雪兰莪(kuis)湖前kolej universiti Islam antarabangsa lake矿区天然放射性和重金属的测定

N. A. M. Radzali, Norsyahidah Mohd Hidzir, Irman Abdul Rahman
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引用次数: 3

摘要

一个前矿区对环境造成了不良影响,例如破坏植物和污染。因此,本研究旨在确定Kolej University Islam Antarabangsa Selangor (KUIS)湖前矿区的天然放射性和重金属存在。采用伽马能谱法和电感耦合等离子体质谱法(ICP-MS)测量这两个参数。结果表明,水样中U(0.44±0.31 Bq/L)、Th(0.04±0.02 Bq/L)、226 Ra(0.19±0.11 Bq/L)和K(0.62±0.37 Bq/L)的浓度均低于世界卫生组织(WHO)饮用水水源推荐值,可安全饮用。沉积物样品中U、Th、226 Ra和K的放射性分别为49.1±18.8 Bq/kg、102.3±3.3 Bq/kg、133.2±18.8 Bq/kg和297.1±25.7 Bq/kg,超出了UNSCEAR建议的限量。重金属测定中,沉积物中锌含量最高,为17.34±15.79 mg/kg,水中砷含量最高,为0.58±0.26 μg/L。除γ剂量率的γ指数为1.6±0.7 Bq/kg和104.1±48.4 nGy/h外,其他危害指标均低于安全限值。
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DETERMINATION OF NATURAL RADIOACTIVITY AND HEAVY METALS AT THE FORMER MINING SITE OF KOLEJ UNIVERSITI ISLAM ANTARABANGSA SELANGOR (KUIS) LAKE
An ex-mining site has created an undesirable effect on the environment, such as the destruction of plants and contamination. Thus, this study was conducted to determine the natural radioactivity and heavy metal presence in the ex-mining site at Kolej University Islam Antarabangsa Selangor (KUIS) lake. Both parameters were measured using gamma spectrometry and inductively coupled plasma-mass spectrometry (ICP-MS). The results showed that the concentrations of U (0.44 ± 0.31 Bq/L), Th (0.04 ± 0.02 Bq/L), 226 Ra (0.19 ± 0.11 Bq/L), and K (0.62 ± 0.37 Bq/L) in water samples were below the recommended values by the World Health Organization (WHO) for drinking water source, which implied the safe consumption of the water. However, the presence of U, Th, 226 Ra, and K in sediment samples exceeded the limit proposed by UNSCEAR, with the radioactivity of 49.1 ± 18.8 Bq/kg, 102.3 ± 3.3 Bq/kg, 133.2 ± 18.8 Bq/kg, and 297.1 ± 25.7 Bq/kg, respectively. For heavy metal determination, zinc was found in the sediment with the highest concentration (17.34 ± 15.79 mg/kg) compared to other heavy metals, while the concentration of arsenic was highest in water with 0.58 ± 0.26 μg/L. All hazard indices were found to be below the safety limit except for the gamma index of 1.6 ± 0.7 Bq/kg and 104.1 ± 48.4 nGy/h for the gamma dose rate.
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