Pei Liu

Affiliations: 
2010 Imperial College London, London, England, United Kingdom 
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Jia C, Yan P, Liu P, et al. (2021) Energy industrial water withdrawal under different energy development scenarios: A multi-regional approach and a case study of China Renewable & Sustainable Energy Reviews. 135: 110224
Li T, Liu P, Li Z. (2020) Quantitative relationship between low-carbon pathways and system transition costs based on a multi-period and multi-regional energy infrastructure planning approach: A case study of China Renewable & Sustainable Energy Reviews. 134: 110159
Chen S, Liu P, Li Z. (2020) Low carbon transition pathway of power sector with high penetration of renewable energy Renewable & Sustainable Energy Reviews. 130: 109985
Li J, Liu P, Li Z. (2020) Optimal design and techno-economic analysis of a solar-wind-biomass off-grid hybrid power system for remote rural electrification: A case study of west China Energy. 208: 118387
Li T, Liu P, Li Z. (2020) A multi-period and multi-regional modeling and optimization approach to energy infrastructure planning at a transient stage: A case study of China Computers & Chemical Engineering. 133: 106673
Jia C, Yan P, Liu P, et al. (2019) Multi-Regional Energy Industrial Water Withdrawal Research under Different Energy Development Scenarios: A Case Study of China Chemical Engineering Transactions. 76: 1123-1128
Chen S, Liu P, Li Z. (2019) Low Carbon Transition Pathway of Power Sector with High Penetration of Renewable Energy Chemical Engineering Transactions. 76: 1105-1110
Li T, Liu P, Li Z. (2019) How to Deal with Existing Coal Production Capacity on a Low-Carbon Transition Pathway? A Case Study of China Chemical Engineering Transactions. 76: 1093-1098
Li J, Liu P, Li Z. (2019) Modelling and Optimization of Hybrid Distributed Energy Systems for Remote Area Electrification: A Case Study in West China Chemical Engineering Transactions. 76: 1087-1092
Jin H, Li J, Liu P, et al. (2019) Rate-Based Modelling and Validation of an Absorber and Stripper in an Amine-Based Post-Combustion CO 2 Capture Process Chemical Engineering Transactions. 76: 811-816
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