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Synthesis and nuclear radiation shielding characterization of newly developed germanium oxide and bismuth oxide glasses

机译:新开发的锗氧化锗和氧化铋玻璃的合成与核辐射屏蔽表征

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We present the synthesis and nuclear radiation shielding characterization of glasses based on germanium and bismuth oxide prepared with the melt-quenching technique. The glasses were produced using six different compositions as follows (in wt%): 40.0GeO(2)-60.0PbO, 38.0GeO(2)-62.0Bi(2)O(3), 31.344GeO(2)-41.900Bi(2)O(3)-26.756PbO, 33.334GeO(2)-33.333TeO(2)-33.333PbO, 20.6GeO(2)-41.9TeO(2) -17.4Nb(2)O(5)-20.1BaO, 41.98Bi(2)O(3)-48.26PbO-8.10Ga(2)O(3) -1.66BaO. Monte Carlo method (MCNPX code, v-2.6.0) has been utilized for the determination of mass attenuation coefficients (mu/rho) of the synthesised six different glasses. The acquired mass attenuation coefficients (mu/rho) have been used to determine the vital parameters for gamma-ray shielding namely half value layer (HVL), mean free path (MFP), tenth value layer (TVL), effective atomic number (Zeff), exposure buildup factor (EBF), energy absorption buildup factor (EABF), transmission factors (TF), respectively Simultaneously, effective removal cross section (Sigma R) values for fast neutrons and Proton mass stopping power & proton projected range have been also calculated. The results showed that among all the investigated glasses 41.98Bi(2)O(3)-48.26PbO-8.10Ga(2)O(3)-1.66BaO glass sample has the extra capability to reduce nuclear radiation as a shielding material.
机译:我们介绍了基于锗和用熔融淬火技术制备的锗和铋氧化物的玻璃的合成和核辐射屏蔽表征。使用六种不同的组合物生产如下(以重量%):40.0GeO(2)-60.0PBO,38.0GeO(2)-62.0Bi(2)O(3),31.344Ge(2)-41.900Bi( 2)O(3)-26.756PBO,33.334GeO(2)-33.3333BO(2)-33.333PBO,20.6Geo(2)-41.9teo(2)-17.4nb(2)O(5)-20.1bao, 41.98Bi(2)O(3)-48.26PBO-8.10Ga(2)O(3)-1.66bao。 Monte Carlo方法(MCNPX码,V-2.6.0)已经用于确定合成的六种不同眼镜的质量衰减系数(MU / RHO)。所获得的质量衰减系数(MU / RHO)已被用于确定伽马射线屏蔽的重要参数,即半值层(HVL),意味着自由路径(MFP),第十值层(TVL),有效原子序数(ZEFF ),曝光积聚因子(EBF),能量吸收积累因子(EABF),传输因子(TF),分别是快速中子和质子块止动力和质子预计范围的有效拆卸横截面(Sigma R)值也是如此计算。结果表明,在所有调查的眼镜41.98bi(2)O(3)-48.26pbO-8.10ga(2)O(3)-1.66bao玻璃样品中有额外的能力,可以将核辐射减少为屏蔽材料。

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