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基于粉煤灰的氧化物颗粒转化为功能性硅铝气凝胶及其作为防冰表面的潜在应用。

Transformation of Fly Ash-Based Oxide Particles into a Functional Silica-Alumina Aerogel and Its Potential Application as an Anti-icing Surface.

作者信息

Bedir Esra, Çitoğlu Senem, Duran Hatice

机构信息

Department of Materials Science & Nanotechnology Engineering, TOBB University of Economics and Technology, Söğütözü Cad. 43, 06560 Ankara, Türkiye.

UNAM-National Nanotechnology Research Center and Institute of Materials Science and Nanotechnology, Bilkent University, 06800 Ankara, Türkiye.

出版信息

ACS Omega. 2024 Aug 7;9(33):35864-35872. doi: 10.1021/acsomega.4c04802. eCollection 2024 Aug 20.

Abstract

Lightweight, surface hydrophobic, highly insulating, and long-lasting aerogels are required for energy conservation and ice-repellent applications. Here, we present the conversion of fly ash to a silica-alumina aerogel (SAA) by utilizing its high silica content. The extracted silica component replaces expensive precursors typically used in conventional aerogel production. Ice adhesion performance was compared to that of polypropylene (PP), an insulating commodity polymer. First, we removed some salt impurities and heavy metals via water and alkaline washing protocols. Then, we produced SAA via the ambient pressure drying method by using trimethylchlorosilane (TMCS) as an adhesion promoter. The newly produced SAA has a surface area of 810 m g and shows hydrophobic properties with a contact angle of 140 ± 5°. The thermal conductivity of SAA is 0.0238 W m K with = 1.1922 MJ m K. The ice adhesion strength of the PP substrate was calculated as 188.30 ± 51.24 kPa, while the ice adhesion strength of the SAA was measured as 1.21 ± 0.40 kPa, which was about 150 times lower than that of PP. This indicated that SAA had icephobic properties since ice adhesion strength was less than 10 kPa. This study demonstrates that fly ash-based SAA can be utilized as an economical material with a large surface area and exceptional thermal insulation capacity and is free of harmful compounds (heavy metals), making it potentially suitable as an anti-ice thermal insulation material.

摘要

节能和防冰应用需要轻质、表面疏水、高度绝缘且持久耐用的气凝胶。在此,我们利用粉煤灰的高硅含量将其转化为硅铝气凝胶(SAA)。提取的硅成分替代了传统气凝胶生产中通常使用的昂贵前驱体。将冰粘附性能与作为绝缘商品聚合物的聚丙烯(PP)进行了比较。首先,我们通过水洗和碱洗方案去除了一些盐杂质和重金属。然后,我们使用三甲基氯硅烷(TMCS)作为粘附促进剂,通过常压干燥法制备了SAA。新制备的SAA表面积为810 m²/g,接触角为140±5°,显示出疏水特性。SAA的热导率为0.0238 W/(m·K),焓变ΔH = 1.1922 MJ/(m²·K)。PP基材的冰粘附强度计算为188.30±51.24 kPa,而SAA的冰粘附强度测量为1.21±0.40 kPa,约为PP的150分之一。这表明SAA具有疏冰特性,因为其冰粘附强度小于10 kPa。本研究表明,基于粉煤灰的SAA可作为一种经济的材料,具有大表面积和出色的隔热能力,且不含有害化合物(重金属),使其有可能适合作为一种防冰隔热材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15e2/11339828/19c6cdbe1ddd/ao4c04802_0001.jpg

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