印度哈里亚纳邦亚穆纳纳加尔什瓦利克山附近和萨拉斯瓦蒂河发源地土壤样本中 238U、232Th、40K 和重金属含量评估

IF 1.5 3区 化学 Q3 CHEMISTRY, ANALYTICAL
Rekha Dhiman, Jyoti Yadav, Bhupesh Khyalia, Naresh Kumar, Suneel Kumar, Ranjeet Dalal, Vishnu Chauhan, Harendra Kumar Yadav
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引用次数: 0

摘要

这项研究的主要目标是利用带有 NaI(Tl)探测器的伽马能谱仪评估铀(238U)、钍(232Th)和钾(40K)的伽马辐射活度水平,并利用原子吸收光谱(AAS)评估重金属(HM)的浓度,即铅(Pb)、镉(Cd)、镍(Ni)、钴(Co)、铁(Fe)和铬(Cr)。使用原子吸收光谱(AAS)分析从印度哈里亚纳邦亚穆纳纳加尔萨拉斯瓦蒂河不同地方采集的土壤样本中的重金属(HM)浓度,即铅(Pb)、镉(Cd)、镍(Ni)、钴(Co)、铁(Fe)和铬(Cr)。238U、232Th、40K、镭当量活度和空气吸收剂量率的平均值均在安全范围之内。镭当量活度和空气吸收剂量率的平均值在安全限值之内。相应的 HM 平均值为 Fe > Pb > Ni > Co > Cd > Cr。研究结果表明,研究区域土壤样本中的 HM 水平大大低于可接受的限度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessment of 238U, 232Th, 40K and heavy metals in soil samples of near Shivalik Hills and origin of Saraswati River, Yamuna Nagar of Haryana, India

Assessment of 238U, 232Th, 40K and heavy metals in soil samples of near Shivalik Hills and origin of Saraswati River, Yamuna Nagar of Haryana, India

The main goal of the study is to evaluate the activity level of gamma radiation from uranium (238U), thorium (232Th) and potassium (40K) using gamma spectrometry with NaI(Tl) detector and concentration of heavy metals (HM), i.e. lead (Pb), cadmium (Cd), nickel (Ni), cobalt (Co), iron (Fe) and chromium (Cr) using atomic absorption spectroscopy (AAS) in soil samples taken from different places of Saraswati River, Yamuna Nagar, Haryana in India. The mean value of 238U, 232Th, 40K, radium equivalent activity and air-absorbed dose rate lies within the safe limit. The mean value of Radium equivalent activity and air-absorbed dose rate is within safe limits. The mean value of the corresponding HM is Fe > Pb > Ni > Co > Cd > Cr. The findings indicate that the level of HM in the soil sample of the study area is considerably below the acceptable limit.

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来源期刊
CiteScore
2.80
自引率
18.80%
发文量
504
审稿时长
2.2 months
期刊介绍: An international periodical publishing original papers, letters, review papers and short communications on nuclear chemistry. The subjects covered include: Nuclear chemistry, Radiochemistry, Radiation chemistry, Radiobiological chemistry, Environmental radiochemistry, Production and control of radioisotopes and labelled compounds, Nuclear power plant chemistry, Nuclear fuel chemistry, Radioanalytical chemistry, Radiation detection and measurement, Nuclear instrumentation and automation, etc.
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