Department of Mechanical Engineering, National University of Singapore, Singapore 117575, Singapore.
University of Cuu Long (UCL), Vinh Long 85200, Vietnam.
Molecules. 2023 Mar 17;28(6):2727. doi: 10.3390/molecules28062727.
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.
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。