Abstract
본 연구는 제주지역에서 온실 내 냉난방 및 <TEX>$CO_2$</TEX> 공급 목적으로 지하공기를 이용하는 14개 농업 시설을 대상으로 약 3개월 동안 지하공기 이용 온실과 미이용 공간 내 라돈 농도 및 지하공기 이용 시설의 가동에 따른 지하공기 유입구 내 라돈 농도 분포를 조사하였다. 장기간 라돈 농도는 수동형 알파 입자비적 검출기(Raduet, Radosys Ltd., Hungary)로, 실시간 라돈 농도는 능동형 연속측정 검출기(RAD7, Durridge Co., USA)를 이용하여 측정하였다. 지하공기 이용 온실 내 라돈 농도는 지하공기 미이용 공간과 국내 가옥의 실내 평균값보다 높은 범위였으며, 대부분 농업 시설에서는 국제방사선 방호위원회에서 권고한 근무지에서의 참조준위 1,000 Bq/<TEX>$m^3$</TEX> 보다 낮은 반면 한 개 지점에서는 높은 결과를 보였다. 장기간 및 실시간 지하공기 이용 시설의 가동에 따른 유입구의 라돈 농도 분포는 각각 1,228~5,259 및 3,322~17,900 Bq/<TEX>$m^3$</TEX> 범위로 지역적인 차이를 보였다. 본 연구 결과, 지하공기 중 라돈 농도는 농업 시설이 위치한 지역의 지질 특성 및 시추공 깊이와 밀접한 관계가 있을 것으로 판단된다. BACKGROUND: A preliminary investigation of the radon (<TEX>$^{222}Rn$</TEX>) concentration has been conducted, employing solid-state nuclear-track detectors (SSNTD) and a continuous radon monitor (CRM), for fourteen randomly selected agricultural greenhouses in Jeju Island, where the underground-air was used for air conditioning and <TEX>$CO_2$</TEX> supplement. METHODS AND RESULTS: The SSNTD was used to measure the average radon concentration for three months and the CRM was used for an instantaneous measurement. In order to obtain the radon concentration of a greenhouse, the SSNTDs were placed at a number of evenly distributed points inside the greenhouse and the mean of the measured values was taken. In addition, in order to assess the radon concentration of the underground-air itself, measurement was also made at the borehole of the underground-air in each agricultural facility, employing both the SSNTD and CRM. It is found that the radon concentration of the greenhouses ranges higher than those not using the underground-air and the average of Korean dwellings. While the radon concentration of most agricultural facilities is still lower than the reference level (1,000 Bq/<TEX>$m^3$</TEX>) recommended by the International Radiation Protection Committee (ICRP), three facilities at one site show higher concentrations than the reference level. The three-month-averaged radon concentration and the instantaneous radon concentration of the underground-air itself ranges 1,228- 5,259 and 3,322-17,900 Bq/<TEX>$m^3$</TEX>, respectively, and regional variation is more significant. CONCLUSION: From this results, radon concentration of the underground-air is assumed that it is associated with the geological characteristics and the boring depth of the region located of their.
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