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从废铝制备用于隔热和吸油应用的具有多种性能的铝基气凝胶:先进的制造工艺和性能。

Advanced Fabrication and Multi-Properties of Aluminum-Based Aerogels from Aluminum Waste for Thermal Insulation and Oil Absorption Applications.

机构信息

Department of Mechanical Engineering, National University of Singapore, Singapore 117575, Singapore.

University of Cuu Long (UCL), Vinh Long 85200, Vietnam.

出版信息

Molecules. 2023 Mar 17;28(6):2727. doi: 10.3390/molecules28062727.

Abstract

Metal-based aerogels have attracted numerous studies due to their unique physical, structural, thermal, and chemical properties. Utilizing aluminum waste, a novel, facile, environmentally friendly approach to aluminum-based aerogels is proposed. In this work, the aluminum-based aerogels produced do not use toxic chemicals unlike conventional aerogel production. Aluminum powder, with poly(acrylic acid) and carboxymethyl cellulose as binders, is converted into aluminum-based aerogels using the freeze-drying method. The aluminum-based aerogels have low density (0.08-0.12 g/cm) and high porosity (93.83-95.68%). The thermal conductivity of the aerogels obtained is very low (0.038-0.045 W/m·K), comparable to other types of aerogels and commercial heat insulation materials. Additionally, the aerogels can withstand temperatures up to 1000 °C with less than 40% decomposition. The aerogels exhibited promising oil absorption properties with their absorption capacity of 9.8 g/g and 0.784 g/cm. The Young's modulus of the aerogels ranged from 70.6 kPa to 330.2 kPa. This study suggests that aluminum-based aerogels have potential in thermal insulation and oil absorption applications.

摘要

金属气凝胶因其独特的物理、结构、热和化学性能而引起了众多研究。本工作提出了一种新颖、简便、环保的利用铝废料制备铝基气凝胶的方法。与传统气凝胶制备方法不同,本工作所制备的铝基气凝胶不使用有毒化学品。采用冷冻干燥法,将铝粉与聚丙烯酸和羧甲基纤维素作为粘结剂,制备出铝基气凝胶。所制备的铝基气凝胶具有低密度(0.08-0.12 g/cm)和高孔隙率(93.83-95.68%)。所获得的气凝胶的热导率非常低(0.038-0.045 W/m·K),与其他类型的气凝胶和商业隔热材料相当。此外,气凝胶在 1000°C 以下的温度下可承受小于 40%分解,表现出良好的热稳定性。气凝胶具有良好的吸油性能,其吸油能力为 9.8 g/g 和 0.784 g/cm。气凝胶的杨氏模量范围为 70.6 kPa 至 330.2 kPa。本研究表明,铝基气凝胶在隔热和吸油应用方面具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0260/10058144/fb5457286582/molecules-28-02727-g001.jpg

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