2024
[1] Feixiang Zhong, Qingzhao Li*, Xiong Ding, et al. Experimental and chemical kinetics analysis on the combustion behaviors and flame instabilities of diluted methane/air mixtures. International Journal of Heat and Mass Transfer 232 (2024) 125957. (WOS:001274323700001)
[2] Xinxin Liu, Qingzhao Li*, Yuanyuan Zhang, et al. Synthesis of micro-mesoporous hierarchical structure of coal-based activated carbon and its effect on methane adsorption. Fuel 365 (2024) 131239. (WOS:001199381700001)
[3] Feixiang Zhong, Qingzhao Li*, Baotong Li, et al. Chemical mechanism analysis on flame propagation properties of methane/air deflagration mix-diluted by CO2+N2. Fuel 361 (2024) 130710. (WOS:001148741500001)
2023
[4] Baotong Li, Qingzhao Li*, Guiyun Zhang, et al. Numerical Simulations on Combustion and Heat Transfer in Porous Medium with Different Gyroid Triply Periodic Minimal Surfaces Structures. Combustion Science and Technology, https://doi.org/10.1080/00102202.2023.2284273 (WOS:001108108100001)
[5] Baotong Li, Qingzhao Li*, Guiyun Zhang, et al. Pore-scale Numerical Simulations on the Lean Concentration Methane Combustion in Porous Medium with Gyroid Triply Periodic Minimal Surfaces Structures. Combustion Science and Technology, https://doi.org/10.1080/00102202.2023.2194020. (WOS:000951768600001)
[6] Pengfei Zhu, Qingzhao Li*, Xiaowen Li, Guiyun Zhang, Yachao Zhang, Yuannan Zheng. Investigation on the potential hazard zone of gas explosion in the goaf under longwall top caving coal mining condition. Combustion Science and Technology, 2023,195 (11): 2570-2589. (WOS:000742236900001)
[7] Yuannan Zheng, Qingzhao Li*, Pengfei Zhu, et al. Study on Multi-field Evolution and Influencing Factors of Coal Spontaneous Combustion in Goaf. Combustion Science and Technology, 2023, 195(2): 247-264. (WOS:000668774800001)
[8] Guiyun Zhang, Qingzhao Li*, Xinxin Liu, et al. Experimental study of combustion characteristics of lean LPG/air mixture in Porous Media Burner. Combustion Science and Technology, 2023, 195(9): 2053-2069. (WOS:000723548900001)
[9] Xiaowen Li, Qingzhao Li*, Guiyun Zhang, et al. Effects of Void Scale of Coal Accumulation on Methane-Air Flame Propagation and Overpressure Dynamics. Combustion Science and Technology, 2023, 195(6): 1202-1220. (WOS:000707911000001)
[10] Guiyun Zhang, Qingzhao Li*, Xinxin Liu, Baiquan Lin, Xiaowen Li. Effects of Key Influencing Factors on the Flame Inclination of Low Concentration Methane (LCM) Combustion in Porous Burner. Combustion Science and Technology, 2023, 195(16): 4032-4052. (WOS:000771808900001)
2022
[11] Guiyun Zhang, Qingzhao Li*, Xinxin Liu, Baiquan Lin, Xiaowen Li. Numerical investigations on an improved dual-channel porous combustor fueled with lean methane for enhancing thermal performance. Fuel 309 (2022) 122228. (WOS:000710894200002)
[12] Guiyun Zhang, Qingzhao Li*, Xinxin Liu, et al. Investigations on the mitigation of ventilation air methane and energy recovery in site trial thermal flow-reversal reactor. Chemical Engineering & Processing: Process Intensification 170 (2022) 108703. (WOS:000725011400006)
[13] Xinxin Liu, Qingzhao Li*, Guiyun Zhang, et al. Preparation of activated carbon from Guhanshan coal and its effect on methane adsorption thermodynamics at different temperatures. Powder Technology 395 (2022) 424-442. (WOS:000709710900009)
[14] Xinxin Liu, Qingzhao Li*, Guiyun Zhang, et al. Characterization of activated carbon precursors prepared by dry-air oxidant and its effects on the adsorptions of activated carbons. Fuel 318 (2022) 123723. (WOS:000783129200004)
[15] Guiyun Zhang, Qingzhao Li*, Xinxin Liu, Baiquan Lin, Xiaowen Li. Numerical investigation on lean methane combustion with modified effective thermal conductivity of the porous media. Combustion Theory and Modelling, 2022, 26(2): 365-382. (WOS:000734835500001)
2021
[16] 林柏泉, 李庆钊. 著.《煤矿瓦斯开发与阶梯利用》,科学出版社,2021.
[17] 李庆钊*, 张桂韵, 刘鑫鑫, 朱鹏飞, 郑苑楠. 煤矿超低浓度瓦斯蓄热燃烧特性及其关键影响因素分析[J]. 中国电机工程学报, 2021, 41(23): 8078-8087.
[18] 李晓文, 马旭, 朱鹏飞, 刘鑫鑫, 李庆钊*. 煤体理化结构特征及其对瓦斯吸附热力学的影响[J]. 煤矿安全, 2021, 52(3): 1-8.
[19] Yuannan Zheng, Qingzhao Li*, Guiyun Zhang, et al. Study on the coupling evolution of air and temperature field in coal mine goafs based on the similarity simulation experiments. Fuel 283 (2021) 118905. (WOS:000584919700122)
[20] Yuannan Zheng, Qingzhao Li*, Guiyun Zhang, et al. Evaluation of separation effect for CH4 enrichment from coalbed methane (CBM) under the synergistic action of temperature and pressure based on IAST theory. Greenhouse Gases-Science and Technology, 2021, 11(3): 590-605. (WOS:000636777800001)
[21] Yang Zhao, Baiquan Lin, Ting Liu, Yuannan Zheng, Yong Sun, Guiyun Zhang, Qingzhao Li*. Multifractal analysis of coal pore structure based on NMR experiment: A new method for predicting T2 cutoff value. Fuel 283 (2021) 119338. (WOS:000584919700134)
[22] 林柏泉, 李庆钊. 著.《煤矿瓦斯开发与阶梯利用》,科学出版社,2021.
[23] 林柏泉, 李庆钊*, 周延. 煤矿采空区瓦斯与煤自燃复合热动力灾害多场演化研究进展[J]. 煤炭学报, 2021, 46(6): 1715-1726.
[24] 李庆钊*, 张桂韵, 刘鑫鑫, 朱鹏飞, 郑苑楠. 煤矿超低浓度瓦斯蓄热燃烧特性及其关键影响因素分析[J]. 中国电机工程学报. 2021, 41(23): 8078-8087.
[25] 李晓文, 马旭, 朱鹏飞, 刘鑫鑫, 李庆钊*. 煤体理化结构特征及其对瓦斯吸附热力学的影响[J]. 煤矿安全, 2021, 52(3): 1-8.
[26] Yuannan Zheng, Qingzhao Li*, Guiyun Zhang, et al. Evaluation of separation effect for CH4 enrichment from coalbed methane (CBM) under the synergistic action of temperature and pressure based on IAST theory. Greenhouse Gases-Science and Technology, 2021, 11(3): 590-605. (WOS:000636777800001)
[27] 朱建云, 李庆钊, 裴晓东. 安全科学与工程教学实验室建设与安全管理[J]. 实验室研究与探索, 2021, 40(1): 288-292.
2020
[28] Yang Zhao, Baiquan Lin, Ting Liu, Yuannan Zheng, Jia Kong, Qingzhao Li, Haoran Song. Mechanism of multifield coupling-induced outburst in mining-disturbed coal seam. Fuel 272 (2020) 117716. (WOS:000524118200029)
[29] Yuannan Zheng, Qingzhao Li*, Guiyun Zhang, et al. Effect of multi-component gases competitive dsorption on coal spontaneous combustion characteristics under goaf conditions. Fuel Processing Technology 208 (2020) 106510. (WOS:000558698800013)
[30] Yuannan Zheng, QingzhaoLi*, Baiquan Lin, et al. Real-time analysis of the changing trends of functional groups and corresponding gas generated law during coal spontaneous combustion. Fuel Processing Technology, 199(2020), 106237. (WOS:000513295200003)
[31] 李庆钊, 朱建云. 双一流背景下安全工程《燃烧学》实验与理论融合式教学探索与实践[J]. 高教学刊, 2020, 10: 25-29.
2019
[32] Qingzhao Li*, Chuangchuang Yuan, Guiyun Zhang, et al. Effects of doping Mg2+ on the pore structure of MIL-101 and its adsorption selectivity for CH4/N2 gas mixtures. Fuel 240 (2019) 206-218. (WOS: 000453768500021)
[33] Yuannan Zheng, Qingzhao Li*, Chuangchuang Yuan, et al. Influence of temperature on adsorption selectivity: Coal-based activated carbon for CH4 enrichment from coal mine methane. Powder Technology 347 (2019) 42-49. (WOS: 000464299900006)
[34] Qingzhao Li*, Guiyun Zhang, Yuannan Zheng, et al. Investigation on the correlations between thermal behaviors and explosion severity of aluminum dust/air mixtures. Powder Technology 355 (2019) 582-592. (WOS: 000499760600058)
[35] Yang Zhao, Baiquan Lin, Ting Liu, Yuannan Zheng, Jia Kong, Qingzhao Li, Haoran Song. Flow field evolution during gas depletion considering creep deformation. Journal of Natural Gas Science and Engineering, 2019, 65, 45-55. (WOS:000463605200005)
2018
[36] Qingzhao Li*, Chuangchuang Yuan, Qinglin Tao, et al. Experimental analysis on post-explosion residues for evaluating coal dust explosion severity and flame propagation behaviors. Fuel 215 (2018) 417-428. (WOS: 000425863300044)
[37] Qingzhao Li*, Qinglin Tao, Chuangchuang Yuan, et al. Investigation on the structure evolution of pre and post explosion of coal dust using X-ray diffraction. International Journal of Heat and Mass Transfer 120 (2018) 1162-1172. (WOS: 000424716500098)
[38] Yuannan Zheng, Qingzhao Li*, Chuangchuang Yuan, et al. Thermodynamic analysis of high-pressure methane adsorption on coal-based activated carbon. Fuel 230 (2018) 172-184. (WOS: 000434016900020)
[39] Yuannan Zheng, Qingzhao Li*, et al. Chemical structure of coal surface and its effects on methane adsorption under different temperature conditions. Adsorption (2018) 24:613-628. (WOS:000446579300003)
[40] Desheng Yuan, Yuannan Zheng, Qingzhao Li*, et al. Effects of pore structure of prepared coal-based activated carbons on CH4 enrichment from low concentration gas by IAST method. Powder Technology 333 (2018) 377-384. (WOS: 000433655400037)
[41] Yang Zhao, Baiquan Lin, Ting Liu, Qingzhao Li, Jia Kong. Gas flow field evolution around hydraulic slotted borehole in anisotropic coal. Journal of Natural Gas Science and Engineering, 2018, 58, 189-200. (WOS:000444521900015)
[42] 朱建云, 裴晓东, 何书建, 陈树亮, 李庆钊. 安全工程专业研究式实验教学方法探索与实践[J]. 实验室研究与探索, 2018, 37(5): 172-176.
2017
[43] 李庆钊*,王可,梅晓凝,等. 微米级铝粉的爆炸特性及其反应机理研究,工程热物理学报,2017 , 5 (01):219-225.
[44] Qingzhao Li*, Maliang Ruan, Yuannan Zheng, et al. Investigation on the selective adsorption and separation properties of coal mine methane in ZIF-68 by molecular simulations. Journal of the International Adsorption Society, 23 (2017) 163-174. (WOS: 000392284400017)
2016
[45] Qingzhao Li*, Maliang Ruan, Molecular simulation study of metal organic frameworks for methane capture from low-concentration coal mine methane gas. Journal of Porous Materials, 2016, 23(1) 107-122. (WOS: 000371298500011)
[46] Qingzhao Li*, Ke Wang, Yuannan Zheng, et al. Experimental research of particle size and size dispersity on the explosibility characteristics of coal dust. Powder Technology 292 (2016) 290-297. (WOS: 000372675700032)
[47] Qingzhao Li*, Ke Wang, Yuannan Zheng, et al. Explosion severity of micro-sized aluminum dust and its flame propagation properties in 20 L spherical vessel. Powder Technology 301 (2016) 1299-1308. (WOS: 000384785300141)
[48] 林柏泉, 梅晓凝, 王可, 李庆钊. 基于20L球形爆炸装置的微米级铝粉爆炸特性实验[J]. 北京理工大学学报, 2016, 36(7): 661-667.
[49] 李庆钊, 李增华, 林柏泉, 朱国庆, 朱建云. 安全工程专业《燃烧学》“寓创于学”研学新模式探索[J]. 高教学刊, 2016, 24: 69-74.
2015
[50] Qingzhao Li*, Baiquan Lin, Demonstration and its validation for ventilation air methane (VAM) thermal oxidation and energy recovery project. Applied Thermal Engineering, 90 (2015) 75-85. (WOS: 000364246500008)
[51] Qingzhao Li*, Baiquan Lin, Ke Wang, Mingzhe Zhao, Maliang Ruan. Surface properties of pulverized coal and its effects on coal mine methane adsorption behaviors under ambient conditions. Powder Technology, 2015, 270: 278-286. (WOS: 000347579300030)
[52] Huaming Dai, Baiquan Lin, Cheng Zhai, Yidu Hong, Qingzhao Li. Subadiabatic combustion of premixed gas in ceramic foam burner. International Journal of Heat and Mass Transfer, 2015, 91, 318-329. (WOS:000362130700034)
[53] Huaming Dai, Baiquan Lin, Kaige Ji, Chaoqun Wang, Qingzhao Li, Yuanzhen Zheng, Ke Wang. Combustion characteristics of low-concentration coal mine methane in ceramic foam burner with embedded alumina pellets. Applied Thermal Engineering, 2015, 90, 489-498. (WOS:000364246500052)
[54] 林柏泉, 李庆钊*, 原德胜, 等. 彬长矿区低煤阶煤层气井的排采特征与井型优化[J]. 煤炭学报, 2015, 40(1): 135-141.
2014
[55] 林柏泉, 李庆钊, 原德胜, 等. 矿区瓦斯近零排放分布式能源系统的构建与实践[J]. 煤炭科学技术, 2014, 42(6): 45-48.
[56] 王超群, 林柏泉, 李庆钊, 等. 煤尘表面含氧官能团对煤尘润湿性能的影响[J]. 煤矿安全, 2014, 45(5): 173-176.
2013
[57] Qingzhao Li*, Baiquan Lin, Shuai Zhao, Huaming Dai. Surface physical properties and its effects on the wetting behaviors of respirable coal mine dust. Powder Technology, 2013, 223(1): 137-145. (WOS: 000311134200017)
[58] 代华明, 林柏泉, 李庆钊, 等. 水汽对多孔介质中低浓度瓦斯燃烧特性的影响[J]. 北京科技大学学报, 2013, 35(10): 1375-1381.
2012
[59] Qingzhao Li*, Baiquan Lin.Huaming Dai, Shuai Zhao. Explosion characteristics of H2/CH4/air and CH4/coal dust/air mixtures. Powder Technology, 2012, 229(10): 222-228. (WOS: 000308054600030)
[60] Qingzhao Li*, Baiquan Lin. Investigation on the Interactions of Gas Explosion Flame and Reflected Pressure Waves in Closed Pipes. Combustion Science and Technology, 2012, 184(12): 2154-2162. (WOS: 000311689000012)
2011
[61] Qingzhao Li*, Baiquan Lin, Wenxia Li, Cheng Zhai, Chuanjie Zhu. Explosion characteristics of Nano-aluminum powder-air mixtures in 20L spherical vessels. Powder Technology, 2011, 212(2): 303-309. (WOS: 000288801300008)
[62] 李庆钊*, 林柏泉, 张军凯, 等. 矿井煤尘的分形特征及对其表面润湿性能的影响[J]. 煤炭学报, 2012, 37(S1): 138-142.
[63] 李庆钊*, 翟成, 吴海进, 林柏泉, 等. 基于 20 L 球形爆炸装置的煤尘爆炸特性研究[J]. 煤炭学报, 2011, 36(S1): 119-124.
2010
[64] Qingzhao Li*, Changsui Zhao, Baiquan Lin, et al. Properties of Char Particles Obtained under O2/N2 and O2/CO2 Combustion Environments.Chemical Engineering and Processing, 2010, 49(5): 449-459. (WOS: 000279215300001)
[65] Qingzhao Li*, Changsui Zhao, Xiaoping Chen, et al. Comparison of Pulverized Coal Combustion in Air and in O2/CO2 Mixtures by Thermo-Gravimetric Analysis.Journal of Analytical and Applied Pyrolysis, 2009, 85(1-2): 521-528. (WOS: 000266461200072)