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Zhiqiang Liu
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[1]Sheng Yang, Lu Zhang, Nan Xie, Zhaohui Gu, Zhiqiang Liu. Thermodynamic analysis of a semi-lean solution process for energy saving via rectisol wash technology. Energy 226 (2021) 120402.
[2]Zhiqiang Liu, Yifang Tang, Huairong Zhou, Sheng Yang. Life cycle performance of a distributed energy system in comparison with a conventional energy system for district heating and cooling in China. J Clean Prod 288 (2021) 125663.
[3]Qinghe Li, Zhiqiang Liu, Yi Sun, Sheng Yang, Chengwei Deng. A Review on Temperature Control of Proton Exchange Membrane Fuel Cells. Processes 9 (2021) 235.
[4]Longquan Li, Zhiqiang Liu, Chengwei Deng, et al. Conventional and advanced exergy analyses of a vehicular proton exchange membrane fuel cell power system. Energy 222 (2021) 119939.
[5]Nan Xie, Zhiqiang Liu, Zhengyi Luo, Jingzheng Ren, Chengwei Deng, Sheng Yang. Multi-objective optimization and life cycle assessment of an integrated system combining LiBr/H2O absorption chiller and Kalina cycle. Energy Conversion and Management 225 (2020) 113448
[6]Chun Luo , Zhiqiang Liu , Sha Mi & Longquan Li. Quantitative investigation on the effects of ice crystal size on freeze-drying: The primary drying step. DRYING TECHNOLOGY DOI: 10.1080/07373937.2020.1806865
[7]Zhiqiang Liu, Nan Xie, Sheng Yan. Thermodynamic and parametric analysis of a coupled LiBr/H2O absorption chiller/Kalina cycle for cascade utilization of low-grade waste heat. Energy Conversion and Management 205 (2020) 112370.
[8]Guoxuan Li, Peizhe Cui, Yinglong Wang, Zhiqiang Liu, Zhaoyou Zhu, Sheng Yang. Life cycle energy consumption and GHG emissions of biomass-to-hydrogen process in comparison with coal-to-hydrogen process. Energy 191(2020) 116588. https://doi.org/10.1016/ j.energy.2019.116588
[9]Yifang Tang, Zhiqiang Liu, Lan Li. Performance Comparison of a Distributed Energy System under Different Control Strategies with a Conventional Energy System. Energies 2019, 12, 4613; doi:10.3390/en12244613
[10]Yinglong Wang, Guoxuan Li, Zhiqiang Liu, Peizhe Cui , Zhaoyou Zhu,Sheng Yang. Techno-economic analysis of biomass-to-hydrogen process in comparison with coal-to-hydrogen process. Energy 185 (2019) 1063-1075(SCI)
[11]Sheng Yang, Chengwei Deng, Zhiqiang Liu. Optimal design and analysis of a cascade LiBr/H2O absorption refrigeration /transcritical CO2 process for low-grade waste heat recovery. Energy Conversion and Management 192 (2019) 232–242
[12]Peizhe Cui, Mengxiao Yu, Zhiqiang Liu, Zhaoyou Zhu, Sheng Yang. Energy, exergy, and economic (3E) analyses and multi-objective optimization of a cascade absorption refrigeration system for low-grade waste heat recovery. Energy Conversion and Management 184 (2019) 249–261
[13]Z. Luo, S. Yang, N. Xie, W. Xie, J. Liu, Y. Souley Agbodjan, Z. Liu, Multi-objective capacity optimization of a distributed energy system considering economy, environment and energy, ENERG CONVERS MANAGE, 200 (2019) 112081
[14]S. Mi, Z. Liu, C. Luo, L. Cai, Z. Zhang, L. Li, A review on preparing new energy ultrafine powder materials by freeze-drying, (2019)
[15]L. Cai, Z. Liu, S. Mi, C. Luo, K. Ma, A. Xu, S. Yang, Investigation on flow characteristics of ice slurry in horizontal 90° elbow pipe by a CFD-PBM coupled model, ADV POWDER TECHNOL, 30 (2019) 2299-2310
[16]Nan Xie, Chenghua Tan, Sheng Yang, and Zhiqiang Liu. Conceptual Design and Analysis of a Novel CO2 Hydrate-Based Refrigeration System with Cold Energy Storage. ACS Sustainable Chem. Eng. 2019, 7, 1502-1511 (SCI)
[17]Sheng Yang, Yifan Wang, Jun Gao, Zhien Zhang, Zhiqiang Liu, Abdul Ghani Olabi. Performance Analysis of a Novel Cascade Absorption Refrigeration for Low-Grade Waste Heat Recovery. ACS Sustainable Chem. Eng. 6, (2018), 8350-8363(SCI)
[18]Sha Mi, Lingling Cai, Kebo Ma, Zhiqiang Liu. Investigation on flow and heat transfer characteristics of ice slurry without additives in a plate heat exchanger. International Journal of Heat and Mass Transfer 127 (2018) 11–20 (SCI)
[19]Dan Xu, Zhiqiang Liu, Lingling Cai, Yifang Tang, Yunxia Yu, Aixiang Xu. A CFD-PBM approach for modeling ice slurry flow in horizontal pipes. Chemical Engineering Science 176 (2018) 546–559 (SCI)
[20]Hui Zhu, Hanqing Wang, Zhiqiang Liu. Experimental study on the human thermal comfort based on the heart rate variability (HRV) analysis under different environments. Science of the Total Environment (2018) 1124-1133 (SCI)
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