| Literature DB >> 26437425 |
Sergio Luevano-Gurrola1, Angelica Perez-Tapia2, Carmelo Pinedo-Alvarez3, Jorge Carrillo-Flores4, Maria Elena Montero-Cabrera5, Marusia Renteria-Villalobos6.
Abstract
Determining ionizing radiation in a geographic area serves to assess its effects on a population's health. The aim of this study was to evaluate the spatial distribution of the background environmental outdoor gamma dose rates in Chihuahua City. This study also estimated the annual effective dose and the lifetime cancer risks of the population of this city. To determine the outdoor gamma dose rate in air, the annual effective dose and the lifetime cancer risk, 48 sampling points were randomly selected in Chihuahua City. Outdoor gamma dose rate measurements were carried out by using a Geiger-Müller counter. Outdoor gamma dose rates ranged from 113 to 310 nGy·h(-1). At the same sites, 48 soil samples were taken to obtain the activity concentrations of (226)Ra, (232)Th and (40)K and to calculate their terrestrial gamma dose rates. Radioisotope activity concentrations were determined by gamma spectrometry. Calculated gamma dose rates ranged from 56 to 193 nGy·h(-1). Results indicated that the lifetime effective dose of the inhabitants of Chihuahua City is on average 19.8 mSv, resulting in a lifetime cancer risk of 0.001. In addition, the mean of the activity concentrations in soil were 52, 73 and 1097 Bq·kg(-1), for (226)Ra, (232)Th and (40)K, respectively. From the analysis, the spatial distribution of (232)Th, (226)Ra and (40)K is to the north, to the north-center and to the south of city, respectively. In conclusion, the natural background gamma dose received by the inhabitants of Chihuahua City is high and mainly due to the geological characteristics of the zone. From the radiological point of view, this kind of study allows us to identify the importance of manmade environments, which are often highly variable and difficult to characterize.Entities:
Keywords: Chihuahua; health risk; kriging; radiation dose; radioactivity mapping
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Year: 2015 PMID: 26437425 PMCID: PMC4626971 DOI: 10.3390/ijerph121012324
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Figure 1Study area: (a) localization; (b) uranium ore deposits (in red); and (c) sampling points.
Outdoor gamma dose rates (nGy·h–1) measured at 1 m from the ground. C, middle.
| Zone | N * | Mean ± SD § | Median | 25–75 Percentiles | Min–Max |
|---|---|---|---|---|---|
| N | 16 | 235 ± 40 | 244 | 207–263 | 141–301 |
| C | 16 | 204 ± 51 | 197 | 167–235 | 113–310 |
| S | 16 | 236 ± 52 | 254 | 214–277 | 113–282 |
* n sample size; standard deviation.
Figure 2Spatial distribution of outdoor gamma dose rates in Chihuahua City.
Average and range of the activity concentrations (Bq·kg−1) of 226Ra, 232Th and 40K found in the soils of Chihuahua City.
| Zone | 226Ra | 232Th | 40K |
|---|---|---|---|
| N | 58 (27–90) | 79 (40–108) | 1107 (496–1509) |
| C | 54 (37–103) | 77 (48–142) | 1117 (794–1424) |
| S | 44 (26–51) | 63 (37–93) | 1066 (521–1295) |
Figure 3Spatial distribution of the radioisotope activity concentration found in soil: (a) 226Ra; (b) 232Th; and (c) 40K.
Natural gamma radiation doses, average and range, obtained from the ground in Chihuahua City.
| Zone | Lifetime Total Effective Dose (mSv) * | Lifetime Cancer Risk * | |||||
|---|---|---|---|---|---|---|---|
| From Direct Measurements | From Soil Concentrations | Remaining Dose § | From Direct Measurements | From Soil Concentrations | |||
| N | 235 (141–301) | 121 (64–148) | 79 (19–125) | 21 | 1.04 E−3 | 288 (173–369) | 148 (78–182) |
| C | 204 (113–310) | 118 (79–193) | 57 (8–154) | 18 | 0.90 E−3 | 250 (138–380) | 145 (98–237) |
| S | 236 (113–282) | 103 (56–124) | 101 (2–157) | 21 | 1.04 E−3 | 289 (138–346) | 126 (69–152) |
§ Obtained by subtraction of absorbed dose contributions from soil and cosmic radiation (only directly ionizing and photo components). * Average obtained by using outdoor gamma dose rates (OGDR) measured to 1 m from the ground.
Figure 4Spatial distribution of absorbed gamma dose rates calculated from the soil activity concentrations in Chihuahua City.