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A novel process for preparing fireproofing materials from various industrial wastes.
Su, Yi; Wang, Lei; Zhang, Fu-Shen.
Afiliación
  • Su Y; Department of Solid Waste Treatment and Recycling, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
  • Wang L; Department of Solid Waste Treatment and Recycling, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
  • Zhang FS; Department of Solid Waste Treatment and Recycling, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China; University of Chinese Academy of Sciences, Beijing, 100049, China. Electronic address: fszhang@rcees.ac.cn.
J Environ Manage ; 219: 332-339, 2018 Aug 01.
Article en En | MEDLINE | ID: mdl-29753241
ABSTRACT
In the current study, the possibility of incorporating various industrial wastes into fireproofing materials was investigated. It was found that the newly developed materials showed excellent air sealing and fireproofing performance, with air permeability coefficients 3 to 4 orders of magnitude smaller than traditional fire prevention materials. The influence of different parameters on the air permeability was investigated, and the air sealing mechanisms were clarified through microstructure analysis. In addition, the workability and mechanical properties of the fireproofing materials for practical application in coal mine were studied. The new materials derived from industrial wastes had a compact and monolithic structure, and the excellent air tightness could be attributed to the pozzolanic activity of the industrial wastes and the film-forming property of organic polymers. Among the industrial wastes examined, a special coal fly ash with high pozzolanic activity and little free calcium oxide derived the best product with air permeability coefficient, tensile strength and breaking elongation of 4.17 × 10-8 m2/s, 2.14 MPa and 48.90%, respectively. This study provides an economical, environmentally friendly and promising approach for industrial wastes recycling.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Reciclaje / Ceniza del Carbón / Residuos Industriales Idioma: En Revista: J Environ Manage Año: 2018 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Reciclaje / Ceniza del Carbón / Residuos Industriales Idioma: En Revista: J Environ Manage Año: 2018 Tipo del documento: Article País de afiliación: China
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