper diagram, was mainly Ca-HCO3. The concentration of uranium in the groundwater ranged from 0 to 29.3 ㎍/L, with a mean of 3.3 ㎍/L and a median of 0.9 ㎍/L. The median concentration of uranium in groundwater was highest in alluvium, granitic gneiss, and biotite granite (classified by geological unit), in that order. The concentration of radon in the groundwater ranged from 4.8 to 313.2 Bq/L, with a mean of 75.6 Bq/L and a median of 59.6 Bq/L. The median concentration of radon in groundwater was highest in biotite granite, alluvium, and granitic gneiss, in that order. As a result of the correlation analysis of groundwater in the study area, there was no significant correlation between uranium and radon. Conclusions: In this study area, uranium was shown to be far below the concentrations allowed by drinking water quality standards, but radon concentrations exceeded drinking water quality monitoring standards in 11% of the samples. It was judged that appropriate measures, such as the installation of radon reduction facilities, will be required after a thorough review of high-concentration radon detection sites of in the research area.

국내 실내 라돈농도와 연간 피폭선량 예측에 관한 연구 (A Study of Radon Concentration in First Floor and Basement and Prediction of Annual Exposure Rate in Korea)

  • 이종대;김윤신;손부순;김대선
    • 한국환경과학회지
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    • 제15권4호
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    • pp.311-317
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    • 2006
  • The purpose of this study was to investigate Rn concentration and annual radiation exposure level in the basement and first floor. The Rn Cup monitors were placed in different environments such as shopping stage, office building, Apartment, Hospital, house in Seoul from Match 1996 to April 1997 and CR-39 films were collected every two months. The mean radon concentration in the basement of house($88.6\;Bq/m^3$) showed the highest level among the areas, while radon concentration on the first floor of house($50.5\;Bq/m^3$) showed the higher than other areas. The annual radiation exposure dose that person on the floor / in the basement of differential place in the seoul can be exposed during living was estimated from 24.11 to 87.64 mRem/yr. This radiation dose is significantly lower than 130mRem maximum radiation dosage from the radon nuclide prescribed by the ICRP, with respect to the overall average exposure of the working adult. this study indicated that possible radon sources on the first floor / in the basement areas are radon intrusion from soil gas, construction materials, or ground water leaking. Further study is needed to quantitatively assess major contributions of radon-222 and health effect to radon exposure.

The presence of carcinogenic radon in the Padma River water, adjacent to the Rooppur Nuclear Power Plant

  • M.M. Mahfuz Siraz;M.S. Alam;Jubair A.M.;S.C. Das;J. Ferdous;Z. Hossain;S. Das;Mayeen Uddin Khandaker;D.A. Bradley;Shinji Tokonami;S. Yeasmin
    • Nuclear Engineering and Technology
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    • 제55권8호
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    • pp.3046-3053
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    • 2023
  • Radon is a naturally occurring carcinogenic agent, poses a serious health hazard when inhaled or ingested in significant amounts. The water of the Padma river will be used as a tertiary coolant for the soon-to-be-commissioned 'Rooppur Nuclear Power Plant'. Hence, it is important to assess the radiological status of the river prior to the commission of this power plant. Therefore, for the first time, 25 samples of water were collected from various locations of the Padma River and analyzed for radon concentration using the RAD H2O (DURRIDGE) radon monitoring device. The radon concentrations were found in the range from 0.077 ± 0.036 to 0.494 ± 0.211 Bq/L with a mean of 0.250 ± 0.093 Bq/L. All the concentrations were found to be below the recommended limits of WHO (100 Bq/L) and USEPA (11.1 Bq/L). The mean annual effective dose due to the radon exposure via inhalation and ingestion pathways were 0.638 µSv/y and 0.629 µSv/y, respectively, which were all well below the annual effective dose recommended by WHO (0.1 mSv/y). Since Bangladesh lacks a national safety limit of radon in water, this pioneering study provides baseline data on radon levels for the environment around Rooppur Nuclear Power Plant.

부산지역 일반주택에서의 라돈농도측정 (Radon concentration measurement at general house in Pusan area)

  • 임인철
    • 대한방사선기술학회지:방사선기술과학
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    • 제27권2호
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    • pp.29-33
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    • 2004
  • 1980년대 초까지 우리들은 라돈이 우리의 건강을 해친다는 생각을 하지 못하고 살아 왔다. 그러나 과학자들은 오래 전부터 우리가 사는 실내에 라돈 방사능의 위험이 도사리고 있다는 사실을 알게 되었다. 특히 우리나라에서는 라돈에 대한 위해와 인체에 미치는 영향에 대한 관심이 저조하다. 최근 들어 라돈 오염에 대한 의식을 가지고 서울 지하철의 일부 역, 학교 시설의 실내 공기, 주택 내 공기 중 라돈 문제의 중요성과 위험성에 대해 알리고 측정, 관리하는 관심을 가지게 되었다. 일반적으로 건물의 지반에서 방출된 라돈가스가 건물 바닥 갈라진 틈새 등을 통해 실내로 들어옴으로써 라돈이나 라돈낭핵종의 실내 공기 중 농도는 증가하게 된다. 따라서, 균열된 건물 바닥의 틈, 지하로부터 실내로 들어오는 상하수 파이프와 지반 사이에 틈새가 많을 수록 실내의 라돈 농도는 높아진다. 이와 같이, 라돈은 지각 뿐만 아니라 건축 자재물 상수, 취사용 천연가스 등을 통해서도 실내로 들어오지만 라돈의 85%이상은 지각으로부터 방출된 것이다. 폐암의 한 원인으로 지목 받는 라돈과 라돈 낭핵종에 의한 건강상의 위해는 토양 중 우라늄의 함량이 높은 지역과 광산의 갱내, 동굴, 주택과 같이 밀폐된 공간에서 특히 높아진다. 라돈 농도의 안전한 준위란 알 수 없으며 크든 작든 간에 항상 위험이 존재한다. 그러므로 중요한 것은 주택 및 건물 내에서 라돈의 농도를 낮춤으로써 폐암의 위험을 감소시키는 것이다. 따라서 일반 주택 라돈 농도 측정이 필요한 것으로 생각되어, 신틸레이터 라돈 모니터를 이용하여 월별로 라돈 농도를 측정하였다. 연구결과는 지상보다는 지하가 1년 내내 높게 나타났으며, 여름보다는 겨울이 높게 나타났다. 특히 미국 환경 보호청이 권고하는 주택 내 4 pCi를 넘는 달은 지하 내에서만 나타났으며, 12개월 중 4개월로 나타나 라돈 피폭 심각성을 알게 되었다. 그러므로 라돈에 관한 기준치의 설정과 규제 및 저감 대책의 마련이 시급하다는 생각이 들며, 라돈 농도 측정한 결과를 알리고자 한다.

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음용 지하수 중 라돈 자연저감 특성 (Natural Reduction Characteristics of Radon in Drinking Groundwater)

  • 노회정;정도환;윤정기;김문수;주병규;전상호;김태승
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제16권1호
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    • pp.12-18
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    • 2011
  • To investigate the natural reduction characteristics of radon with a short half-life (3.82 day) in drinking Qgroundwater, we analyzed the changes of radon concentrations of groundwater, waters in storage tanks, and tap waters from the small-scale groundwater-supply systems (N = 301) by LSC (Liquid Scintillation Counter). We also analyzed the concentrations of uranium (half-life 4.5 billion years) in the waters by ICP/MS to compare with natural reduction of radon concentration. The radon concentrations of 68 groundwater-supply systems occupying 22.6% of the total samples exceeded the US EPA's Alternative Maximum Contaminant Level (AMCL : 4,000 pCi/L), with the average radon concentration of 7,316 pCi/L (groundwaters), 3,833 pCi/L (tank waters) and 3,407 pCi/L (tap waters). Compared to the radon levels of pumped groundwaters, those of tank and tap waters naturally reduced significantly down to about 50%. Especially, in case of 29 groundwater-supply systems with the groundwater radon concentrations of 4,000~6,000 pCi/L, average radon concentrations of the tank and tap waters naturally decreased down to the AMCL. Therefore this study implies that radon concentrations of drinking groundwater can be effectively reduced by sufficient storage and residence in tanks.

부산 해안지역의 물의 라돈 농도와 지하수 유출 특성 (Characterizing Groundwater Discharge and Radon Concentration in Coastal Waters, Busan City)

  • 옥순일;함세영;이용우;차은지;김상현;김인수;김부근
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제16권5호
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    • pp.53-66
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    • 2011
  • Groundwater which infiltrated in recharge areas discharges in the forms of evapotranspiration, baseflow to streams, groundwater abstraction and eventually flows into the sea. This study characterized radon-222 concentration and electrical conductivity (EC) in coastal groundwater discharge, well groundwater, Ilkwang Stream water, and seawater in the coastal area of Busan Metropolitan City and subsequently estimated groundwater discharge rate to the sea. The median value of Rn-222 concentration is highest in well groundwater (18.36 Bq/L), and then decreases in the order of coastal groundwater discharge (15.92 Bq/L), Ilkwang Stream water (1.408 Bq/L), and seawater (0.030 Bq/L). The relationship between Rn-222 concentration and EC values is relatively strong in well groundwater and then in seawater. However, the relationship is not visible between coastal groundwater discharge and Ilkwang Stream water. The groundwater discharge rate to the sea is estimated as $3,130m^3$/day by using radon mass budget model and $16,788m^3$/day by using Darcy's law.

지역별 지하수중 우라늄과 라돈의 함량 분포 특성 (Distribution Characteristics of Uranium and Radon Concentration in Groundwaters of Provinces in Korea)

  • 정도환;김문수;주병규;김태승
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제16권6호
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    • pp.143-149
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    • 2011
  • In order to figure out the characteristics of radionuclides concentrations of nine provinces, we analyzed uranium and radon in 681 samples of groundwater. Most of uranium concentrations in each province were less than $10{\mu}g/L$, and Gyeongnam, Jeonnam, Jeju provinces did not have groundwaters exceeding the US EPA drinking water MCL ($30{\mu}g/L$) of uranium. The ratio of radon values exceeding US EPA drinking water AMCL (4,000 pCi/L) was 22.6% (154/681) and Gyeongnam and Jeju provinces had no groundwaters exceeding the AMCL (alternative maximum contaminant level). Uranium and radon concentrations in groundwaters of Gyeonggi, Chungbuk, Jeonbuk, Chungnam mainly composed of the Mesozoic granite and the Precambrian gneiss were relatively high, but the concentrations of Gyeongnam and Jeju widely comprised of the sedimentary rock and the volcanic rock were relatively low. A week correlation between uranium and radon values showed in Gangwon, Chungbuk, Gyeonggi provinces.

Health risk assessment for radon of groundwater in Korea

  • Kim, Yeshin;Kim, Jinyong;Park, Hoasung;Park, Soungeun;Dongchun Shin
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 2003년도 추계국제학술대회
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    • pp.170-170
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    • 2003
  • An initial study has been conducted with Korea Institute of Geoscience and Mineral resources and National Institute of Environment Research to evaluate the distribution of radon levels and their risk levels of groundwater in Korea. Probability distribution of 616 samples was log-normal one with 1,867pCi/L as arithmetic value, 920pCi/L as median and 40,010pCi/L as maximum during iou. years(1999-2002). In addition, 10% of total samples are in excess of 4,000pCi/L, 20% in excess of 2,700pCi/L, and 30% in excess of 1,700pCi/L, and 15 samples exceeds 10,000pCi/L. Total samples are grouped into 10 areas and 5 rocks unit, and difference of concentrations among areas and rocks are statistically significant(respectively, p<0.0001). The highest area is Daejeon located in ogcheon metamorphic rocks and granitic rocks, and most of all sites with high concentration sites are located in granitic rocks. The lowest area is Jeju located in volcanic rocks. We have estimated excess cancer risks of radon based on these data. To estimate risks, first of all, use patterns of groundwater are categorized with 6 groups: for drinking, household, farming, washing cars, raising stock, and others. We considered risk only for drinking water and household water because radon is rapidly dispersed before it of other use reach human respiratory organs. We select 565 samples for risk analysis, and applied unit risk which is 6.6210-7 per pCi/L to be recommended by NAS committee. Unit risk was derived from considering radon ingestion and radon inhalation from water use. When estimating risk, we analyzed PDF of concentration and represented risk as 50 and 95 percentile values to consider uncertainty with Monte-Carlo simulation. It results in 10-4 level of their excess cancer risk and in 10-2 level in some areas with high concentration of radon. It must be monitor periodically and take adequate actions in these risky sites. We recommend that it needs to take more survey and finally set guideline for radon regulation in groundwater.

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다른 습도조건하에서 Po-218 이온들의 극소입자형성에 관한 연구 (Formation of Ultra fine Particle by the Polonium-218 Ions under Different Humidity Conditions)

  • 윤석철;하정우
    • Journal of Radiation Protection and Research
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    • 제17권1호
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    • pp.1-10
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    • 1992
  • 물분자와 전리방사선과의 상호작용에 의하여 생성된 방사능극소입자에 관한 많은 연구결과가 보고되어 왔으며, 특히 이전 연구에서는 물분자의 방사성분해에 의해 발생한 수산화라디칼의 높은 농도는, 유기물기체와 같은 실내기체와 반응즉시 낮은 증기압의 화학물로 변하여 극소입자가 된다고 알려져 왔다. 본 연구에서는, 라돈의 첫째딸핵종인 Po-218에 대한 물분자와의 의존성을 조사할 목적으로, 실내기체의 최적제어가 가능한 라돈챔버를 사용하여 일련의 실험들을 수행하였다. 특별히 설계 제작된 평행등급 금속망필터시스템을 사용하여, 서로 다른 습도조건하에서 0.5-100nm 크기의 라돈딸핵종에 대한 방사능크기분포도가 얻어졌으며, 그 결과가 분석되었다. 라든가스챔버내에 수증기분자의 첨가와 동 수증기분자의 방사성분해에 의하여 생성된 수산화라디칼에 의한 극소입자들의 형성을 확인하였는데 이는 수증기의 방사성분해과정에서 Po-218이온과 수증기분자 사이에 중화과정 때문인 것으로 밝혀졌다.

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서울지역 라돈농도의 분포예측을 위한 공간분석법 연구 (Studies on the Spatial Analysis for Distribution Estimation of Radon Concentration at the Seoul Area)

  • 백승아;이태정;김신도;김동술
    • 한국대기환경학회지
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    • 제24권5호
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    • pp.538-550
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    • 2008
  • Radon is an invisible, odorless, and radioactive gas. It is formed by the disintegration of radium, which is a decay product of uranium. Some amounts of radon gas and its products are present ubiquitously in the soil, water, and air. Particularly high radon levels occur in regions of high uranium content. Although radon is permeable into indoor environment not only through geological features (bed rock and permeability) but also through the construction materials and underground water, the radiation from the geological features is generally main exposure factor. So there can be a problem in a certain space such as the underground and/or relatively poor ventilation condition. In this study, a GIS technique was used in order to investigate spatial distribution of radon measured from sub- way stations of 1 thru 8 in Seoul, Korea in 1991, 1998, 2001, and 2006. Spatial analysis was applied to reproduce the radon distribution. We utilized spatial analysis techniques such as inverse distance weighted averaging (IDW) and kriging techniques which are widely used to relate between different spatial points. To validate the results from the analyses, the jackknife technique for an uncertainty test was performed. When the number of measuring sites was less than 100 and also when the number of omitted sites increased, the kriging technique was better than IDW. On the other hand, when the number of sites was over 100, IDW technique was better than kriging technique. Thus the selection of analytical tool was affected sensitives by the analysis based on the number of measuring sites.