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Utilization of Mineral Wools as Alkali-Activated Material Precursor

机译:矿棉作为碱活化材料的前体

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摘要

Mineral wools are the most common insulation materials in buildings worldwide. However, mineral wool waste is often considered unrecyclable because of its fibrous nature and low density. In this paper, rock wool (RW) and glass wool (GW) were studied as alkali-activated material precursors without any additional co-binders. Both mineral wools were pulverized by a vibratory disc mill in order to remove the fibrous nature of the material. The pulverized mineral wools were then alkali-activated with a sodium aluminate solution. Compressive strengths of up to 30.0 MPa and 48.7 MPa were measured for RW and GW, respectively, with high flexural strengths measured for both (20.1 MPa for RW and 13.2 MPa for GW). The resulting alkali-activated matrix was a composite-type in which partly-dissolved fibers were dispersed. In addition to the amorphous material, sodium aluminate silicate hydroxide hydrate and magnesium aluminum hydroxide carbonate phases were identified in the alkali-activated RW samples. The only crystalline phase in the GW samples was sodium aluminum silicate. The results of this study show that mineral wool is a very promising raw material for alkali activation.
机译:矿棉是全球建筑物中最常见的保温材料。但是,矿棉废料由于其纤维性质和低密度而常常被认为不可回收。在本文中,对岩棉(RW)和玻璃棉(GW)作为碱活化材料的前体进行了研究,而没有任何其他共粘合剂。为了去除材料的纤维性质,将两种矿棉通过振动盘磨机进行粉碎。然后将粉碎的矿棉用铝酸钠溶液碱活化。 RW和GW分别测得的压缩强度分别高达30.0 MPa和48.7 MPa,而弯曲强度均被测出(RW为20.1 MPa,GW为13.2 MPa)。所得的碱活化基质是其中部分溶解的纤维分散的复合型。除无定形物质外,在碱活化的RW样品中还发现了铝酸钠氢氧化硅水合物和碳酸氢镁铝相。 GW样品中唯一的结晶相是铝硅酸钠。这项研究的结果表明,矿棉是非常有希望的碱活化原料。

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