School of Resources and Environmental Engineering, Wuhan University of Technology, Luoshi Road 122, Wuhan, 430070, PR China.
State Key Laboratory of Fire Science, University of Science and Technology of China, Jinzhai Road 96, Hefei, 230027, PR China.
J Hazard Mater. 2019 Jan 15;362:294-302. doi: 10.1016/j.jhazmat.2018.08.087. Epub 2018 Sep 9.
Hydrophobic silica aerogels were heat treated under various conditions. Physical and chemical analyses were conducted to study the effect of the heat treatments on the silica aerogels. The O/Si and C/Si values in the hydrophobic silica aerogels increased and decreased, respectively, with the increase in the heating temperature. C-O, -OH, and CO were detected during pyrolysis. Pyrolysis of the silica aerogels in air could be divided into 3 steps: the hydroxylation of methyl groups, the splitting of the alcoholic hydroxyl, and the oxidisation of CO. When the heat treatment temperature was lower than 350 °C, the properties of the silica aerogels showed little change. With further increase in the heat treatment temperature, the variation in the relevant parameters became more prominent. The secondary particles coalesced with one another, and the mesopores were destroyed. Consequently, the thermal conductivity and bulk density rose greatly. The carbon within the silica aerogels was released after heat treatment. As a result, the heat released in the thermal gravimetry and oxygen bomb analyses dropped remarkably with the increase in the heat treatment temperature.
疏水性二氧化硅气凝胶在不同条件下进行热处理。通过物理化学分析研究了热处理对二氧化硅气凝胶的影响。随着加热温度的升高,疏水性二氧化硅气凝胶中的 O/Si 和 C/Si 值分别增加和减少。在热解过程中检测到了 C-O、-OH 和 CO。在空气中对二氧化硅气凝胶进行热解可分为 3 个步骤:甲基的羟基化、醇羟基的分裂和 CO 的氧化。当热处理温度低于 350°C 时,二氧化硅气凝胶的性能几乎没有变化。随着热处理温度的进一步升高,相关参数的变化变得更加明显。次级颗粒相互融合,中孔被破坏。因此,热导率和体密度大大增加。热处理后,二氧化硅气凝胶中的碳被释放出来。因此,随着热处理温度的升高,热重和氧弹分析中释放的热量显著下降。