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Soil heat flux and air temperature as factors of radon (Rn-222) concentration in the near-ground air layer


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Turekian, K. K., Nozaki, Y., & Benninger, L. K. (1977). Geochemistry of atmospheric radon and radon products. Annu. Rev. Earth Planet. Sci., 5, 227–255.TurekianK. K.NozakiY.BenningerL. K.1977Geochemistry of atmospheric radon and radon productsAnnu. Rev. Earth Planet. Sci.522725510.1146/annurev.ea.05.050177.001303Search in Google Scholar

Lambert, G., Polian, G., Sanak, J., Ardouin, B., Buisson, A., Jegou, A., & le Roulley, J. C. (1982). Cycle du radon et de ses descentants: applicationà l’étude des échanges troposphère-stratosphère. Ann. Géophys., 38, 497–531.LambertG.PolianG.SanakJ.ArdouinB.BuissonA.JegouA.le RoulleyJ. C.1982Cycle du radon et de ses descentants: applicationà l’étude des échanges troposphère-stratosphèreAnn. Géophys.38497531Search in Google Scholar

Eisenbud, M. (1987). Environmental radioactivity (3rd ed.). San Diego: Academic Press.EisenbudM.1987Environmental radioactivity3rd ed.San DiegoAcademic PressSearch in Google Scholar

Wigand, A., & Wenk, F. (1928). Der Gehalt der Luft an Radium-Emanation, nach MessungenbeiFlugzeugaufstiegen. Ann. Lpz. Phys., 86, 657–686.WigandA.WenkF.1928Der Gehalt der Luft an Radium-Emanation, nach MessungenbeiFlugzeugaufstiegenAnn. Lpz. Phys.8665768610.1002/andp.19283911302Search in Google Scholar

Pearson, J. E., & Jones, G. E. (1965). Emanation of radon 222 from soil and its use as a tracer. J. Geophys. Res., 70, 5279–5290.PearsonJ. E.JonesG. E.1965Emanation of radon 222 from soil and its use as a tracerJ. Geophys. Res.705279529010.1029/JZ070i020p05279Search in Google Scholar

Prospero, J. M., & Carlson, T. N. (1970). Radon-222 in North Atlantic trade winds: its relationship to dust transport from Africa. Science, 167, 974–977.ProsperoJ. M.CarlsonT. N.1970Radon-222 in North Atlantic trade winds: its relationship to dust transport from AfricaScience16797497710.1126/science.167.3920.9745411175Search in Google Scholar

Sakashita, T., Murakami, T., Iida, T., Ikebe, Y., Suzuki, K., & Chno, M. (1994). The numerical model on three dimensional atmospheric transport with application to the transport of 222Rn. J. Atmos. Electr., 14, 57–62.SakashitaT.MurakamiT.IidaT.IkebeY.SuzukiK.ChnoM.1994The numerical model on three dimensional atmospheric transport with application to the transport of 222RnJ. Atmos. Electr.14576210.1541/jae.14.57Search in Google Scholar

Jacob, D. J., Prather, M. J., Rasch, P. J., Shia, R.-L., Balkanski, Y. J., & Beagley, S. R. (1997). Evaluation and intercomparison of global atmospheric transport models using 222Rn and other short lived tracers. J. Geophys. Res., 102(D5), 5953–5970.JacobD. J.PratherM. J.RaschP. J.ShiaR.-L.BalkanskiY. J.BeagleyS. R.1997Evaluation and intercomparison of global atmospheric transport models using 222Rn and other short lived tracersJ. Geophys. Res.102D55953597010.1029/96JD02955Search in Google Scholar

Arnold, D., Vargas, A., Vermeulen, A. T., Verheggen, B., & Seibert, P. (2010). Analysis of radon origin by backward atmospheric transport modelling. Atmos. Environ., 44(4), 494–502.ArnoldD.VargasA.VermeulenA. T.VerheggenB.SeibertP.2010Analysis of radon origin by backward atmospheric transport modellingAtmos. Environ.44449450210.1016/j.atmosenv.2009.11.003Search in Google Scholar

Chambers, S., Zahorowski, W., Matsumoto, K., & Uematsu, M. (2009). Seasonal variability of radon-derived fetch regions for Sado Island, Japan, based on 3 years of observations: 2002–2004. Atmos. Environ., 43(2), 271–279.ChambersS.ZahorowskiW.MatsumotoK.UematsuM.2009Seasonal variability of radon-derived fetch regions for Sado Island, Japan, based on 3 years of observations: 2002–2004Atmos. Environ.43227127910.1016/j.atmosenv.2008.09.075Search in Google Scholar

Zahorowski, W., Chambers, S., Wang, T., Kang, C. H., Uno, I., Poon, S., Oh, S. N., Werczynski, S., Kim, J., & Henderson-Sellers, A. (2005). Radon-222 in boundary layer and free tropospheric continental outflow events at three ACE-Asia sites. Tellus B, 57(2), 124–140.ZahorowskiW.ChambersS.WangT.KangC. H.UnoI.PoonS.OhS. N.WerczynskiS.KimJ.Henderson-SellersA.2005Radon-222 in boundary layer and free tropospheric continental outflow events at three ACE-Asia sitesTellus B57212414010.3402/tellusb.v57i2.16776Search in Google Scholar

Chambers, S., Williams, A. G., Zahorowski, W., Griffiths, A., & Crawford, J. (2011). Separating remote fetch and local mixing influences on vertical radon measurements in the lower atmosphere. Tellus B, 63(5), 843–859.ChambersS.WilliamsA. G.ZahorowskiW.GriffithsA.CrawfordJ.2011Separating remote fetch and local mixing influences on vertical radon measurements in the lower atmosphereTellus B63584385910.1111/j.1600-0889.2011.00565.xSearch in Google Scholar

Chambers, S. D., Williams, A. G., Crawford, J., & Griffiths, A. D. (2015). On the use of radon for quantifying the effects of atmospheric stability on urban emissions. Atmos. Chem. Phys. Discuss., 14(18), 25411–25452.ChambersS. D.WilliamsA. G.CrawfordJ.GriffithsA. D.2015On the use of radon for quantifying the effects of atmospheric stability on urban emissionsAtmos. Chem. Phys. Discuss.1418254112545210.5194/acp-15-1175-2015Search in Google Scholar

Chambers, S. D., Wang, F., Williams, A. G., Xiaodong, D., Zhang, H., Lonati, G., Crawford, J., Griffiths, A. D., Ianniello, A., & Allegrini, I. (2015). Quantifying the influences of atmospheric stability on air pollution in Lanzhou, China, using a radon-based stability monitor. Atmos. Environ., 107(2), 233–243.ChambersS. D.WangF.WilliamsA. G.XiaodongD.ZhangH.LonatiG.CrawfordJ.GriffithsA. D.IannielloA.AllegriniI.2015Quantifying the influences of atmospheric stability on air pollution in Lanzhou, China, using a radon-based stability monitorAtmos. Environ.107223324310.1016/j.atmosenv.2015.02.016Search in Google Scholar

Griffiths, A. D., Parkes, S. D., Chambers, S. D., McCabe, M. F., & Williams, A. G. (2013). Improved mixing height monitoring through a combination of lidar and radon measurement. Atmos. Meas. Tech., 6(2), 207–218.GriffithsA. D.ParkesS. D.ChambersS. D.McCabeM. F.WilliamsA. G.2013Improved mixing height monitoring through a combination of lidar and radon measurementAtmos. Meas. Tech.6220721810.5194/amt-6-207-2013Search in Google Scholar

Williams, A. G., Zahorowski, W., Chambers, S. D., & Griffiths, A. (2011). The vertical distribution of radon in clear and cloudy daytime terrestrial boundary layers. J. Atmos. Sci., 68(1), 155–174.WilliamsA. G.ZahorowskiW.ChambersS. D.GriffithsA.2011The vertical distribution of radon in clear and cloudy daytime terrestrial boundary layersJ. Atmos. Sci.68115517410.1175/2010JAS3576.1Search in Google Scholar

Podstawczyńska, A. (2016). Differences of near-ground atmospheric Rn-222 concentration between urban and rural area with reference to microclimate diversity. Atmos. Environ., 126, 225–234.PodstawczyńskaA.2016Differences of near-ground atmospheric Rn-222 concentration between urban and rural area with reference to microclimate diversityAtmos. Environ.12622523410.1016/j.atmosenv.2015.11.037Search in Google Scholar

Winkler, R., Ruckerbauer, F., Trautmannsheimer, M., Tschiersch, J., & Karg, E. (2001). Diurnal and seasonal variation of the equilibrium state between short-lived radon decay products and radon gas in the ground-level air. Radiat. Environ. Biophys., 40, 115–123.WinklerR.RuckerbauerF.TrautmannsheimerM.TschierschJ.KargE.2001Diurnal and seasonal variation of the equilibrium state between short-lived radon decay products and radon gas in the ground-level airRadiat. Environ. Biophys.4011512310.1007/s004110100096Search in Google Scholar

Magalhães, M. H., Amaral, E. C. S., Sachett, I., & Rochedo, E. R. R. (2003). Radon-222 in Brazil: an outline of indoor and outdoor measurement. J. Environ. Radioact., 67(2), 131–143.MagalhãesM. H.AmaralE. C. S.SachettI.RochedoE. R. R.2003Radon-222 in Brazil: an outline of indoor and outdoor measurementJ. Environ. Radioact.67213114310.1016/S0265-931X(02)00175-3Search in Google Scholar

Zhang, Liang, Zhang, Liguo, & Guo, Q. (2009). A long-term investigation of the atmospheric radon concentration in Beijing, China. J. Radiol. Prot., 29, 263–268.ZhangLiangZhangLiguoGuoQ.2009A long-term investigation of the atmospheric radon concentration in Beijing, ChinaJ. Radiol. Prot.2926326810.1088/0952-4746/29/2/01219454795Search in Google Scholar

Chan, S. W., Lee, C. W., & Tsui, K. C. (2010). Atmospheric radon in Hong-Kong. J. Environ. Radioact., 101(6), 494–503.ChanS. W.LeeC. W.TsuiK. C.2010Atmospheric radon in Hong-KongJ. Environ. Radioact.101649450310.1016/j.jenvrad.2010.02.00720359794Search in Google Scholar

Florea, N., & Duliu, O. G. (2012). Eighteen years of continuous observation of radon and thoron progenies atmospheric activity. J. Environ. Radioact., 104(1), 14–23.FloreaN.DuliuO. G.2012Eighteen years of continuous observation of radon and thoron progenies atmospheric activityJ. Environ. Radioact.1041142310.1016/j.jenvrad.2011.10.00222115433Search in Google Scholar

Podstawczyńska, A., Kozak, K., Pawlak, W., & Mazur, J. (2010). Seasonal and diurnal variation of outdoor radon (222Rn) concentrations in urban and rural area with reference to meteorological conditions. Nukleonika, 55(4), 543–547.PodstawczyńskaA.KozakK.PawlakW.MazurJ.2010Seasonal and diurnal variation of outdoor radon (222Rn) concentrations in urban and rural area with reference to meteorological conditionsNukleonika554543547Search in Google Scholar

Podstawczyńska, A. (2013). Meteorological factors of radon concentration in the near ground air layer in an urban and rural environment. Łódź: University Press (in Polish).PodstawczyńskaA.2013Meteorological factors of radon concentration in the near ground air layer in an urban and rural environmentŁódźUniversity Press(in Polish)Search in Google Scholar

Kędziora, A. (1999). Fundamentals of agrometeorology. Warszawa: PWRiL Press (in Polish).KędzioraA.1999Fundamentals of agrometeorologyWarszawaPWRiL Press(in Polish)Search in Google Scholar

Oke, T. R. (1995). Boundary layer climates. London: Methuen.OkeT. R.1995Boundary layer climatesLondonMethuenSearch in Google Scholar

Janik, M. (2005). Penetration of radon from the soil into the building. Computer modeling and verification in residential buildings. Unpublished doctoral dissertation, Institute of Nuclear Physics Polish Academy of Sciences, Cracow, Poland. Retrieved January 2009, from http://www.ifj.edu.pl/publ/reports/2005/1966.pdf (in Polish).JanikM.2005Penetration of radon from the soil into the building. Computer modeling and verification in residential buildingsUnpublished doctoral dissertationInstitute of Nuclear Physics Polish Academy of SciencesCracow, PolandRetrieved January 2009, from http://www.ifj.edu.pl/publ/reports/2005/1966.pdf (in Polish).Search in Google Scholar

Mazur, J. (2008). Dynamics of the process of radon exhalation from ground in connection with meteorological parameters and soil properties. Unpublished doctoral dissertation, Institute of Nuclear Physics Polish Academy of Sciences, Cracow, Poland. Retrieved January 2009, from http://www.ifj.edu.pl/publ/reports/2008/2014.pdf (in Polish).MazurJ.2008Dynamics of the process of radon exhalation from ground in connection with meteorological parameters and soil propertiesUnpublished doctoral dissertation,Institute of Nuclear Physics Polish Academy of SciencesCracow, PolandRetrieved January 2009, from http://www.ifj.edu.pl/publ/reports/2008/2014.pdf (in Polish)Search in Google Scholar

Willmott, C. J. (1981). On the validation of models. Phys. Geogr., 2(2), 184–194.WillmottC. J.1981On the validation of modelsPhys. Geogr.2218419410.1080/02723646.1981.10642213Search in Google Scholar

Willmott, C. J. (1982). Some comments on the evaluation of model performance. Bull. Am. Meteorol. Soc., 63, 1309–1312.WillmottC. J.1982Some comments on the evaluation of model performanceBull. Am. Meteorol. Soc.631309131210.1175/1520-0477(1982)063<1309:SCOTEO>2.0.CO;2Search in Google Scholar

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