A New Class of Opacified Monolithic Aerogels of Ultralow High-Temperature Thermal Conductivities

作者:Wei Te Yu; Lu Shih Yuan*; Chang Yu Cheng
来源:Journal of Physical Chemistry C, 2009, 113(17): 7424-7428.
DOI:10.1021/jp900380q

摘要

The development of materials of ultralow high-temperature thermal conductivities for applications in high-temperature thermal insulations has become increasingly more important than ever in view of the ever worsening issues of fossil energy depletion and global warming that call for more demanding energy-saving practices. In this study, a new class of opacified monolithic aerogels of ultralow high-temperature thermal conductivities was developed for thermal insulation applications at high temperatures. Carbon nanofibers were successfully incorporated into the mesoporous network of silica aerogels at concentrations as high as 20 wt % through an accelerated-gelation sol-gel process to enhance the dimensional stability of the silica aerogels and to suppress the thermal radiations that become dominant at high temperatures, to achieve an ultralow thermal conductivity of 0.050 W/m-K at 500 degrees C, whereas maintaining a thermal stability above 500 degrees C (much better than the conventional high-temperature thermal insulation materials: 0.3 W/m-K at 500 degrees C for glass fibers, 0.1 W/m-K at 527 degrees C for alumina fused brick, and 1.7 W/m-K at 527 degrees C for sillimante).