International Energy Analysis Department
Analysis of Potential Energy Saving and CO2 Emission Reduction of Home Appliances and Commercial Equipments in China." The 2010 American Council for an Energy Efficient Economy’s Summer Study on Energy Efficiency in Buildings. 2010.
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A framework for environmental assessment of CO2 capture and storage systems." Energy 37.1 (2012).
, , , and . "Estimation of CO2 Emissions from China’s Cement Production: Methodologies and Uncertainties." Energy Policy 57 (2013) 172–181.
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Thermal Energy Storage for Electricity Peak-demand Mitigation: A Solution in Developing and Developed World Alike." ECEEE 2013 Summer Study 3–8 June 2013, Belambra Les Criques, France 2013.
, , , , , and . "Data Availability in Appliance Standards and Labeling Program Development and Evaluation. Berkeley: Lawrence Berkeley National Laboratory, 2013.
, , , and . Barriers to energy efficiency improvement and decision-making behavior in Thai industry." Energy Efficiency 3.1 (2010) 33–52.
, , and . "The CO2 Abatement Cost Curve for the Thailand’s Cement Industry." Journal of Cleaner Production 18.15 (2010) 1509–1518.
, , and . "The use of conservation supply curves in energy policy and economic analysis:The case study of Thai cement industry." Energy Policy 38.1 (2010) 392–405.
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Energy Efficiency Improvement and Cost Saving Opportunities for Cement Making. Lawrence Berkeley National Laboratory, 2008.
, and . The State–of-the-Art Clean Technologies (SOACT) for Steelmaking Handbook (2nd Edition). Asia Pacific Partnership for Clean Development and Climate, 2010.
, , and . The State–of-the-Art Clean Technologies (SOACT) for Steelmaking Handbook (2nd Edition). Asia Pacific Partnership for Clean Development and Climate, 2010.
, , and . World Best Practice Energy Intensity Values for Selected Industrial Sectors. Lawrence Berkeley National Laboratory, 2008.
, , , , and . Energy Efficiency Improvement Opportunities for the Petroleum Refining Industry. Lawrence Berkeley National Laboratory, 2006.
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