期刊文献+

粉煤灰生产地聚水泥的研究现状及效益展望 被引量:6

Study State and The Outlook of Fly Ash Based Geopolymer Cement
在线阅读 下载PDF
导出
摘要 研究发展节能、环保、耐久性能好的建筑材料是社会可持续发展之需,地聚水泥就是一种在工艺、性能、用途等方面集有机高聚物、陶瓷、水泥等多种材料之特性为一体的材料。文章详细总结了用粉煤灰生产地聚水泥的研究现状和发展概况,全方位展望了粉煤灰地聚水泥的成本优势、能源优势、资源优势和环境优势。 Society sustainable development requires we develop the building materials charactered saving-energy protectingenvironment good-durability. And the geopolymer cement is just the kind of building materials which has all the characteristics of organic high polymer, ceramic and cement and etc in technics, performance and use. The paper summarized the study state and development of geopolymer cement, expected its predominance in cost, energy, resource and environment.
出处 《水泥工程》 CAS 2007年第3期21-24,共4页 Cement Engineering
基金 四川省科技厅资助项目(编号:051061)
关键词 地聚水泥 粉煤灰 活性 激发 geopolymer fly ash activity excitation
  • 相关文献

参考文献22

  • 1Tang Mingshu.Sustainabale Development of Cement and Concrete in China [J].Proceedings of the International Workshop on Integrated Life-cycle Management of Infrastructure, HKUST, Hong Kong,2004 : 9-11
  • 2Mehta,P.K.. Reducing the Environmental Impact of Concrete [J]. Concrete International, 2001,23(03):25-34
  • 3Davidovits.J.The Ancient Egyptian Pyramids-Concrete or Rock[J] .Concrete International,1987,9(12):28-32
  • 4Davidovits.J. Geopolymer Chemistry and Properties[A]. Davidovits.J,OrlinslJ.Proceedings of the First European Conference on Soft Mineralogy[C]. Compiegne, France: The Geopolymer Institute,1988: 25-48
  • 5DavidovitsJ, DouglasC. ComrieJH, etal. Geopolymeric Concretes for Environmental Protection [J]. Concrete International: De 2sign&Construction, 1990,12(7):30--40
  • 6DavidovitsJ. Geopolymer cement to minimize carbon-dioxide greenhouse-warming[J]. Ceramic Transactions,1993,37:165-182
  • 7Davidovits.J. Recent Progresses in Concretes for Nuclear Waste and Uranium Waste Containment [J]. Concrete International, 1994.16(12):53-58
  • 8Davidovits.J. High Alkali Cements for 21st Century Concretes [A]. Concrete Technology, Past, Present, and Future [M]. Detroit: American Concrete Institute,1994: 383-397
  • 9LyonRE, FodenA, BalaguruPN, etal. Fire-resistant Aluminosilicate Composites [J]. Journal Fire and Materials,1997,21: 67-73
  • 10Davidovits.J. Technical Data Sheet for Geopolymeric Cement Type (potassium, calcium) -Poly (sialate-siloxo) [Al.Davidovits.J, Davidovits.R, James.C. Proceedings of Geopolymere. 99. SectionA[C]. Saint-Quentin, France: The Geopolymer Institute,1999: 83-96

二级参考文献11

  • 1Cengiz Duran Atis. Heat evolution of high-volume fly ash contrete[J]. Cement and Concrete Research,2002,32(5):751-756.
  • 2Cengiz Duran Atis.High volume fly ash abrasion resistant contrete[J]. J.Mater.Civ.Eng.2002,14(3):274-277.
  • 3Cengiz Duran Atis,O.N.Celik. Relation between abrasion resistance and flexural strength of hing volume fly ash concrete[J].Mater Struct.2002,35(248):257-260.
  • 4Cengiz Duran Atis, Alaettin Kilic, Umur Korkut Sevim. Strength and shrinkage properties of mortar containing a nonstandard high-calcium fly ash[J]. Cement and Concrete Research,2004,(34):99-102.
  • 5Ramazan Demirbog, Rustem Gul.The effects of expanded perlite aggregate,silica fume and fly ash on the thermal conductivity of lightweight concrete[J].Cement and Concrete Research,2003,(33):723-727.
  • 6N. Bouzoubaa, M.H. Zhang, V.M. Malhotra.Mechanical properties and durability of concrete made with high-volume fly ash blended cements using a coarse fly ash[J].Cement and Concrete Research,2001, (31):1393-1402.
  • 7H.C.Park,Y.J.Park, R.Stevens. Synthesis of alumina from high purity alum derived from coal fly ash[J]. Materials Science and Engineering A,2004,(367).166-170.
  • 8Wang Hongjie, Wang Yonglan. SiC powders prepared from fly ash[J]. Journal of Materials Processing Technology,2001,(117):52-57.
  • 9T.W.Cheng, T.H.Ueng, Y.S.Chen, J.P.Chiu. Production of glass-ceramic from incinerator fly ash[J]. Ceramics International,2002,(28):779-783.
  • 10Young Jun Park, Soon Ok Moon, Jong Heo. Crystalline phase control of glass ceramics obtained from sewage sludge fly ash[J]. Ceramics International, 2003,(29): 223-227.

共引文献65

同被引文献53

引证文献6

二级引证文献59

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部