通过分析穆比(北部)选定地点的总α和β放射性水平,评估与饮用水源有关的风险

Ahmadu Ibrahim
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摘要

电离辐射是指能量足以使原子中紧密结合的电子脱落,从而形成离子的一种辐射形式。它包括阿尔法粒子、贝塔粒子和伽马射线。接触电离辐射,尤其是通过摄入电离辐射,会对包括人类在内的生物体产生有害影响。这项研究的主要目标是测量和分析水样中的α和β辐射水平,并利用所获得的结果评估辐射浓度。水样采集自穆比北都市内的五个不同地点,并使用台式阿尔法/贝塔计数器或探测器(MPC 2000B-DP)进行分析。分析结果显示了每个采样点的α和β辐射活度。例如,不同地点的阿尔法放射性活度从 0.009844 Bq/L 到 0.1821 Bq/L,贝塔放射性活度从 0.04922 Bq/L 到 10.21 Bq/L。樣本 D 錄得最高的阿爾法有效當量為 0.037 毫希沃特/年,樣本 D 則錄得最低的 0.002 毫希沃特/年;樣本 C 錄得最高的貝他有效當量為 5.143 毫希沃特/年,樣本 E 則錄得最低的 0.329 毫希沃特/年。只有样本 D 的阿尔法放射性活度超过了 0.1 毫希沃特/年的建议筛查水平,只有样本 E 的最低有效剂量 0.329 毫希沃特/年低于 1.0 毫希沃特/年的筛查限值,这表明除样本 E 外,所有样本都存在潜在的致癌风险。然而,除联邦理工学院水库的样本外,其他样本中的β放射性活度都超过了建议的筛查水平,这表明饮用这些水源的水对个人健康有潜在风险。总之,这项研究为了解穆比北部大都会不同地点水样中的α和β辐射水平提供了宝贵的信息,突出了α辐射水平的安全性,但也表明了β辐射水平的潜在危害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the Risk Associated with Drinkable Water Sources Through Analysis of Gross Alpha and Beta Radioactivity Levels in Chosen Locations, Mubi – North
Ionizing radiation refers to a form of radiation with sufficient energy to dislodge tightly bound electrons from atoms, resulting in the formation of ions. It encompasses alpha particles, beta particles, and gamma rays. Exposure to ionizing radiation, especially through ingestion, can have detrimental effects on living organisms, including humans. The primary goal of this research is to measure and analyze the levels of alpha and beta radiation in water samples, using the obtained results to evaluate radiation concentrations. Water samples were collected from five different locations within Mubi-North Metropolis and analyzed using a desktop Alpha/Beta counting machine or detector (MPC 2000B-DP). The analysis results present the alpha and beta radiation activities in each sample location. For example, alpha activities ranged from 0.009844 Bq/L to 0.1821 Bq/L, and beta activities ranged from 0.04922 Bq/L to 10.21 Bq/L across different locations. Sample D recorded the highest alpha effective equivalent dose of 0.037mSv/y, while the lowest dose of 0.002mSv/y was recorded from sample D. Sample C had the highest beta effective equivalent dose of 5.143mSv/y, and the lowest dose of 0.329mSv/y was recorded from sample E. Sample C also recorded the highest total effective dose of 516mSv/y, while the lowest dose of 0.34mSv/y was from sample E. Only sample D exceeded the recommended screening level of 0.1mSv/y for Alpha, and only sample E recorded the lowest effective dose of 0.329mSv/y below the screening limit of 1.0mSv/y, indicating potential cancer risk for all samples except sample E. In summary, the study concludes that alpha activities in all collected samples are below the recommended screening levels for drinking water radioactivity set by organizations such as EPA, WHO, and GEG-FAO. However, beta activities in the samples, except for the one from Federal Polytechnic Reservoir, surpass the recommended screening levels, suggesting a potential health risk for individuals consuming water from those sources. Overall, the research provides valuable insights into alpha and beta radiation levels in water samples from various locations in Mubi-North Metropolis, highlighting the safety of alpha levels but indicating potential hazards in beta radiation levels.
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