首页> 外文期刊>Journal of Environmental Radioactivity >Performance study and influence of radiation emission energy and soil contamination level on gamma-radiation shielding of stabilised/solidified radionuclide-polluted soils
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Performance study and influence of radiation emission energy and soil contamination level on gamma-radiation shielding of stabilised/solidified radionuclide-polluted soils

机译:辐射/辐射能量和土壤污染水平对稳定/固化的放射性核素污染土壤的γ-辐射屏蔽性能的研究及影响

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This work focuses on the stabilisation/solidification (S/S) of radionuclide-polluted soils at different Th-232 levels using Portland cement alone and with barite aggregates. The potential of S/S was assessed applying a full testing protocol and calculating gamma-radiation shielding (gamma RS) index, that included the measurement of soil radioactivity before and after the S/S as a function of the emission energy and soil contamination level. The results indicate that setting processes are strongly dependent on the contaminant concentration, and for contamination level higher than 5%, setting time values longer than 72 h. The addition of barite aggregates to the cement gout leads to a slight improvement of the S/S performance in terms of durability and contaminant leaching but reduces the mechanical resistance of the treated soils samples. Barite addition also causes an increase in the gamma-rays shielding properties of the S/S treatment up to about 20%. Gamma-ray measurements show that gamma RS strongly depends on the energy, and that the radioactivity with the contamination level was governed by a linear trend, while, gamma RS index does not depend on the radionuclide concentration. Results allow the calculated gamma RS values and those available from other experiments to be applied to hazard radioactive soil contaminations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作的重点是仅使用波特兰水泥和重晶石骨料,在不同的Th-232水平下,放射性核素污染的土壤的稳定/固化(S / S)。应用完整的测试方案并计算伽马辐射屏蔽(gamma RS)指数,评估了S / S的潜力,其中包括测量S / S前后土壤放射性的测量与排放能量和土壤污染水平的关系。 。结果表明凝结过程在很大程度上取决于污染物的浓度,并且对于高于5%的污染水平,凝结时间会超过72小时。在水泥痛风中添加重晶石骨料会在耐久性和污染物浸出方面稍微改善S / S性能,但会降低处理后的土壤样品的机械强度。重晶石的添加还导致S / S处理的伽马射线屏蔽性能提高到大约20%。伽马射线测量表明,伽马RS强烈依赖于能量,并且放射性与污染水平的关系由线性趋势控制,而伽马RS指数不取决于放射性核素浓度。结果可将计算出的伽玛RS值和其他实验获得的值用于危险的放射性土壤污染。 (C)2015 Elsevier Ltd.保留所有权利。

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