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Active and passive measurements of radon diffusion coefficient from building construction materials

机译:主动和被动测量建筑建筑材料中diffusion的扩散系数

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The gaseous state and chemical inert behavior of radon make it important tracer for the radon transport study through the building materials. The radon resistant property of building construction materials is important parameter to control the indoor radon levels in living and workplaces. The materials with higher radium content can be made less severe by the use of some building materials of low diffusion coefficient and diffusion length. This makes the study of radon diffusion through building material more important along with the study of exhalation and radioactivity content. Keeping this in mind the radon diffusion study was carried out through different building construction materials used for wall and floor by active and passive techniques. The diffusion coefficient from these building materials measured by passive methods varied from (0.9 ± 0.5) × 10~(-7) to (22.95 ± 13.19) × 10~(-6) m~2s~(-1) and radon diffusion length varied from 0.21 to 3.31 m for cement, soil, sand, wall putty and plaster of Paris (POP) etc. The radon diffusion coefficient measured by active technique varied from 1.93 × 10~(-10) to 1.36 × 10~(-7) m~2s~(-1) for samples with definite geometry like paper, polyethylene, marble, granite etc. The radon diffusion coefficient and diffusion length depend upon the porosity and density of materials for powder samples.
机译:don的气态和化学惰性使其成为研究ra在建筑材料中迁移的重要示踪剂。建筑建筑材料的抗ra性能是控制生活和工作场所室内ra水平的重要参数。通过使用一些扩散系数和扩散长度低的建筑材料,可以降低镭含量较高的材料的强度。这使得ra在建筑材料中的扩散研究以及呼气和放射性含量的研究变得更加重要。请记住,this扩散研究是通过主动和被动技术对用于墙壁和地板的不同建筑材料进行的。通过被动方法测得的这些建筑材料的扩散系数从(0.9±0.5)×10〜(-7)到(22.95±13.19)×10〜(-6)m〜2s〜(-1)和and扩散长度巴黎(POP)等的水泥,土壤,沙子,墙壁腻子和灰泥的0.21至3.31 m不等。采用主动技术测得的ra扩散系数从1.93×10〜(-10)到1.36×10〜(-7)不等)m〜2s〜(-1)用于纸,聚乙烯,大理石,花岗岩等具有确定几何形状的样品。The的扩散系数和扩散长度取决于粉末样品的孔隙率和密度。

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