Geogenic Determinants of Indoor Radon Exposure in İzmir (West Türkiye)
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Date
2026
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Publisher
Pergamon-Elsevier Science Ltd
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Abstract
Radon, a naturally occurring product of uranium decay, is the second leading cause of lung cancer. I(center dot)zmir Province in western T & uuml;rkiye, situated within the Aegean extensional regime, comprises complex fault-bounded basins that favor indoor radon accumulation. This study evaluates the spatial variability and geogenic controls of indoor radon to delineate radon-prone zones with public-health relevance. Indoor radon was measured in 79 dwellings distributed across major lithologies and structural settings; detectors were deployed in basements to capture soil-gas infiltration. Concentrations ranged from 12 to 366.5 Bq/m3 (mean 118 Bq/m3), exceeding the national average of 81 Bq/m3; 32 % of sites surpassed the EPA action level of 148 Bq/m3. Highest values cluster in Bornova, Buca, and Kemalpas, a, coincident with fault-controlled sedimentary basins and permeable units. Spatial mapping highlights the dominant influence of lithology and fault proximity on radon distribution and underscores the limitations of uniform, national-scale mitigation policies. We advocate targeted, geology-aware health policies and urban-planning measures for monitoring and mitigation in geogenically vulnerable districts. These findings contribute to medical geology by providing region-specific evidence of radon risk in one of T & uuml;rkiye's most seismically active metropolitan areas. These outputs provide decision-ready evidence for monitoring, mitigation, and building-code updates in seismically active metropolitan settings.
Description
Taşkın, Nurcihan/0000-0001-7286-2871; Alkan, Turkan/0000-0002-8436-6776
Keywords
Indoor Radon Concentration, Geology, Public Health, Tectonically Active Zones, Izmir
Fields of Science
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WoS Q
Q2
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OpenCitations Citation Count
N/A
Source
Applied Radiation and Isotopes
Volume
229
Issue
Start Page
112363
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Scopus : 0
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