Seasonal variation of radon and CO2 in the Važecká Cave, Slovakia

IF 0.7 4区 物理与天体物理 Q4 CHEMISTRY, INORGANIC & NUCLEAR
Nukleonika Pub Date : 2020-05-29 DOI:10.2478/nuka-2020-0025
I. Smetanová, K. Holý, Ľubica Luhová, K. Csicsay, Dagmar Haviarová, L. Kunáková
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引用次数: 9

Abstract

Abstract The continuous monitoring of 222Rn activity concentration, CO2 concentration, and microclimatologic parameters (internal air temperature and relative humidity) in the Važecká Cave (Northern Slovakia) is being carried out at three monitoring stations, namely, Gallery, Lake Hall, and Entrance Hall. Radon activity concentration and CO2 concentration exhibited a clear annual variation. The daily average of radon concentration ranged 1300–27 700 Bq/m3 at the Lake Hall station and 3600–42 200 Bq/m3 at the Gallery station. Radon reached its maximum in the summer months, from June to September. The annual maximum of CO2 concentration is registered approximately one month later than radon maximum. The annual variation of radon and CO2 is controlled by the seasonal change of ventilation regime associated with the seasonal variation of the difference between the temperature measured inside the cave and the atmospheric temperature.
斯洛伐克Važecká洞穴中氡和CO2的季节变化
摘要对北斯洛伐克Važecká洞穴内的222Rn活性浓度、CO2浓度和小气候参数(室内温度和相对湿度)进行了连续监测,监测站分别为画廊、湖厅和入口厅。氡活度浓度和CO2浓度具有明显的年际变化。湖霍尔站氡日平均值为1300 ~ 27700 Bq/m3,画廊站氡日平均值为3600 ~ 42200 Bq/m3。氡在夏季的6 - 9月达到最大值。二氧化碳的年最高浓度比氡的年最高浓度大约晚一个月。氡和CO2的年变化受通风制度的季节变化和洞内测温与大气温度之差的季节变化的控制。
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来源期刊
Nukleonika
Nukleonika 物理-无机化学与核化学
CiteScore
2.00
自引率
0.00%
发文量
5
审稿时长
4-8 weeks
期刊介绍: "Nukleonika" is an international peer-reviewed, scientific journal publishing original top quality papers on fundamental, experimental, applied and theoretical aspects of nuclear sciences. The fields of research include: radiochemistry, radiation measurements, application of radionuclides in various branches of science and technology, chemistry of f-block elements, radiation chemistry, radiation physics, activation analysis, nuclear medicine, radiobiology, radiation safety, nuclear industrial electronics, environmental protection, radioactive wastes, nuclear technologies in material and process engineering, radioisotope diagnostic methods of engineering objects, nuclear physics, nuclear reactors and nuclear power, reactor physics, nuclear safety, fuel cycle, reactor calculations, nuclear chemical engineering, nuclear fusion, plasma physics etc.
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