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基于海水中和铝土矿残渣的复合材料的物理和隔热性能

Physical and thermal insulation properties of the composites based on seawater-neutralised bauxite residue.

作者信息

Abu-Jdayil Basim, Adi Maissa, Al Ghaferi Fatima, Al Yahyaee Sara, Al Jabri Maryam

机构信息

Chemical & Petroleum Engineering Department, UAE University, P.O. Box 15551, Al Ain, United Arab Emirates.

Chemical & Petroleum Engineering Department, UAE University, P.O. Box 15551, Al Ain, United Arab Emirates.

出版信息

J Hazard Mater. 2021 Feb 5;403:123723. doi: 10.1016/j.jhazmat.2020.123723. Epub 2020 Aug 19.

DOI:10.1016/j.jhazmat.2020.123723
PMID:33264897
Abstract

The objective of this study is to evaluate the possibility of using bauxite residue (BR), which is a highly hazardous waste, as a filler in thermoset polymer matrices for applications in insulating construction materials to minimise heat loss in buildings. Unsaturated polyester resin (UPR) blended with the seawater-neutralised BR in a ratio of 0-60 vol.% was transformed into a solid via a crosslinking process at room temperature. The pristine polyester and BR-UPR composites were characterised to ascertain their structural, physical and thermal properties. The results indicate that BR is a good filler that can be used with UPR to develop thermal insulation/construction materials. The UPR composite containing 40 vol.% BR is considered to be the optimum mixture with respect to the tested physical and thermal properties because it utilises a large amount of filler and shows promising thermal insulation characteristics with a thermal conductivity of 0.096 W/(m∙K), a thermal diffusivity of 0.161 mm/s, a 24-h water retention of 0.15 % and a bulk density of 1484 kg/m. Furthermore, the thermal stability of the prepared composites is positively influenced by the incorporation of BR. The overall weight loss upon heating to 900 °C decreased from 99.85 % (pristine polyester) to 46.68 % (60 vol.% BR composite).

摘要

本研究的目的是评估将铝土矿残渣(BR)用作热固性聚合物基体中的填料,以应用于绝缘建筑材料,从而使建筑物热损失最小化的可能性。铝土矿残渣是一种高危险性废物。将不饱和聚酯树脂(UPR)与经海水中和的BR按0-60体积%的比例混合,通过室温交联过程转化为固体。对原始聚酯和BR-UPR复合材料进行表征,以确定其结构、物理和热性能。结果表明,BR是一种良好的填料,可与UPR一起用于开发隔热/建筑材料。就所测试的物理和热性能而言,含有40体积%BR的UPR复合材料被认为是最佳混合物,因为它使用了大量填料,并显示出有前景的隔热特性,其导热系数为0.096W/(m∙K),热扩散率为0.161mm/s,24小时保水率为0.15%,堆积密度为1484kg/m³。此外,BR的加入对制备的复合材料的热稳定性有积极影响。加热至900°C时的总失重从99.85%(原始聚酯)降至46.68%(60体积%BR复合材料)。

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