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http://dx.doi.org/10.3740/MRSK.2012.22.10.531

Preparation of Hollow Silica by Spray Drying of Nano Silica Particles and Its Heat Transfer Property  

Youn, Chan Ki (Eco-composite Materials Center, Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology)
Lim, Hyung Mi (Eco-composite Materials Center, Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology)
Cha, Sujin (Eco-composite Materials Center, Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology)
Kim, Dae Sung (Eco-composite Materials Center, Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology)
Lee, Seung-Ho (Eco-composite Materials Center, Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology)
Publication Information
Korean Journal of Materials Research / v.22, no.10, 2012 , pp. 531-538 More about this Journal
Abstract
Hollow silica spheres were prepared by spray drying of precursor solution of colloidal silica. The precursor solution is composed of 10-20 nm colloidal silica dispersed in a water or ethanol-water mixture solvent with additives of tris hydroxymethyl aminomethane. The effect of pH and concentrations of the precursor and additives on the formation of hollow sphere particles was studied. The spray drying process parameters of the precursor feeding rate, inlet temperature, and gas flow rate are controlled to produce the hollow spherical silica. The mixed solvent of ethanol and water was preferred because it improved the hollowness of the spheres better than plain water did. It was possible to obtain hollow silica from high concentration of 14.3 wt% silica precursor with pH 3. The thermal conductivity and total solar reflectivity of the hollow silica sample was measured and compared with those values of other commercial insulating fillers of glass beads and $TiO_2$ for applications of insulating paint, in which the glass beads are representative of the low thermal conductive fillers and the $TiO_2$ is representative of infrared reflective fillers. The thermal conductivity of hollow silica was comparable to that of the glass beads and the total solar reflectivity was higher than that of $TiO_2$.
Keywords
hollow silica; spray drying; heat transfer; insulation; nano silica sol;
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