Publications
Analysis of the Past and Future Trends of Energy Use in Key Medium- and Large-Sized Chinese Steel Enterprises, 2000-2030. Lawrence Berkeley National Laboratory, 2013.
Alternative and Emerging Technologies for an Energy-Efficient, Water-Efficient, and Low-Pollution Textile Industry. Berkeley: Lawrence Berkeley National Laboratory, 2013.
Alternative Emerging Ironmaking Technologies for Energy-efficiency and Carbon Dioxide Emissions Reduction: A Technical Review." Renewable and Sustainable Energy Reviews 33 (2014): 645-658.
"Assessment of Energy Efficiency Improvement and CO2 Emission Reduction Potentials in the Iron and Steel Industry in China. Berkeley: Lawrence Berkeley National Laboratory, 2012.
Rapid cost decrease of renewables and storage accelerates the decarbonization of China’s power system." Nature Communications 11, no. 1 (2020).
"ELITE Cities: A low-carbon Eco-city Evaluation Tool for China In ECEEE 2013 Summer Study. European Council for Energy Efficient Economy, 2013.
Enabling a Rapid and Just Transition away from Coal in China." One Earth 3, no. 2 (2020): 187-194.
"Is Your City Really Sustainable? A Tale of Jinan City Using Quantitative Low- Carbon Eco-city Tools In 2014 ACEEE Summer Study on Energy Efficiency in Building. Pacific Grove, CA: The American Council for an Energy-Efficient Economy, 2014.
Life-cycle implications and supply chain logistics of electric vehicle battery recycling in California." Environmental Research Letters 10, no. 1 (2015).
"Estudio Preparatorio para la Implementación en Chile de Estándares Mínimos de Eficiencia Energética en Motores Industriales. Berkeley: LBNL, 2015.
Development of China's Energy-Efficiency Design Standard for Residential Buildings in the "Hot-Summer/Cold-Winter" Zone. City of Seattle;Natural Resources Defense Council; Lawrence Berkeley National Laboratory; China Academy of Building Research; Chongqing Architecture (Jianzu) University, 2001.
An Ontology to Represent Energy-Related Occupant Behavior in Buildings. Part II: Implementation of the DNAS framework using an XML schema." Building and Environment 94, no. 1 (2015): 196-205.
"An Ontology to Represent Energy-related Occupant Behavior in Buildings Part I: Introduction to the DNAs Framework." Building and Environment 92 (2015): 764-777.
"A Fresh Look at Weather Impact on Peak Electricity Demand and Energy Use of Buildings Using 30-Year Actual Weather Data." Applied Energy 111 (2013): 333-350.
"Modeling China's Building Floor-Area Growth and the Implications for Building Materials and Energy Demand." In 2014 ACEEE Summer Study on Energy Efficiency in Buildings. Pacific Grove, CA: The American Council for an Energy-Efficient Economy, 2014.
"Assessment of China's Renewable Energy Contribution During the 12th Five Year Plan." Energy Policy 62 (2013): 1533-1543.
"Building stock dynamics and its impacts on materials and energy demand in China." Energy Policy 94 (2016): 47-55.
" Data and Analytics to Inform Energy Retrofit of High Performance Buildings." Applied Energy 126 (2014): 90-106.
"Building Performance Simulation., 2013.
Updates to the China Design Standard for Energy Efficiency in Public Buildings." Energy Policy 87 (2015): 187-198.
"Occupant Behavior: Impact on Energy Use of Private Offices." In ASim 2012 - 1st Asia Conference of International Building Performance Simulation Association. Shanghai, China, 2013.
"Building Energy Benchmarking between the United States and China: Methods and Challenges In 8th International Symposium on Heating, Ventilation and Air Conditioning, Edited by A. Li, Y. Zhu and Y. Li. Vol. Lecture Notes in Electrical Engineering, Vol 263. Springer, Berlin, Heidelberg, 2014.