[1] |
Jiahai YUAN, Yuelin HU, Jian ZHANG.
The Carbon Emission Efficiency of China’s Listed Thermal Power Companies: An Improved Three-Stage Slack Based Measure-Data Envelopment Analysis Model
[J]. Power Generation Technology, 2024, 45(3): 458-467.
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[2] |
Siqi GONG, Zaipeng YUN, Ming XU, Le AO, Chufu LI, Kai HUANG, Chen SUN.
Numerical Simulation of Solid Oxide Fuel Cell Tail Gas Catalytic Combustion Based on Three-Way Catalyst
[J]. Power Generation Technology, 2024, 45(2): 331-340.
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[3] |
Yanbing LI, Shuwang JIA, Junliang ZHANG, Yue FU, Ming LIU, Junjie YAN.
Exergy Economic Analysis of Ultra-Supercritical Coal-Fired Power Plants With High-Level Layout of Turbine Under Load-Cycling Conditions
[J]. Power Generation Technology, 2024, 45(1): 69-78.
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[4] |
Siqin CHEN, Yinan ZHU, Xiaochen LI, Xuehai WANG.
Research on Optimization Method of Coal Blending for Carbon Emission Reduction Based on Bi-level Programming
[J]. Power Generation Technology, 2023, 44(2): 155-162.
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[5] |
Xuebo GUO, Liangchi FAN, Zhenjing XU, You LI, Jun LIN, Lin CHEN.
Research and Application Progress of Phase Change Thermal Energy Storage Materials for Energy Saving and Carbon Reduction
[J]. Power Generation Technology, 2023, 44(2): 201-212.
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[6] |
Jingji ZHU, Yishu XU, Jingying XU, Huakun WANG, Xiaowei LIU, Dunxi YU, Jingjing MA, Minghou XU.
Effect of Co-firing Ammonia on Coal Volatile Flame Characteristics and Particulate Matter Formation Behaviours
[J]. Power Generation Technology, 2022, 43(6): 908-917.
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[7] |
Rui DONG, Lin GAO, Song HE, Dongtai YANG.
Significance and Challenges of CCUS Technology for Low-carbon Transformation of China’s Power Industry
[J]. Power Generation Technology, 2022, 43(4): 523-532.
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[8] |
Weizhong FENG, Li LI.
Research and Practice on Development Path of Low-carbon, Zero-carbon and Negative Carbon Transformation of Coal-fired Power Units Under “Double Carbon” Targets
[J]. Power Generation Technology, 2022, 43(3): 452-461.
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[9] |
Qingping RAO, Jiangang HAO, Yunshan BAI.
Analysis on the Development Path of Natural Gas Power Generation in China Under the Background of Carbon Emission Target
[J]. Power Generation Technology, 2022, 43(3): 468-475.
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[10] |
Zhiming WANG, Xinquan PAN, Weinan HE, Yikun TAN, Yuanbin ZHAO.
Calculation of Evaporative Cooling Air Parameters and Relevant Applications in Wet Evaporative Cooing Tower Water and Energy Saving
[J]. Power Generation Technology, 2021, 42(5): 604-613.
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[11] |
Lanhua LIU, Ruilin WANG, Hui HONG.
Design of Calcium-based Carbon Capture System for Gas-Steam Combined Cycle Assisted by Solar Thermal Tower
[J]. Power Generation Technology, 2021, 42(4): 517-524.
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[12] |
Xuedong WANG, Mingchao JIANG, Ang SONG.
Performance Evaluation Test of Low-Pressure Economizer and Corrected Calculation Method of Energy Saving Effect
[J]. Power Generation Technology, 2021, 42(2): 280-287.
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[13] |
Shuang WU, Xu JIN, Zhongyan LIU, Deyong CHE, Jun SUI, Rui LI, Yue ZHAO, Zhaoguo WANG.
Waste Heat Recovery Applications in District Heating/Cooling Systems
[J]. Power Generation Technology, 2020, 41(6): 578-589.
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[14] |
Jiang FAN,Shuangping ZHANG,Yu MENG,Weixiong CHEN,Junjie YAN.
Characteristics of NOx Formation and Removal in the Transient Process of a 660 MW Coal-fired Power Unit
[J]. Power Generation Technology, 2020, 41(5): 527-535.
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[15] |
Taixiu LIU,Qibin LIU,Jun SUI,Tieyin ZHANG.
Thermodynamic Performance and Carbon Emission Analysis of Distributed Energy Supply System Based on Solar Thermochemistry
[J]. Power Generation Technology, 2020, 41(3): 212-219.
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