[1] |
YAO Zhehao, ZHENG Puyan, YUAN Yanzhou.
Operation optimization of dual-source distributed energy supply systems based on two-level strategy
[J]. Integrated Intelligent Energy, 2022, 44(1): 56-62.
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[2] |
XIONG Yaxuan, YAO Chenhua, SONG Chaoyu, WANG Huixiang, HU Ziliang, DING Yulong.
Preparation and properties of low-cost phase-change heat storage materials based on semi-coke ash
[J]. Huadian Technology, 2021, 43(7): 62-67.
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[3] |
ZHAO Guotao, QIAN Guoming, WANG Sheng.
Analysis on green and low-carbon development path for power industry to realize carbon peak and carbon neutrality
[J]. Huadian Technology, 2021, 43(6): 11-20.
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[4] |
YU Xiaobao, ZHENG Dandan, YANG Kang, KONG Jie, ZHANG Tianhao.
Opportunities and challenges faced by energy and power industry with the goal of carbon neutrality and carbon peak
[J]. Huadian Technology, 2021, 43(6): 21-32.
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[5] |
WU Tong, ZHANG Xingyu, CHENG Xingxing, SUN Rongfeng, WANG Zhiqiang, GENG Wenguang, WANG Luyuan, FENG Tai.
Analysis and prediction of industrial carbon emission of Linyi City based on STIRPAT model
[J]. Huadian Technology, 2021, 43(6): 47-54.
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[6] |
HU Xiaofu, WANG Kailiang, SHEN Jianyong, BAI Yongfeng.
Research progress of CO2 resource utilization based on biological carbon sequestration technology
[J]. Huadian Technology, 2021, 43(6): 79-85.
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[7] |
WANG Cheng, CUI Weiping, GAO Hongda, HE Peng, LIU Rui, LIU Jianye, CHEN Guang, LI Xinda.
Application of blockchain technology in energy digital economy
[J]. Huadian Technology, 2021, 43(5): 23-29.
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[8] |
ZHANG Junfeng, XU Wenjuan, WANG Yueqi, YIN Yan, XIE Hui, LIANG Xingyu, ZHAO Jun.
Investigation and analysis on carbon emission status in China on the path to carbon neutrality
[J]. Huadian Technology, 2021, 43(10): 1-10.
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[9] |
YAN Jing, GAO Tianlu, ZHANG Jun, WANG Xu.
Application and prospect of edge-cloud-chain collaboration technologies for energy internet data management
[J]. Huadian Technology, 2020, 42(8): 41-47.
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[10] |
YAN Yonghong, CHEN Dengke, SUN Liutao, PENG Zhengkang, SUN Rui.
Experimental investigation on the influence of particle diameter on co-combustion characteristics of pyrolyzed semi-coke and bituminous coal
[J]. Huadian Technology, 2020, 42(7): 1-10.
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[11] |
SUN Liutao, YAN Yonghong, CHEN Dengke, PENG Zhengkang, SUN Rui.
Effect of different blunt body extensive angles on semi-coke/bituminous coal co-combustion and NOx emission
[J]. Huadian Technology, 2020, 42(7): 20-27.
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[12] |
DAI Ruowei, ZHAO Ruidong, QIN Jianguang, CHEN Tianju, WU Jinhu.
Study on co-combustion and gaseous pollutants emission characteristics of pyrolysis semi-coke and lignite by TG-FTIR
[J]. Huadian Technology, 2020, 42(7): 28-34.
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[13] |
WANG Zhichao1,WANG Yingyan2,LI Yanjun3,TAN Kai3,JIANG Hua4,ZHAO Xiaopeng3,FENG Ping′an2,YAO Wei1*.
Combustion characteristics of semi-coke and its large-proportion co-combustion experimental research in a 660 MW unit
[J]. Huadian Technology, 2020, 42(7): 35-41.
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[14] |
ZHENG Shaowei,WANG Zhiqiang*,WANG Peng,CHENG Xingxing,XU Huanhuan.
Current status and progress of the clean and efficient utilization of pyrolysis semi-coke
[J]. Huadian Technology, 2020, 42(7): 42-49.
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[15] |
GAO Yong,TIAN Xin,WU Yinchen.
Evaluation of prefilter improvement effect of gas turbine air intake filtration system
[J]. Huadian Technology, 2020, 42(6): 57-61.
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