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Radon resistant potential of concrete manufactured using Ordinary Portland Cement blended with rice husk ash

机译:普通硅酸盐水泥与稻壳灰混合制得的混凝土的抗气潜力

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摘要

The emission of radon from building materials and soil depends upon the radium content, porosity, moisture content and radon diffusion length of materials. Several techniques have been used to reduce the radon emission from the soil using different flooring materials. But the effectiveness of radon shielding depends upon the diffusion of radon through these materials. The present study proposes a method for producing a radon resistant material for decreasing radon diffusion through it. The method involves rice husk ash (RHA) in addition to cement for the preparation of concrete used for flooring and walls. The radon diffusion, exhalation and mechanical property of concrete prepared by rice husk ash blended cement were studied. The addition of RHA caused the reduction in radon diffusion coefficient, exhalation rates, porosity and enhanced the compressive strength of concrete. The bulk radon diffusion coefficient of cementitious concrete was reduced upto 69% by addition of rice husk ash as compare to that of control concrete.
机译:建筑材料和土壤中of的排放取决于材料的镭含量,孔隙率,水分含量和ra扩散长度。使用不同的地板材料已经使用了几种技术来减少土壤中的the排放。但是shielding防护的有效性取决于don在这些材料中的扩散。本研究提出了一种生产耐resistant材料的方法,该材料可减少ra的扩散。该方法除水泥外还涉及稻壳灰(RHA),用于制备用于地板和墙壁的混凝土。研究了稻壳灰掺水泥制备的混凝土中的扩散,呼出和力学性能。加入RHA导致ra扩散系数,呼出率,孔隙率降低,并提高了混凝土的抗压强度。与对照混凝土相比,加入稻壳灰可将胶结混凝土的ra扩散系数降低至69%。

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