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首页> 外文期刊>Iranian journal of public health. >Measuring Radionuclides Concentration in Rice Field Soils using Gamma Spectroscopy in Northern Iran
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Measuring Radionuclides Concentration in Rice Field Soils using Gamma Spectroscopy in Northern Iran

机译:伊朗北部使用伽马能谱仪测量稻田土壤中放射性核素的浓度

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Background:A few elements of soil are radioactive. Soil can transfer radionuclide into plants feeding human. Sometimes their levels are as high as to be concern of human healthy. Rice has an important share for Iranian foods especially in north of Iran. Therefore we decided to obtain radionuclides concentration emitting γ rays in Lahijan City (Northern Iran) rice fields using γ spectroscopy.Methods:Twenty eight samples from rice field’s soils and 12 samples from superficial soils were collected at a square of 10*10 m2 to get 2kg weight. To make dry samples were put into oven at 105°C for 24h. Then they were milled and 950 gr of each sample was transferred to Marinelli container with 1000cc volume, sealed and left for 40 days to get secular equilibrium. After measuring Ph, Electric conductivity and organic carbon, γ spectroscopy was done to get sample gamma spectrum at 2000–6000 sec using HpGe detector.Results:It was found 226Ra activity in rice fields of 29.273±0.72 Bqkg-1 and city soil of 31.02±1.1 Bqkg-1 and also 232Th activity of 37.47±1.12 Bqkg-1 for rice fields’ soils and 40.47±1.68 Bqkg-1 for city soil were in standard mode.Conclusion:40K activities mean value according to UNSCEAR; 2000 was found a little greater than standard. A little value of 137Cs was found in Lahijan rice fields and city soils that could be as a result of Chernobyl accident. In except of 137Cs, for three other under studied city soil elements, activities were greater than that of rice fields.
机译:背景:土壤中的一些元素具有放射性。土壤可以将放射性核素转移到以人类为食的植物中。有时它们的水平高达人类健康所关注的水平。大米在伊朗食品中占有重要份额,尤其是在伊朗北部。因此,我们决定使用γ光谱法在拉希让市(伊朗北部)稻田中获得放射出的放射性核素浓度。方法:在10 * 10 m2的正方形上,从稻田土壤中采集28个样品,从表层土壤中采集12个样品,得到2kg的重量。为了制作干燥样品,将其放入105°C的烤箱中24h。然后将它们研磨,将950克的每个样品转移到容量为1000cc的Marinelli容器中,密封并放置40天以达到长期平衡。在测量pH,电导率和有机碳后,使用HpGe检测器进行了γ光谱分析,获得了2000–6000秒的样品γ谱图。结果:在29.273±0.72 Bqkg-1的稻田和31.02的城市土壤中发现了226Ra稻田土壤的±1.1 Bqkg-1和232Th活性分别为标准模式的37.47±1.12 Bqkg-1和城市土壤的40.47±1.68 Bqkg-1。发现2000比标准值大一点。在Lahijan稻田和城市土壤中发现了137Cs的少量值,这可能是切尔诺贝利事故的结果。除137Cs外,其他三个城市土壤元素的活度均高于稻田。

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