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Climate and energy challenges for materials science

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The Paris agreement on climate change represents an important step in the design of a new global framework for the mitigation of greenhouse gas emissions. Energy efficiency and renewable energy are keys for the success of this ambitious agreement.

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Figure 1: Potential global final renewable energy use in 2030.

References

  1. State of the Climate: Global Analysis for September 2015 (NOAA National Centers for Environmental Information, 2015); http://go.nature.com/ZAEmAf

  2. Lima-Paris Action Agenda. United Nations Framework Convention on Climate Change http://go.nature.com/V9XcNh

  3. The Emissions Gap Report 2015 (United Nations Environment Programme, 2015); http://go.nature.com/31COZe

  4. Olivier, J. G. J. & Janssens-Maenhout, G. CO2 Emissions from Fossil Fuel Combustion Part III: Total Greenhouse Gas Emissions; 2015 Edition (International Energy Agency, 2015); http://go.nature.com/4FmoGO

    Google Scholar 

  5. Synthesis Report on the Aggregate Effect of the Intended Nationally Determined Contributions (United Nations Framework Convention on Climate Change, 2015); http://go.nature.com/AYt2tZ

  6. Anthropocene. International Geosphere-Biosphere Programme http://go.nature.com/askSxi

  7. World Steel in Figures 2015 (World Steel Association, 2015); http://go.nature.com/1Za4w7

  8. FAO Cereal Supply and Demand Brief (Food and Agriculture Organization of the United Nations, 2015); http://go.nature.com/6l3QA1

  9. Cement Statistics and Information 2015 (United States Geological Survey, 2015); http://go.nature.com/IqaKnt

  10. International Energy Agency (IEA) and the World Bank Sustainable Energy for All 2015—Progress Toward Sustainable Energy. (World Bank, 2015); http://go.nature.com/FVEu8V

  11. World population projected to reach 9.7 billion by 2050. United Nations Department of Economic and Social Affairs (29 July 2015); http://go.nature.com/k7AsMc

  12. REmap 2030: A Renewable Energy Roadmap (International Renewable Energy Agency, 2014); http://go.nature.com/gAg8BQ

  13. REthinking Energy: Renewable Energy and Climate Change (International Renewable Energy Agency, 2015); http://go.nature.com/98eHfe

  14. Renewable Power Generation Costs in 2014 (International Renewable Energy Agency, 2015); http://go.nature.com/5Vp2l5

  15. Gielen, D., Newman, J. & Patel, M. K. MRS Bull. 33, 471–477 (2008).

    Article  CAS  Google Scholar 

  16. Chen, G-Q. & Patel, M. K. Chem. Rev. 112, 2082–2099 (2011).

    Article  Google Scholar 

  17. Cement Technology Roadmap 2009 (International Energy Agency and World Business Council of Sustainable Development, 2009); http://go.nature.com/jQLKa7

  18. Ayres, R. U. & Peiro, L. T. Phil. Trans. R. Soc. A 371, 20110563 (2013).

    Article  Google Scholar 

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Correspondence to Dolf Gielen.

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Gielen, D., Boshell, F. & Saygin, D. Climate and energy challenges for materials science. Nature Mater 15, 117–120 (2016). https://doi.org/10.1038/nmat4545

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