【获奖】 辽宁科技大学2020届优秀博士学位论文;
指导研究生分别获得第六届全国大学生冶金科技竞赛二、三等奖;
【代表性学术著作、论文】
[1] Junchen Huang, Rui Guo, Qi Wang, et al. Coke solution-loss degradation model with non-equimolar diffusion and changing local pore structure[J]. Fuel, 2020, 263: 116694(1-12).
[2] Junchen Huang, Rui Guo, Lin Tao, et al. Mass transfer coefficient and effective internal diffusion coefficient for coke solution loss reaction with non-equimolar diffusion[J]. Fuel, 2020, 278: 118225(1-11).
[3] Junchen Huang, Rui Guo, Lin Tao, et al. Effects of Stefan flow on metallurgical coke gasification with CO2[J]. Energy & Fuels, 2020, 34(3): 2936-2344.
[4] Junchen Huang, Lin Tao, Weibo Tie, et al. Transport Properties of CO2 in Different Reactivity Coke at Solution Loss Reaction Based on Stefan Flow Theory[J]. ACS Omega, 2020, 5(41): 26817-26828.
[5] 黄浚宸, 张松, 汪琦. 气体非等摩尔扩散对焦炭溶损反应的影响[J]. 钢铁, 2022, 57(3):16-26.
[6] Zhexi Li, Weibo Tie, Junchen Huang*, et al. Analysis of the differences in coke thermal properties testing[J]. Fuel, 2023, 354: 129359.
[7] 周璐, 史含放, 黄浚宸*, 等. 基于多种动力学模型的焦炭溶损反应机理解析[J]. 煤质技术, 2023, 38(5): 9-15.
[8] Mingxin Wu, Zhexi Li, Junchen Huang*, et al. Non-isothermal kinetics of coke and iron ore melting reduction with variable activation energy model[J]. Fuel, 2024, 357: 129991.
[9] Mingxin Wu, Hongman He, Junchen Huang*, et al. Advancing carbon-neutral iron production: Non-equimolar diffusion kinetics of coke with H2O in hydrogen-rich blast furnaces[J]. iScience, 2024, 27: 111181.
[10] Mingxin Wu, Jinbo Li, Junchen Huang*, et al. Non-isothermal reduction kinetics of iron ore oxygen carrier by CO with variable activation energy model[J]. Metallurgical and Materials Transactions B, 2024, 56B: 865-880.
[11] Mingxin Wu, Jiayang Li, Junchen Huang*, et al. Variable Activation Energy Models for the Shrinkage and Softening Melting Behavior of Iron Ore in Blast Furnace Conditions[J]. ACS Omega, 2024, 9(44): 44365-44378.
[12] Zhexi Li, Sunny Song, Junchen Huang*, et al. Energy Conservation in Blast Furnace: Analysis on the Replaceability of Coke with Varying Reactivity and Postreaction Strength[J]. ACS Omega, 2024, 9(51): 50260-50268.
[13] Weibo Tie, Junchen Huang*, Qi Wang, et al. Relevance between various phenomena during coking coal carbonization. Part 4: Insight into the interaction of coal blending[J]. Fuel, 2024, 363: 130350.
[14] Weiyu Wang, Mingxin Wu, Junchen Huang*, et al. Thermal analysis of coke-H2O gasification reaction non-isothermal kinetic study[J]. International Journal of Hydrogen Energy, 2025, 139: 237-246.
[15] 李哲熙, 李廷乐, 黄浚宸*, 等. 相近CRI及CSR的同系焦炭不可替换性Qisunny法分析[J]. 煤炭转化, 2025, 48(6): 102-111.
[16] Zhexi Li, Mingxin Wu, Junchen Huang*, et al. A novel insight on coke quality: A new approach and index for evaluating coke thermal properties under simulated blast furnace condition[J]. Journal of Analytical and Applied Pyrolysis, 2026, 194: 107548.
[17] Lin Tao, Junchen Huang, Xitao Yin, et al. Adsorption Kinetics of CO2 on a Reconstructed Calcite Surface: An Experiment-Simulation Collaborative Method[J]. Energy & Fuels, 2019, 33(9): 8946-8953.
[18] Lin Tao, Junchen Huang, Davoud Dastan, et al. CO2 capture and separation on charge-modulated calcite[J]. Applied Surface Science, 2020,530: 147265(1-8).
[19] Jingxue Zheng, Junchen Huang, Lin Tao, et al. A Multifaceted Kinetic Model for the Thermal Decomposition of Calcium Carbonate[J]. Crystals, 2020, 10(9): 849(1-5).
[20] 铁维博, 黄浚宸, 蒋永强, 等. 高炉焦炭不同层面的研究进展[J]. 冶金能源, 2023, 42(6): 20-24(42).
【主要科研项目】
(1)国家自然基金青年项目,焦炭-H2O非等摩尔多组元扩散—孔壁溶蚀劣化机理,2022-2025,30万RMB,主持;
(2)国家自然科学基金重点项目,固体反应过程中双相界面层形成的物理化学,2017-2021,295万RMB,参与;
(3)国家自然科学基金联合项目,基于焦炭综合热性质的炼焦配煤基础理论研究,2014-2018,110万RMB,参与;
(4)辽宁科技大学-鞍钢股份有限公司,低成本配煤炼焦的矿-焦耦合冶金性能试验研究和评价技术,2026-2027,151万RBM,参与;
(5)辽宁科技大学-力拓集团合作项目,Construction and calibration of a new experimental device in ustl & blast furnace burden structure optimisation tests and research,2025-2026,110万USD,参与;
(6)辽宁科技大学-力拓集团合作项目,Blast furnace burden structure optimisation test and research,2024-2025,30万USD,参与;
(7)辽宁科技大学-力拓贸易(上海)有限公司,力拓集团中国北方和南方的混合铁矿粉烧结试验,2023,35.8万RMB,参与;
(8)辽宁科技大学-蒙纳士大学合作项目,澳大利亚块矿应用于高炉炼铁的模型研究,2023-2026,47.9万RMB,参与;
(9)辽宁科技大学-力拓集团合作项目,高块矿高炉炉料高温性能研究(2023-039),2020-2023,86.5万RMB,参与;
(10)辽宁科技大学-力拓集团合作项目,高块矿比(50-65%)高炉炉料的高温性能研究及工业试验,2021-2022,43.5万RMB,参与;
(11)辽宁科技大学-力拓集团合作项目,高炉炉料中高块矿比性能原理,2020,28.7万RMB,参与;
(12)辽宁科技大学-力拓集团合作项目,耦合条件下矿焦综合评价(二),2019,33.7万RMB,参与;
(13)辽宁科技大学-力拓集团合作项目,耦合条件下矿焦综合评价,2019,33.3万RMB,参与;