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首页> 外文期刊>Journal of materials in civil engineering >Stabilization of Phosphogypsum by Sulfur Polymer
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Stabilization of Phosphogypsum by Sulfur Polymer

机译:含硫聚合物稳定磷石膏

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摘要

In this research, a new type of phosphogypsum-sulfur polymer cement (PG-SPC) for use in the manufacture of building materials was obtained. Physicochemical, radiological characterization, and modeling of exhalation rates were carried out in phosphogypsum (PG) and PG-SPC samples. Because the PG is enriched in several natural radionucleides, a leaching study in PG-SPC was performed. The optimized ratio of elemental sulfur/phosphogypsum = 1:1.0 and phosphogypsum dosage = 10-40% by weight was obtained. The result showed that the solidified materials present a highest strength (54-62 MPa) and low total porosity (2.8-6.8%). The activity concentration index (I) in the PG-SPC is lower than the reference values in most international regulations; therefore these new sulfur polymer cements can be used without radiological restrictions in the manufacture of building materials inside a standard room (5 × 5 × 2 m~3) with good ventilation. The leaching experiment demonstrated that the environmental impacts of the PG-SPC cements are negligible.
机译:在这项研究中,获得了一种新型的用于建筑材料制造的磷石膏-硫聚合物水泥(PG-SPC)。在磷石膏(PG)和PG-SPC样品中进行了物理化学,放射学表征和呼气速率的建模。由于PG富含几种天然放射性核素,因此在PG-SPC中进行了浸出研究。获得了元素硫/磷的最佳比例= 1:1.0,磷石膏的剂量= 10-40重量%。结果表明,固化的材料具有最高的强度(54-62 MPa)和较低的总孔隙率(2.8-6.8%)。 PG-SPC中的活动浓度指数(I)低于大多数国际法规中的参考值;因此,这些新型的含硫聚合物水泥可在无辐射的情况下用于通风良好的标准房间(5×5×2 m〜3)内的建筑材料生产中。浸出实验表明,PG-SPC水泥对环境的影响可以忽略不计。

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