Dipartimento di Scienze e Innovazione Tecnologica, Università degli Studi del Piemonte Orientale,viale T. Michel, 11-15121 Alessandria, Italy.
Bytest s.r.l.-TÜV SÜD Group, Research Center, via Pisa 12, 10088 Volpiano, Italy.
Int J Mol Sci. 2020 Jan 28;21(3):833. doi: 10.3390/ijms21030833.
Composite lightweight materials for X-ray shielding applications were studied anddeveloped with the goal of replacing traditional screens made of lead and steel, with innovativematerials with similar shielding properties, but lighter, more easily formed and workable, with lowerimpact on the environment and reduced toxicity for human health. New epoxy-based compositesadditivated with barium sulfate and bismuth oxide were designed through simulations performedwith software based on Geant4. Then, they were prepared and characterized using differenttechniques starting from digital radiography in order to test the radiopacity of the composites,in comparison with traditional materials. The lower environmental impact and toxicity of theseinnovative screens were quantified by Life Cycle Assessment (LCA) calculation based on the ecoinventdatabase, within the openLCA framework. Optimized mixtures are (i) 20% epoxy/60% bismuthoxide/20% barite, which guarantees the best performance in X-ray shielding, largely overcomingsteel, but higher in costs and a weight reduction of circa 60%; (ii) 20% epoxy/40% bismuth oxide/40%barite which has slightly lower performances in shielding, but it is lighter and cheaper than thefirst one and (iii) the 20% epoxy/20% bismuth oxide/60% barite which is the cheapest material, stillmaintaining the X-ray shielding of steel. Depending on the cost/efficiency request of the specificapplication (industrial ra.
用于 X 射线屏蔽应用的复合材料进行了研究和开发,目标是用具有类似屏蔽性能的创新材料替代传统的铅和钢屏蔽屏,这些创新材料更轻、更容易成型和加工,对环境的影响更小,对人体健康的毒性更低。通过基于 Geant4 的软件进行模拟,设计了新的基于环氧树脂的复合材料,添加了硫酸钡和氧化铋。然后,使用不同的技术(从数字射线照相术开始)对其进行制备和表征,以测试复合材料的射线不透明度,与传统材料进行比较。通过基于 ecoinvent 数据库的开放式 LCA 框架中的生命周期评估 (LCA) 计算,对这些创新屏蔽屏的低环境影响和低毒性进行了量化。优化的混合物是:(i) 20%环氧树脂/60%氧化铋/20%重晶石,可确保在 X 射线屏蔽方面具有最佳性能,大大超过了钢,但成本更高,重量减轻约 60%;(ii) 20%环氧树脂/40%氧化铋/40%重晶石,屏蔽性能略低,但比第一种更轻、更便宜;(iii) 20%环氧树脂/20%氧化铋/60%重晶石,是最便宜的材料,仍保持钢的 X 射线屏蔽性能。具体应用的成本/效率要求(工业射线照相、医疗诊断等)。