Reducing Industrial Energy Use and CO2 Emissions: The Role of Materials Science

Author:

Gielen Dolf,Newman John,Patel Martin K.

Abstract

AbstractNearly one-third of the world's energy consumption and 36% of its carbon dioxide (CO2) emissions are attributable to manufacturing industries. However, the adoption of advanced technologies already in commercial use could provide technical energy savings in industry of 27–41 exajoules (EJ), along with a reduction in CO2 emissions of 2.2–3.2 gigatonnes (Gt) per year, about 7–12% of today's global CO2 emissions. Even more significant savings can be attained on the supply side if fuel switching and CO2 capture and storage are considered. However, such changes must start in the coming decade to have a substantial impact by 2050.

Publisher

Springer Science and Business Media LLC

Subject

Physical and Theoretical Chemistry,Condensed Matter Physics,General Materials Science

Reference11 articles.

1. 10. Patel M. , Crank M. , Dornburg V. , Hermann B. , Roes L. , Hüsing B. , van Overbeek L. , Terragni F. , Recchia E. , “Medium and long-term opportunities and risks of the biotechnological production of bulk chemicals from renewable resources—The BREW Project” (European Commission's GROWTH Programme, DG Research, Coordinated by Utrecht University, Netherlands, September 2006).

2. 3. Birat J.-P. , “DSTI/SU/SC” 68 (OECD Steel Committee Meeting, Paris, November 13, 2006).

3. Modelling industrial energy use: The IEAs Energy Technology Perspectives

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