1.Li Moshan, Lu Yiyu,Hu Erfeng*, et al. Fast co-pyrolysis characteristics of high-alkali coal and polyethylene using infrared rapid heating[J]. Energy, 2023: 126635. 2.Li Chenhao, Liu zuohua, Yu Jianglong,Hu Erfeng* et al. Cross-interaction of volatiles in fast co-pyrolysis of waste tyre and corn stover via TG-FTIR and rapid infrared heating techniques[J]. Waste Management, 2023, 171: 421-432. 3.Li Chenhao, Liu zuohua, Yu Jianglong,Hu Erfeng* et al. Infrared heating and synergistic effects during fast co-pyrolysis of corn stover and high alkali coal[J]. Process Safety and Environmental Protection, 2023, 179: 812-821. 4.Dai Chongyang,Hu Erfeng*, Yang Yang, et al. Fast co-pyrolysis behaviors and synergistic effects of corn stover and polyethylene via rapid infrared heating[J]. Waste Management, 2023, 169: 147-156. 5.Li Moshan,Hu Erfeng*, Tian Yishui, et al. Fast pyrolysis characteristics and its mechanism of corn stover over iron oxide via quick infrared heating[J]. Waste Management, 2022, 149: 60-69. 6.Dai Chongyang,Hu Erfeng*, Tian Yishui, et al. Infrared heated co-pyrolysis behavior of polyethylene and corn stover via optimization of secondary reactions[J]. Journal of Analytical and Applied Pyrolysis, 2022: 105565. 7.Hu Erfeng*, Tian Yishui, Yang Yang,et al. Pyrolysis behaviors of corn stover in new two-stage rotary kiln with baffle[J]. Journal of Analytical and Applied Pyrolysis, 2022, 161: 105398. 8.Hu Erfeng*, Moshan Li, Yishui Tian,et al. Pyrolysis behaviors of anaerobic digestion residues in a fixed-bed reactor with rapid infrared heating [J]. Environmental Science and Pollution Research, 2022:1-12. 9.Hu Erfeng*, Dai Chongyang, Tian Yishui, et al. Infrared heated pyrolysis of corn stover: Determination of kinetic and thermodynamic parameters[J]. Journal of Analytical and Applied Pyrolysis, 2021: 105273. 10.Xu Shipei,Hu Erfeng*, Li Xingchun*, Xu Yu. Quantitative Analysis of Pore Structure and Its Impact on Methane Adsorption Capacity of Coal[J]. Natural Resources Research, 2021, 30(1): 605-620. 11.Hu Erfeng, Kyle Rogers, Fu Xiaoheng*, et al. Coal pyrolysis and its mechanism in indirectly heated fixed-bed with metallic heating plate enhancement[J]. Fuel, 2016, 185: 656-662. 12.Hu Erfeng, Zeng Xi*, Ma Dachao, et al. Characterization of coal pyrolysis in indirectly heated fixed bed based on field effects[J]. Fuel, 2017, 200: 186-192. 13.Hu Erfeng, Zeng Xi*, Ma Dachao, et al. Effect of the moisture content in coal on the pyrolysis behavior in an indirectly heated fixed-bed reactor with internals[J]. Energy & Fuels, 2017, 31(2): 1347-1354. 14.Hu Erfeng, Zeng Xi*, Wang Fang, et al. Effects of Metallic Heating Plates on Coal Pyrolysis Behavior in a Fixed-Bed Reactor Enhanced with Internals[J]. Energy & Fuels, 2017, 31(3): 2716-2721. 15.Hu Eefeng, Yao Zonglu, Zhao Lixin*,et al. Characteristics of zeolite-modified NiMo/Al2O3catalysts and their hydrotreating performance for light cycled oil[J]. The Canadian Journal of Chemical Engineering, 2019, 97(5): 1107-1113. 16.Zhang Chun, Wu Rongcheng,HuErfeng, Liu Shuyuan, Xu Guangwen*. Coal Pyrolysis for High-Quality Tar and Gas in 100 kg Fixed Bed Enhanced with Internals[J]. Energy & Fuels, 2014, 28 (11):7294-7302. 17.胡二峰,武荣成,张纯,郭二卫,付晓恒,许光文*.间热径向流反应器料层厚度对煤热解特性的影响[J].化工学报,2015,66(02):738-745. 18.胡二峰,张纯,武荣成,付晓恒,许光文*.内构件固定床反应器中不同水分煤的热解特性[J].化工学报,2015,66(07):2656-2663. 19.李晨浩,田宜水,胡二峰*,等.厌氧消化残渣与低阶长焰煤共热解特性[J].农业工程学报,2022,38(23):188-194. 20.戴重阳,田宜水,胡二峰*,等.生物质与低阶煤共热解特性研究及其技术进展[J].太阳能学报, 2021,42(12):318-325. 21.李沫杉,田宜水,胡二峰*,等.沼渣热解动力学、热力学分析及热解产物特性研究[J].太阳能学报, 2022, 43(6):225-233. 22.胡二峰,赵立欣*,等.石英管定向强化流场模拟内构件反应器不同厚度煤热解特性[J].煤炭学报,2018,43(12):3504-3509. 23.胡二峰,赵立欣*,等.生物质热解影响因素及技术研究进展[J].农业工程学报,2018,34(14):212-220. 24.胡二峰,赵立欣*,等.热解温度对回转窑玉米秸秆热解产物理化特性的影响[J].农业工程学报,2019,35(11):233-238. |