横向课题
[1]****生物质掺烧性能试验及成果评价服务合同,2026.2-2026.5, 29.9万

戴高峰
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横向课题
[1]****生物质掺烧性能试验及成果评价服务合同,2026.2-2026.5, 29.9万
2026年
[1] Jing Pu, Xin Su, Xiaopan Zhang, Xuecong Liu, Daoyang Ma, Zhongfa Hu, Gaofeng Dai*, Xuebin Wang*. Comparative study on the high-temperature corrosion of boiler steels 12Cr1MoV and HR3C under NaCl-Na2SO4 deposits [J].Fuel, 2026, 421.
[2] Yiping Wang, Shangkun Zhou, Liangye Zhang, Liyan Chen, Yili Zhang, Xin Su, Meng Zhang, Hongyu Zan, Gaofeng Dai*, Xuebin Wang*. Effect of sulfur-containing species on ammonia oxidation in a jet-stirred reactor: An experimental and kinetic modeling study[J]. Journal of the Energy Institute, 2026;128:102631
2025年
[1] Dai G, et al. Combustibility analysis of high-carbon fine slags from an entrained flow gasifier. Journal of Environmental Management 2020;271:111009.
[2] Dai G, et al. Catalytic function of ferric oxide and effect of water on the formation of sulfur trioxide. Journal of Environmental Management2020;264:110499.
[3] Dai G, et al. Experimental and kinetic study of N2O thermal decomposition in pressurized oxy-combustion. Fuel 2023;346:128323.
[4] Dai G, et al. Calcination and desulfurization characteristics of calcium carbonate in pressurized oxy-combustion. Energy 2022;261:125150.
[5] Dai G, et al. Experimental and density functional study of sulfur trioxide formation catalyzed by hematite in pressure oxy-combustion. Fuel 2022;323:124433.
[6] Dai G, et al. Multi-pollutant formation and control in pressurized oxy-combustion: SOx, NOx, particulate matter and mercury. Engineering2024;39:127-153
[7] Dai G, Lin H, Zhang J, Ahmad B, et al.Nitrogen transformation during pressurized oxy-biomass combustion process.Combustion and Flame2024;265:113495.
[8] Dai G, et al. Nitrogen migration of biomass nitrogen-containing model compound (2,5-Diketopiperazine) during pressurized pyrolysis/gasification: effect of pressure and atmosphere. Fuel 2024;376:132689.
[9] Dai G, et al. Effect of Pressure on Soot Formation During Biomass Pyrolysis in a Pressurized Fixed Bed Reactor. Combustion Science and Technology 2024: 2390695.
[10] Wang X*, Dai G,et al. A kinetic evaluation on NO2 formation in the post-flame region of pressurized oxy-combustion process. Thermal Science 2021:225059996.
[11] 戴高峰,等. 生物质加压热解碳烟生成特性研究[J]. 洁净煤技术,2024:1-8.
[12] 王学斌*,戴高峰,等. 加压富氧燃烧模式下SOx/NOx强耦合促进SO3形成的机理研究[J]. 工程热物理学报, 2020,41(1):223-228.
[13] 杜杰,戴高峰,等. 气化细渣基础燃烧特性试验研究[J]. 洁净煤技术, 2019,25(2):83-88.
[14] 史兆臣,戴高峰,等. 煤气化细渣的资源化综合利用技术研究进展[J]. 华电技术, 2020,42(7):63-73.
[15] 王永兵,戴高峰,等.α-Fe2O3表面SO2吸附及SO3催化生成的密度泛函分析[J]. 洁净煤技术, 2020,26(6):203-209.