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Detailed Inspection of γ-ray, Fast and Thermal Neutrons Shielding Competence of Calcium Oxide or Strontium Oxide Comprising Bismuth Borate Glasses

机译:γ射线,快速和热中子屏蔽氧化钙或锶氧化锶屏蔽能力的详细检查

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摘要

For both the B2O3-Bi2O3-CaO and B2O3-Bi2O3-SrO glass systems, γ-ray and neutron attenuation qualities were evaluated. Utilizing the Phy-X/PSD program, within the 0.015–15 MeV energy range, linear attenuation coefficients (µ) and mass attenuation coefficients (μ/ρ) were calculated, and the attained μ/ρ quantities match well with respective simulation results computed by MCNPX, Geant4, and Penelope codes. Instead of B2O3/CaO or B2O3/SrO, the Bi2O3 addition causes improved γ-ray shielding competence, i.e., rise in effective atomic number (Zeff) and a fall in half-value layer (HVL), tenth-value layer (TVL), and mean free path (MFP). Exposure buildup factors (EBFs) and energy absorption buildup factors (EABFs) were derived using a geometric progression (G–P) fitting approach at 1–40 mfp penetration depths (PDs), within the 0.015–15 MeV range. Computed radiation protection efficiency (RPE) values confirm their excellent capacity for lower energy photons shielding. Comparably greater density (7.59 g/cm3), larger μ, μ/ρ, Zeff, equivalent atomic number (Zeq), and RPE, with the lowest HVL, TVL, MFP, EBFs, and EABFs derived for 30B2O3-60Bi2O3-10SrO (mol%) glass suggest it as an excellent γ-ray attenuator. Additionally, 30B2O3-60Bi2O3-10SrO (mol%) glass holds a commensurably bigger macroscopic removal cross-section for fast neutrons (ΣR) (=0.1199 cm−1), obtained by applying Phy-X/PSD for fast neutrons shielding, owing to the presence of larger wt% of ‘Bi’ (80.6813 wt%) and moderate ‘B’ (2.0869 wt%) elements in it. 70B2O3-5Bi2O3-25CaO (mol%) sample (B: 17.5887 wt%, Bi: 24.2855 wt%, Ca: 11.6436 wt%, and O: 46.4821 wt%) shows high potentiality for thermal or slow neutrons and intermediate energy neutrons capture or absorption due to comprised high wt% of ‘B’ element in it.
机译:对于B2O3-BI2O3-CAO和B2O3-BI2O3-SRO玻璃系统,评估γ射线和中子衰减质量。利用PHY-X / PSD程序,在0.015-15MeV能量范围内,计算线性衰减系数(μ)和质量衰减​​系数(μ/ρ),并且达到的μ/ρ数量与计算的各自的仿真结果相匹配通过McNPX,Geant4和Penelope代码。 Bi2O3加法代替B2O3 / CaO或B2O3 / SRO,导致改善γ射线屏蔽能力,即有效原子序数(Zeff)上升和半值层(HVL),第十值层(TVL)上升,是指自由路径(MFP)。在0.015-15MeV范围内,使用几何进展(G-P)拟合方法来源的曝光积聚因子(EBF)和能量吸收积聚因子(EABF)。计算的辐射防护效率(RPE)值确认其较低能量光子屏蔽的优异容量。相对更大的密度(7.59g / cm3),较大的μ,μ/ρ,zeff,等效原子序数(zeq)和RPE,具有最低的HVL,TVL,MFP,EBF和EABFS导出为30B2O3-60Bi2O3-10sro(摩尔%)玻璃表明它是优异的γ射线衰减器。另外,30b203-60bi2O3-10sro(mol%)玻璃保持不良较大的宏观移除横截面,用于快速中子(σr)(= 0.1199cm-1),通过施加PHY-X / PSD来获得快速中子屏蔽,因为其存在较大的“Bi”(80.6813wt%)和中等'B'(2.0869wt%)元素的较大Wt%。 70B2O3-5BI2O3-25CAO(摩尔%)样品(B:17.5887wt%,Bi:24.2855wt%,Ca:11.6436wt%和O:46.4821wt%)显示出热或慢中子和中间能量中子捕获的高潜力和中间能量中子吸收由于其在其中的“B”元素的高%wt%。

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