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Comprehensive study on evaluation of shielding parameters of selected soils by gamma and X-rays transmission in the range 13.94–88.04?keV using WinXCom and FFAST programs

机译:使用WinXCom和FFAST程序在13.94–88.04?keV范围内通过γ和X射线透射评估所选土壤的屏蔽参数的综合研究

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Shielding parameter of eight (A–H) selected soil samples collected from different sites in Bing?l city and Gen? district, Turkey have been comprehensively measured with fifteen different photon energies in the energy range from 13.94?keV to 88.04?keV. The soil samples were irradiated with 100?mCi241Am, 10?mCi133Ba and 40?mCi109Cd radioactive point source using transmission geometry arrangement. The results were compared with those obtained by WinXCom and FFAST programs. The experimental results were found to be very close to both WinXCom and FFAST results. In addition, the effective atomic number, effective electron density, radiation protection efficiency and exposure buildup factor were determined using the obtained mass attenuation coefficients and standard formula. The results showed that the mass attenuation coefficients, as well as the effective atomic number of soil A and soil G, are relatively higher than those of other soils, which signify that both soils A and G provide superior shielding from gamma and X-rays.
机译:从Bing?l市和Gen?市不同地点收集的八个(A–H)选定土壤样品的屏蔽参数土耳其地区已使用15种不同的光子能量进行了全面测量,其能量范围为13.94?keV至88.04?keV。使用透射几何结构对土壤样品分别照射100?mCi241Am,10?mCi133Ba和40?mCi109Cd放射性点源。将结果与WinXCom和FFAST程序获得的结果进行比较。发现实验结果与WinXCom和FFAST结果都非常接近。另外,使用获得的质量衰减系数和标准公式确定有效原子序数,有效电子密度,辐射防护效率和暴露累积因子。结果表明,土壤A和土壤G的质量衰减系数以及有效原子序数相对高于其他土壤,这表明土壤A和G均提供了对γ和X射线的出色屏蔽。

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