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首页> 外文期刊>Journal of material cycles and waste management >Material cycle realization by hazardous phosphogypsum waste, ferrous slag, and lime production waste application to produce sustainable construction materials
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Material cycle realization by hazardous phosphogypsum waste, ferrous slag, and lime production waste application to produce sustainable construction materials

机译:危险磷酸缺口废物,铁渣和石灰生产废物应用的物质循环实现生产可持续建筑材料

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摘要

The article presents data from new compositions of construction materials developed from three types of Kazakhstan enterprises’industrial waste—highly alkaline (pH = 13.5) hazardous sludge of phosphogypsum (PG) waste from Karatau deposits(52–78 wt.%), ground-cooled converter slag (CS) from Karaganda Metallurgical Plant (20–45%), and lime production waste(LPW) from a small plant near Astana (2%). This research aimed to develop new compositions of materials, which correspondto Kazakhstan’s mechanical and environmental standards, to study the processes of new composites’ structure formationin the process of their hydration and resistance strengthening. The axial compressive-resistance values of the developedcomposites reached 5.3–6.8–9.6 and 14.9 MPa after 3, 7, 14, and 550 days of hydration, respectively; the values of the coefficientof linear expansion were in the range of 0.23 and 3.14%, and those of water absorption between 8.2 and 18.4%. Theformation processes of the materials’ structure were studied by the XRD, SEM, EDS, AAS, and LAMMA methods. Theanalyses of the solubility and leaching of metals by the AAS method showed the compliance of the new compositions withKazakhstan’s sanitary standards.
机译:本文介绍了从三种类型的哈萨克斯坦企业开发的建筑材料组合物的数据工业废物 - 高度碱性(pH = 13.5)磷酸缺口(PG)废物的危险污泥来自Karatau沉积物(52-78重量%),来自karaganda冶金植物的地面冷却转换器渣(Cs)(20-45%)和石灰生产废物(LPW)来自阿斯塔纳附近的小植物(2%)。该研究旨在开发新的材料组成,其对应致哈萨克斯坦的机械和环境标准,研究新复合材料结构形成的过程在它们的水合和抗性强化过程中​​。开发的轴向抗压性值3,7,14和550天的合成后复合材料分别达到5.3-6.8-9.6和14.9MPa;系数的值线性膨胀的范围为0.23和3.14%,吸水率为8.2和18.4%。这通过XRD,SEM,EDS,AAS和Lamma方法研究了材料结构的形成过程。这通过AAS方法分析金属的溶解度和浸出,显示了新的组合物的顺应性哈萨克斯坦的卫生标准。

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