Impact of fly ash content and fly ash transportation distance on embodied greenhouse gas emissions and water consumption in concrete

被引:0
作者
Kate R. O’Brien
Julien Ménaché
Liza M. O’Moore
机构
[1] University of Queensland,Division of Environmental Engineering
[2] University of Queensland,Division of Civil Engineering
来源
The International Journal of Life Cycle Assessment | 2009年 / 14卷
关键词
Aggregate; Cement; Concrete; Embodied emissions; Embodied water; Fly ash; Greenhouse gas emissions; Life cycle assessment; Portland cement;
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
页码:621 / 629
页数:8
相关论文
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[1]  
Bhattacharjee U(2002)Potential of fly ash utilisation in India Energy 27 151-166
[2]  
Kandpal TC(2003)Conditioning circuit analysis for slimes management in quarries Chem Eng Res Des 81 1158-1164
[3]  
Bourgeois F(2006)The potential of fly ash: the future looks bright Concrete 40 68-70
[4]  
Baudet G(2006)Appropriate use of sustainable construction materials Concrete 40 20-24
[5]  
Bizi M(2007)Green house gas emissions due to concrete manufacture Int J LCA 12 282-288
[6]  
Gaboriau H(1999)Characterization of fly ash from Israel with reference to its possible utilization Fuel 78 215-223
[7]  
Dhir R(2001)Power station fly ash – a review of value-added utilization outside of the construction industry Resour Conserv Recy 31 217-228
[8]  
Dhir R(2007)Comparative performance of geopolymers made with metakaolin and fly ash after exposure to elevated temperatures Cem Concr Rzes 37 1583-1589
[9]  
Dyer T(2006)Estimation of resource savings due to fly ash utilization in road construction Resour Conserv Recycl 48 125-140
[10]  
Paine K(2002)Sustainable development and concrete technology Concr Int 24 22-34