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基于墨西哥奇瓦瓦市室外天然伽马辐射的终生有效剂量评估

Lifetime Effective Dose Assessment Based on Background Outdoor Gamma Exposure in Chihuahua City, Mexico.

作者信息

Luevano-Gurrola Sergio, Perez-Tapia Angelica, Pinedo-Alvarez Carmelo, Carrillo-Flores Jorge, Montero-Cabrera Maria Elena, Renteria-Villalobos Marusia

机构信息

Facultad de Zootecnia y Ecología, Universidad Autónoma de Chihuahua, Perif. Francisco R. Almada km 1, 31415 Chihuahua, Mexico.

Centro de Investigación en Materiales Avanzados, Miguel de Cervantes 120, 31136 Chihuahua, Mexico.

出版信息

Int J Environ Res Public Health. 2015 Sep 30;12(10):12324-39. doi: 10.3390/ijerph121012324.

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.

摘要

确定某一地理区域的电离辐射有助于评估其对人群健康的影响。本研究的目的是评估奇瓦瓦市背景环境户外伽马剂量率的空间分布。本研究还估算了该市居民的年有效剂量和终生患癌风险。为了确定空气中的户外伽马剂量率、年有效剂量和终生患癌风险,在奇瓦瓦市随机选择了48个采样点。使用盖革 - 米勒计数器进行户外伽马剂量率测量。户外伽马剂量率范围为113至310 nGy·h⁻¹。在相同地点采集了48份土壤样本,以获取²²⁶Ra、²³²Th和⁴⁰K的活度浓度,并计算其陆地伽马剂量率。通过伽马能谱法测定放射性同位素活度浓度。计算出的伽马剂量率范围为56至193 nGy·h⁻¹。结果表明,奇瓦瓦市居民的终生有效剂量平均为19.8 mSv,终生患癌风险为0.001。此外,土壤中²²⁶Ra、²³²Th和⁴⁰K的活度浓度平均值分别为52、73和1097 Bq·kg⁻¹。通过分析,²³²Th、²²⁶Ra和⁴⁰K的空间分布分别在城市的北部、北中部和南部。总之,奇瓦瓦市居民接受的天然本底伽马剂量较高,主要是由于该地区的地质特征。从放射学角度来看,这类研究使我们能够确定人造环境的重要性,人造环境往往高度可变且难以描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be45/4626971/1ae4fcf01c09/ijerph-12-12324-g001a.jpg

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