Energy Efficiency and GHG Emissions: Prospective Scenarios for the Aluminium Industry
暂无分享,去创建一个
Moya Rivera Jose Antonio | Boulamanti Aikaterini | S Slingerland | R Van Der Veen | M Gancheva | Rademaekers K.m. | Kuenen J.j.p. | Visschedijk A.j.h. | Boulamanti Aikaterini | R. V. D. Veen | S. Slingerland | Kuenen J.j.p. | M. Gancheva | Rademaekers K.m. | Visschedijk A.j.h.
[1] W. Winiwarter,et al. EU Energy, Transport and GHG Emissions: Trends to 2050, Reference Scenario 2013 , 2013 .
[2] Public-Private Infrastructure Advisory Facility,et al. The Future of the Natural Gas Market in Southeast Europe , 2010 .
[3] E. Rubin,et al. The cost of carbon capture and storage for natural gas combined cycle power plants. , 2012, Environmental science & technology.
[4] Martin Désilets,et al. Techno-economic study of CO2 capture for aluminum primary production for different electrolytic cell ventilation rates , 2013 .
[5] Ernst Worrell,et al. Analysing research and technology development strategies : the 'ATLAS' project : energy efficient technologies in industry , 2006 .
[6] John Gale,et al. GREENHOUSE GAS ABATEMENT IN ENERGY INTENSIVE INDUSTRIES , 1994 .
[7] M. Schlesinger. Aluminum Recycling, Second Edition , 2013 .
[8] Edgar G. Hertwich,et al. The Aluminium Industry - Environment, Technology and Production , 2004 .