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Sustainable one-part geopolymer foams with glass fines versus sand as aggregates

机译:具有玻璃细粉而不是沙粒的可持续性单组分地聚合物泡沫

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摘要

ever increasing demand for high-quality river sand in construction, which poses economic and environmental concerns, highlights the necessity for finding suitable alternatives. Waste glass has a very low impact tolerance, which makes it very easy to grind and use as a fine aggregate in the construction of lightweight building elements. In this study, glass fines are used as a replacement for fine sand in manufacturing geopolymer foams. The thermal and mechanical properties of the two systems with different densities are investigated and compared with a control sample of geopolymer foam with no aggregates. The geopolymer paste with sand aggregates has a density that was approximately 100 kg/m(3) higher than the paste with glass aggregates. The heavier samples with sand aggregates required a higher degree of foaming to drop the density to a similar range, which negatively affects their strength. For a density of 1000 kg/m(3), the geopolymer foams with glass aggregates are 25% stronger than the foams with sand aggregates. The strength improves further by 31% and 77% as the density drops down to 800 kg/m(3) and 600 kg/m(3), respectively. The shape of the bubbles in geopolymer foams with glass aggregates is more regular with less interconnectivity between pores, especially at lower densities. This pore characteristic enhances the insulation capacity of lightweight foams with glass aggregates where thermal conductivity of 0.15 W/mK was achieved in the sample with 600 kg/m(3) density. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对建筑用优质河砂的需求不断增长,这引起了经济和环境方面的关注,这凸显了寻找合适替代品的必要性。废玻璃的抗冲击性极低,这使其很容易磨碎并用作轻质建筑构件的细骨料。在这项研究中,玻璃粉被用作制造地质聚合物泡沫的细砂的替代品。研究了具有不同密度的两个系统的热和机械性能,并将其与不含骨料的地质聚合物泡沫的对照样品进行了比较。含砂骨料的地聚合物糊的密度比含玻璃骨料的糊高约100 kg / m(3)。含砂骨料的较重样品需要较高的起泡度才能将密度降至相似的范围,这会对强度产生负面影响。密度为1000 kg / m(3)时,含玻璃骨料的地聚合物泡沫比含砂骨料的泡沫高25%。随着密度分别下降到800 kg / m(3)和600 kg / m(3),强度进一步提高了31%和77%。具有玻璃聚集体的地质聚合物泡沫中的气泡形状更规则,孔之间的连通性较小,尤其是在较低密度下。这种孔隙特性增强了带有玻璃聚集体的轻质泡沫的绝热能力,在密度为600 kg / m(3)的样品中实现了0.15 W / mK的导热系数。 (C)2018 Elsevier Ltd.保留所有权利。

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