Single-stage technogy for granulated foam glass production based on the composition of tripoli and technogical microsilica; IOP Conference Series: Earth and Environmental Science; Vol. 43 : Problems of Geology and Subsurface Development
| Parent link: | IOP Conference Series: Earth and Environmental Science Vol. 43 : Problems of Geology and Subsurface Development.— 2016.— [012067, 4 p.] |
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| Autores Corporativos: | , |
| Otros Autores: | , , , |
| Sumario: | Title screen The possibility of foam glass production by means of one-stage technology based on the natural tripoli and technogenic silica is determined. 45 % sodium hydroxide solution is used for the synthesis of foam glass. The addition of microsilica as an extra component in an amount of 10 to 50 wt. % in batch component increases the strength of the obtained material to 4 MPa and reduces foaming temperature from 870 to 830 °C. The increased mechanical strength of the material is due to the residual quartz dissolution and cristobalite crystallization. The samples obtained from batch with 30 wt. % microsilica have maximum strength. |
| Lenguaje: | inglés |
| Publicado: |
2016
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| Colección: | Integrated Use and Processing of Mineral Resources |
| Materias: | |
| Acceso en línea: | http://dx.doi.org/10.1088/1755-1315/43/1/012067 http://earchive.tpu.ru/handle/11683/35176 |
| Formato: | Electrónico Capítulo de libro |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=650889 |
| Sumario: | Title screen The possibility of foam glass production by means of one-stage technology based on the natural tripoli and technogenic silica is determined. 45 % sodium hydroxide solution is used for the synthesis of foam glass. The addition of microsilica as an extra component in an amount of 10 to 50 wt. % in batch component increases the strength of the obtained material to 4 MPa and reduces foaming temperature from 870 to 830 °C. The increased mechanical strength of the material is due to the residual quartz dissolution and cristobalite crystallization. The samples obtained from batch with 30 wt. % microsilica have maximum strength. |
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| DOI: | 10.1088/1755-1315/43/1/012067 |