Estimation of Tritium Concentration in the Rain- and Groundwater in the Dry River of Hafr Al Batin, Saudi Arabia

Q3 Environmental Science
A. Mamun
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引用次数: 0

Abstract

Natural tritium is widely dispersed in the environment, leading to human exposure to tritium through water ingestion, inhalation of tritium gas, and absorption through the skin. High levels of tritium in the environment can pose significant health risks due to the potential carcinogenic effects of tritium. Therefore, this study aims to estimate the tritium concentration in spiked water, rainwater, and groundwater by a liquid scintillation counter (LSC). Due to the lower detection levels of the LSC, an enrichment process of tritium ten- to thirtyfold was carried out using the electrolysis process. The enriched water was then analyzed to estimate the tritium concentration. Five reference samples were prepared by diluting a standard with known concentrations (spiked sample) to verify the precision of the measurement technique. The estimated tritium levels of the rainwater and the groundwater were within the 0.3 to 3.5 tritium units (TU) range. A comparatively higher tritium concentration was estimated for the shallow wells in the lower valley of the monitored areas. However, relatively lower concentrations were detected for wells located in the hillside areas. These findings will assist regulatory authorities in formulating strategies to ensure public safety by mitigating human exposure to tritium.
沙特阿拉伯Hafr Al Batin干旱河流雨水和地下水中氚浓度的估算
天然氚广泛分散在环境中,导致人体通过水摄入、吸入氚气体和通过皮肤吸收而暴露于氚。由于氚的潜在致癌作用,环境中高浓度的氚可构成重大的健康风险。因此,本研究旨在利用液体闪烁计数器(LSC)估计加刺水、雨水和地下水中的氚浓度。由于LSC的检测水平较低,采用电解法对氚进行了10 ~ 30倍的富集处理。然后对富集水进行分析以估计氚浓度。通过稀释已知浓度的标准品(加标样品)制备5个参比样品,以验证测量技术的精度。估计雨水和地下水的氚含量在0.3至3.5个氚单位(TU)范围内。监测区河谷较低的浅井氚浓度较高。然而,位于山坡地区的井中检测到的浓度相对较低。这些发现将有助于监管当局制定战略,通过减少人体对氚的接触来确保公共安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Limnological Review
Limnological Review Environmental Science-Ecology
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
16 weeks
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