Indoor radon exposure and ventilation-driven mitigation in a high-rise residential unit using source-term-informed monitored-zone assessment

Increasing airtightness in high-rise residential buildings can enhance indoor radon accumulation when persistent indoor source terms are combined with limited air exchange. This study evaluated indoor radon accumulation and ventilation-driven reduction in four monitored zones of one newly constructed high-rise residential unit using multi-point detector measurements during actual energy-recovery ventilator (ERV) operation at nominal settings of 0.3, 0.5, and 0.7 h −1 , complemented by chamber-derived surface-associated radon source information and zone-specific air volumes. Paired pre-ERV concentrations ranged from 496 to 1010 Bq m −3 . The combined mean detector-level reductions were 79.2%, 81.5%, and 84.0% at the three nominal settings, respectively. Relative to the 0.3 h −1 tests, the 0.5 h −1 tests had higher mean reductions and fewer residual detector locations above 148 Bq m −3 , whereas the 0.7 h −1 tests had the highest combined mean reduction and shortest average response time. Multi-point measurements showed an 18.6% corner-to-center difference under closed-door conditions, indicating spatial non-uniformity within the monitored unit. The first-order mass-balance calculation was retained only as a descriptive setting-level consistency check (combined-mean RMSE 4.37 percentage points; MAE 3.11 percentage points). Effective in situ ACH was not independently verified, and each room-level condition was tested once; therefore, between-setting differences are interpreted within the tested campaign rather than as isolated causal effects of ventilation rate.

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Journal
Journal of Environmental Radioactivity
Published
2026-09-13
DOI
https://doi.org/10.1016/j.jenvrad.2026.108170
Primary Topic
Radioactivity and Radon Measurements
Type
article
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article

Indoor radon exposure and ventilation-driven mitigation in a high-rise residential unit using source-term-informed monitored-zone assessment

Won-Jun Jang, Jae‐Oh Shim, Min-Jun Kim, Chang-Hyeon Kim
Journal of Environmental Radioactivity
Radioactivity and Radon Measurements
article

Indoor radon exposure and ventilation-driven mitigation in a high-rise residential unit using source-term-informed monitored-zone assessment

Won-Jun Jang, Jae‐Oh Shim, Min-Jun Kim, Chang-Hyeon Kim
article en

Abstract

Increasing airtightness in high-rise residential buildings can enhance indoor radon accumulation when persistent indoor source terms are combined with limited air exchange. This study evaluated indoor radon accumulation and ventilation-driven reduction in four monitored zones of one newly constructed high-rise residential unit using multi-point detector measurements during actual energy-recovery ventilator (ERV) operation at nominal settings of 0.3, 0.5, and 0.7 h −1 , complemented by chamber-derived surface-associated radon source information and zone-specific air volumes. Paired pre-ERV concentrations ranged from 496 to 1010 Bq m −3 . The combined mean detector-level reductions were 79.2%, 81.5%, and 84.0% at the three nominal settings, respectively. Relative to the 0.3 h −1 tests, the 0.5 h −1 tests had higher mean reductions and fewer residual detector locations above 148 Bq m −3 , whereas the 0.7 h −1 tests had the highest combined mean reduction and shortest average response time. Multi-point measurements showed an 18.6% corner-to-center difference under closed-door conditions, indicating spatial non-uniformity within the monitored unit. The first-order mass-balance calculation was retained only as a descriptive setting-level consistency check (combined-mean RMSE 4.37 percentage points; MAE 3.11 percentage points). Effective in situ ACH was not independently verified, and each room-level condition was tested once; therefore, between-setting differences are interpreted within the tested campaign rather than as isolated causal effects of ventilation rate.

Journal of Environmental RadioactivityVol. 300
Ajou University (KR), Wonkwang University (KR)
Climate action
Openalex Percentile: Top 10%
Radioactivity and Radon Measurements
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Indoor radon exposure and ventilation-driven mitigation in a high-rise residential unit using source-term-informed monitored-zone assessment — Won-Jun Jang, Jae‐Oh Shim, et al. · Journal of Environmental Radioactivity (2026) | TGRS Research Map | TGRS