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2018 | OriginalPaper | Buchkapitel

Production of Insulations and Construction Materials from Expanded Perlite

verfasst von : İsmail Demir, Serhat Başpınar, Erhan Kahraman

Erschienen in: Proceedings of 3rd International Sustainable Buildings Symposium (ISBS 2017)

Verlag: Springer International Publishing

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Abstract

Today, importance of sustainable development increases the importance of studies on energy efficiency. Residential and industrial fields consume 70% of total energy consumption and constitute the largest portion of it. There is an energy saving potential of 30% in industry and 70% in homes by insulation. The production of low thermal conductivity lightweight insulation materials from domestic resources and diversification of these materials has gained importance. Expanded perlite aggregates which have different particle size were used as a main raw material. Perlite is a lightweight material due to their high open and closed micro pores. Expanded perlite aggregate has porous structure and has hygroscopic properties. In order to prevent these properties, hydrophobic polymer, and organic or mineral acids additives were used to coat the surface by spraying method. Perlite surfaces were coated and become hydrophobic after this process. In the second part of the study, perlite aggregates mixed with certain amount of sodium silicate solution (water glass) and shaped in the mold. The main objective of this study is to production of highly heat isolative construction materials from expanded perlite which is very abundant in Turkey. According to the study, productions of insulation products which have thermal conductivity constant lower than 0.060 W/mK were obtained by using coated expanded perlite.

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Literatur
1.
Zurück zum Zitat Berge A, Johansson P (2010) Literatüre review of high performance thermal insulation. Report in Building Physics, Department of Civil and Environmental Engineering Division of Building Technology, Building Physics Chalmers University of Technology Gothenburg, Sweden, 2012 Berge A, Johansson P (2010) Literatüre review of high performance thermal insulation. Report in Building Physics, Department of Civil and Environmental Engineering Division of Building Technology, Building Physics Chalmers University of Technology Gothenburg, Sweden, 2012
3.
Zurück zum Zitat Binz A, Moosmann A, Steinke G, Schonhardt U, Fregnan F, Simmler H, Brunner S, Ghazi K, Bundi R, Heinemann U, Schwab H, Cauberg JJM, Tenpierik MJ, Jóhannesson GA, Thorsell TI, Erb M, Nussbaumer B (2005) Vacuum insulation in the building sector. Systems and Applications (Subtask B): IEA/ECBCS Annex 39 High Performance Thermal Insulation (HiPTI) Binz A, Moosmann A, Steinke G, Schonhardt U, Fregnan F, Simmler H, Brunner S, Ghazi K, Bundi R, Heinemann U, Schwab H, Cauberg JJM, Tenpierik MJ, Jóhannesson GA, Thorsell TI, Erb M, Nussbaumer B (2005) Vacuum insulation in the building sector. Systems and Applications (Subtask B): IEA/ECBCS Annex 39 High Performance Thermal Insulation (HiPTI)
4.
Zurück zum Zitat Davidovits J, Davidovits M, Davidovits N (1988) Geopolymer: room-temperature ceramic matrix for composites. Ceram Eng Sci Proc 9(7–8):835–841 Davidovits J, Davidovits M, Davidovits N (1988) Geopolymer: room-temperature ceramic matrix for composites. Ceram Eng Sci Proc 9(7–8):835–841
5.
Zurück zum Zitat Davidovits J (1988) Geopolymers of the first generation: SILIFACE-process. In: First European conference on soft mineralurgy, Geopolymer ’88, vol 1. Compiegne, France, pp 149–167 Davidovits J (1988) Geopolymers of the first generation: SILIFACE-process. In: First European conference on soft mineralurgy, Geopolymer ’88, vol 1. Compiegne, France, pp 149–167
6.
Zurück zum Zitat Davidovits J (1989) Geopolymers and geopolymeric materials. J Therm Anal 35(2):429–441CrossRef Davidovits J (1989) Geopolymers and geopolymeric materials. J Therm Anal 35(2):429–441CrossRef
7.
Zurück zum Zitat Sangwal K, Wiktorowska B, Sokolowski T (1994) Elementary crystal growth. Saan Pub., Lublin Sangwal K, Wiktorowska B, Sokolowski T (1994) Elementary crystal growth. Saan Pub., Lublin
8.
Zurück zum Zitat Lagaly G, Tufar W, Minihan A, Lovell A (2005) “Silicates” in Ullmann’s encyclopaedia of industrial chemistry. Wiley-VCH Lagaly G, Tufar W, Minihan A, Lovell A (2005) “Silicates” in Ullmann’s encyclopaedia of industrial chemistry. Wiley-VCH
9.
Zurück zum Zitat Lucas-Girot A, Mezah FZ, Mami M, Oudadesse H, Harabi A, Le Floch M (2011) Sol–gel synthesis of a new composition of bioactive glass in the quaternary system SiO2–CaO–Na2O–P2O5: comparison with melting method. J Non-Cryst Solids 357(18):3322–3327CrossRef Lucas-Girot A, Mezah FZ, Mami M, Oudadesse H, Harabi A, Le Floch M (2011) Sol–gel synthesis of a new composition of bioactive glass in the quaternary system SiO2–CaO–Na2O–P2O5: comparison with melting method. J Non-Cryst Solids 357(18):3322–3327CrossRef
10.
Zurück zum Zitat Divornic PR, Lenz RW (1992) Exactly alternating silarylene-siloxane polymers. Chapter 9. Relationships between polymer structure and glass transition temperature. Macromolecules 25:3769–3771CrossRef Divornic PR, Lenz RW (1992) Exactly alternating silarylene-siloxane polymers. Chapter 9. Relationships between polymer structure and glass transition temperature. Macromolecules 25:3769–3771CrossRef
11.
Zurück zum Zitat Riffle J, Yilgor I, Banthia A, Wilkes G, McGrath J (1981) Synthesis and characterization of new elastomeric polysiloxane modifiers for epoxy networks. Org Coat Appl Polym Sci Proc 46:397–400 Riffle J, Yilgor I, Banthia A, Wilkes G, McGrath J (1981) Synthesis and characterization of new elastomeric polysiloxane modifiers for epoxy networks. Org Coat Appl Polym Sci Proc 46:397–400
12.
Zurück zum Zitat Yilgor I, McGrath JE (1988) Advances in polymer science, vol 86. Springer, New York, pp 1–86 Yilgor I, McGrath JE (1988) Advances in polymer science, vol 86. Springer, New York, pp 1–86
13.
Zurück zum Zitat Garin S, Lecamp L, Youssef B, Bunel C (1999) New polysiloxanes bearing heterocyclic groups—synthesis and curability. Eur Polym J 35:473–482CrossRef Garin S, Lecamp L, Youssef B, Bunel C (1999) New polysiloxanes bearing heterocyclic groups—synthesis and curability. Eur Polym J 35:473–482CrossRef
18.
Zurück zum Zitat Simmler H, Brunner S, Heinemann U, Schwab H, Kumaran K, Mukhopadhyaya P, Quénard D, Sallée H, Noller K, Kükükpinar-Niarchos E, Stramm C, Tenpierik MJ, Cauberg H, Erb M (2005) Vacuum insulation panels. Study on VIP components and panels for service life prediction of VIP in building applications (Subtask A), Technical Report, IEA/ECBCS Annex 39 HiPTI-project (High performance thermal insulation for buildings and building systems) Simmler H, Brunner S, Heinemann U, Schwab H, Kumaran K, Mukhopadhyaya P, Quénard D, Sallée H, Noller K, Kükükpinar-Niarchos E, Stramm C, Tenpierik MJ, Cauberg H, Erb M (2005) Vacuum insulation panels. Study on VIP components and panels for service life prediction of VIP in building applications (Subtask A), Technical Report, IEA/ECBCS Annex 39 HiPTI-project (High performance thermal insulation for buildings and building systems)
Metadaten
Titel
Production of Insulations and Construction Materials from Expanded Perlite
verfasst von
İsmail Demir
Serhat Başpınar
Erhan Kahraman
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-63709-9_3