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Determination of Natural Radioactivity Levels of Some Concretes and Mineral Admixtures in Turkey

机译:确定土耳其某些混凝土和矿物掺合料的自然放射性水平

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Nine concrete samples with or without mineral admixtures have been analyzed for their naturally occurring radionuclide of ~(226)Ra, ~(232)Th and ~(40)K using HPGe gamma spectrometry. Also, concrete raw materials such as aggregate, cement, fly ash and blast furnace slag have been measured. The radioactivity values of ~(226)Ra, ~(232)Th and ~(40)K in fly ash and those of ~(226)Ra in blast furnace slag are higher than the corresponding world mean specific activities values which are 50, 50 and 500 Bq kg~(-1) for ~(226)Ra, ~(232)Th and ~(40)K, respectively. The concretes activity concentrations have been found to change with supplementary cementitious materials of the concrete samples. This may be attributed to containing different proportions of different mineral additives such as fly ash and blast furnace slag which were found to contain high natural radionuclide concentrations according to the rest of raw material samples. In addition, radium equivalent activities (Ra_(eq)), γ-index (I_r), α-index (I_α), absorbed dose rate in air (D) and annual effective dose associated with the natural radionuclide were calculated to assess the radiation hazard of the natural radioactivity in the concrete mixture samples. The concentration of the natural radionuclides and the radium equivalent activity obtained in the present study are compared with the previous results. From these results. it can be seen that these building materials do not pose significant radiation hazards.
机译:使用HPGeγ谱仪分析了9种具有或没有矿物掺合料的混凝土样品的自然存在的〜(226)Ra,〜(232)Th和〜(40)K放射性核素。另外,已经测量了混凝土原料,例如骨料,水泥,粉煤灰和高炉矿渣。飞灰中〜(226)Ra,〜(232)Th和〜(40)K的放射性值以及高炉矿渣中〜(226)Ra的放射性值高于相应的世界平均比活度值50, 〜(226)Ra,〜(232)Th和〜(40)K分别为50和500 Bq kg〜(-1)。已经发现混凝土的活性浓度随混凝土样品的补充胶结材料而变化。这可能归因于含有不同比例的不同矿物添加剂,例如粉煤灰和高炉矿渣,根据其余原材料样品,这些矿物添加剂被发现含有较高的天然放射性核素浓度。此外,计算了镭当量活度(Ra_(eq)),γ指数(I_r),α指数(I_α),空气中吸收剂量率(D)和与天然放射性核素相关的年有效剂量,以评估辐射混凝土混合物样品中自然放射性的危害。将本研究中获得的天然放射性核素的浓度和镭的当量活性与以前的结果进行了比较。从这些结果。可以看出,这些建筑材料不会造成明显的辐射危害。

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