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Sodium alginate/bismuth (III) oxide composites for gamma-ray shielding applications

机译:用于伽马射线屏蔽应用的海藻酸钠/铋(III)氧化物复合材料

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摘要

In the present work, we have explored the efficacy of bismuth (III) oxide (Bi2O3) loaded, calcium ion cross-linked solution cast sodium alginate composite films for radioprotective applications. Calcium ion cross-linking increased the water and chemical resistance, which further improved on introduction of Bi2O3 into the composites. The 40 wt% Bi2O3 loaded films showed good heat resistance with the peak degradation temperature reaching as high as 251 degrees C. The Bi2O3 loaded composites showed enhanced tensile strength (TS) and Youngs modulus (YM). Compared to high-modulus polymers like epoxy, high-density polyethylene (HDPE) and poly (vinyl chloride) (PVC), these exhibit relatively greater extent of stretching before breaking. The gamma-ray attenuation experiments showed that mass attenuation coefficients of the composites at various gamma-ray energies increased with filler loading. These composites are effective in shielding gamma-rays from radioactive sources like Cs-137, Na-22, Ba-133, and Co-60 that are widely employed in several medical and industrial applications. The overall enhancement in thermal, mechanical, and radiation shielding characteristics of the composites may be attributed to the uniform distribution of the fillers in alginate matrix. These nontoxic sodium alginate/Bi2O3 composites can be used as soft and biodegradable radiation shields, which may be processed to wearable forms.
机译:在目前的工作中,我们探索了负载氧化铋(III)的钙离子交联溶液浇铸海藻酸钠复合膜在辐射防护应用中的功效。钙离子交联提高了复合材料的耐水性和耐化学性,这进一步改善了Bi2O3的引入。负载量为40 wt%的Bi2O3薄膜具有良好的耐热性,峰值降解温度高达251℃。负载Bi2O3的复合材料表现出增强的拉伸强度(TS)和杨氏模量(YM)。与环氧树脂、高密度聚乙烯(HDPE)和聚氯乙烯(PVC)等高模量聚合物相比,这些聚合物在断裂前表现出相对更大的拉伸程度。γ射线衰减实验表明,在不同的γ射线能量下,复合材料的质量衰减系数随填充量的增加而增加。这些复合材料可以有效地屏蔽来自Cs-137、Na-22、Ba-133和Co-60等放射源的伽马射线,这些放射源广泛应用于多种医疗和工业应用。复合材料的热屏蔽、机械屏蔽和辐射屏蔽特性的整体增强可归因于海藻酸钠基质中填料的均匀分布。这些无毒的海藻酸钠/Bi2O3复合材料可以用作柔软且可生物降解的辐射屏蔽,可以加工成可穿戴的形式。

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