Research Article

Production of new type insulation material: Expanded Perlite-Silica aerogel composite

Volume: 5 Number: 3 July 1, 2021
EN

Production of new type insulation material: Expanded Perlite-Silica aerogel composite

Abstract

Silica aerogel is a class of nanoporous material with extremely high porosity (85–99.9 %) and specific surface area (500–1200 m2/g), as in cause very low density, low thermal conductivity. But silica aerogel have some disadvantages. One of this disadvantages is high cost. In this study, to solve this problem has been used low cost precursor which is rice husk ash. Also, we try to improve porosity. To improve the porosity we used expanded perlite (EP). To produced EP is heated the perlite to 760–1100 °C, at which point its native water is converted to vapor and the material is caused to expand to 4–20 times its original volume, then the high-porosity and lightweight aggregates are formed. In this study silica aerogels have been reinforced with EP to product new type composite material which is used as building insulation material. The prepared EP-silica aerogel composite was characterized using SEM and BET measurements.

Keywords

Supporting Institution

Mersin Üniversitesi

Project Number

2019-3-TP3-3764

Thanks

The authors would like to acknowledge the financial support of Mersin University Department of Scientific Research Projects

References

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  3. Başgöz Ö & Güler Ö (2020). The unusually formation of porous silica nano-stalactite structure by high temperature heat treatment of SiO2 aerogel synthesized from rice hull. Ceramics International, 46(1), 370-380. DOI: 10.1016/j.ceramint.2019.08.271
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Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

July 1, 2021

Submission Date

January 13, 2020

Acceptance Date

March 9, 2020

Published in Issue

Year 2021 Volume: 5 Number: 3

APA
Güler, Ö., Başgöz, Ö., & Yavuz, Ç. (2021). Production of new type insulation material: Expanded Perlite-Silica aerogel composite. Turkish Journal of Engineering, 5(3), 95-99. https://doi.org/10.31127/tuje.674035
AMA
1.Güler Ö, Başgöz Ö, Yavuz Ç. Production of new type insulation material: Expanded Perlite-Silica aerogel composite. TUJE. 2021;5(3):95-99. doi:10.31127/tuje.674035
Chicago
Güler, Ömer, Öyküm Başgöz, and Çağdaş Yavuz. 2021. “Production of New Type Insulation Material: Expanded Perlite-Silica Aerogel Composite”. Turkish Journal of Engineering 5 (3): 95-99. https://doi.org/10.31127/tuje.674035.
EndNote
Güler Ö, Başgöz Ö, Yavuz Ç (July 1, 2021) Production of new type insulation material: Expanded Perlite-Silica aerogel composite. Turkish Journal of Engineering 5 3 95–99.
IEEE
[1]Ö. Güler, Ö. Başgöz, and Ç. Yavuz, “Production of new type insulation material: Expanded Perlite-Silica aerogel composite”, TUJE, vol. 5, no. 3, pp. 95–99, July 2021, doi: 10.31127/tuje.674035.
ISNAD
Güler, Ömer - Başgöz, Öyküm - Yavuz, Çağdaş. “Production of New Type Insulation Material: Expanded Perlite-Silica Aerogel Composite”. Turkish Journal of Engineering 5/3 (July 1, 2021): 95-99. https://doi.org/10.31127/tuje.674035.
JAMA
1.Güler Ö, Başgöz Ö, Yavuz Ç. Production of new type insulation material: Expanded Perlite-Silica aerogel composite. TUJE. 2021;5:95–99.
MLA
Güler, Ömer, et al. “Production of New Type Insulation Material: Expanded Perlite-Silica Aerogel Composite”. Turkish Journal of Engineering, vol. 5, no. 3, July 2021, pp. 95-99, doi:10.31127/tuje.674035.
Vancouver
1.Ömer Güler, Öyküm Başgöz, Çağdaş Yavuz. Production of new type insulation material: Expanded Perlite-Silica aerogel composite. TUJE. 2021 Jul. 1;5(3):95-9. doi:10.31127/tuje.674035

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