人物简介
  • 姓        名:刘征建
  • 职        务:教授/博士生导师/高等工程师学院副院长
  • 电子邮件: liuzhengjian@126.com
  • 办公电话: 010-62332353                      传        真: 010-62332880

  • 本科课程: Ferrous Metallurgy Ⅰ;钢铁绿色制造技术;铁矿石造块新技术;非高炉炼铁

  • 研究生课程: 炼铁新技术;高炉长寿技术

  • 科研方向:低碳炼铁、氢冶金、铁矿资源利用、烧结球团、智能炼铁


  • 个人简介
  • 成就及业绩
  • [教育与工作简历]

    2000-2004,东北大学,本科

    2004-2010,百盈彩票app(免试推荐研究生,硕博连读),博士

    2010-2013,百盈彩票app,师资博士后

    2013-2016,百盈彩票app,讲师

    2015-2016,澳大利亚昆士兰大学,国家公派访问学者

    2016-2020,百盈彩票app,副教授

    2018-今,百盈彩票app,博士生导师

    2020-今,百盈彩票app,教授(破格)

    2022-今,百盈彩票app高等工程师学院、卓越工程师学院,副院长


    [主要学术成就]

    百盈彩票app教授,现任高工学院、卓越工程师学院副院长,中国金属学会炼铁分会秘书长。入选中组部万人领军青年拔尖人才、IJMMM“鼎新青年科学家奖”、首届寿昆教学名师,百盈彩票app青年教学骨干人才,中国金属学会优秀学会工作者,百盈彩票app第二十一届“我爱我师─我心目中最优秀的老师”,首届百盈彩票app优秀班导师,全国冶金科技竞赛优秀指导教师。

    主持国家自然科学基金面上项目3项、青年基金1项,作为学校方面负责人参与重点研发计划项目1项,参与国家“十一五”国家科技支撑计划项目2项、国家“十二五”国家科技支撑计划项目1项、国务院大气污染专项1项、北京市科技计划项目1项、国际合作项目6项、企业合作项目近100项,第一作者和通讯作者发表SCI/EI论文60余篇,授权专利24项,获得省部级科技一等奖4项、二等奖3项、三等奖1项,吴文俊人工智能二等奖1项、三等奖1项,出版专著1部,参与制订国家标准1项。负责校级教改面上项目1项,参与校级教改重大项目1项、校级精品在线开放课程1项,获得全国高校教师教学创新大赛一等奖1项,北京市教育教学成果一等奖1项,百盈彩票app教育教学成果一等奖1项,第十一届青年教师教学基本功比赛一等奖。担任Metal期刊编委,《Chinese Journal of Engineering》、《Journal of Iron and Steel Research》、《工程科学学报》、《钢铁》、《钢铁研究学报》等期刊青年编委。


    代表性论著:

    [1] Zhengjian Liu, Shaofeng Lu, Yaozu Wang, et al. Optimization of Hydrogen-Based Shaft Furnace Raw Material Parameters Based on Numerical Simulation and Rist Operation Diagram[J]. Metallurgical and Materials Transactions B, 2023, 54(4).

    [2] Zhengjian Liu, Shaofeng Lu, Yaozu Wang, et al. Study on optimization of reduction temperature of hydrogen-based Shaft Furnace—Numerical simulation and multi-criteria evaluation[J]. International Journal of Hydrogen Energy, 2023, 48(42).

    [3] Zhengjian Liu, Zhen Li, Yaozu Wang, et al. Numerical Simulation of Heat and Mass Transfer Behavior during Iron Ore Sintering: A Review[J]. Metals, 2023, 13(7).

    [4] Zhengjian Liu, Qiang Cheng, Yaozu Wang, et al. Three-body aggregation of Fe2O3 nanoparticles: A molecular dynamics simulation[J]. Chemical Physics Letters, 2020, 760.

    [5] Zhengjian Liu, Lele Niu, Shijun Zhang, et al. Comprehensive Technologies for Iron Ore Sintering with a Bed Height of 1000 mm to Improve Sinter Quality, Enhance Productivity and Reduce Fuel Consumption: Ironmaking[J]. ISIJ International, 2020, 60(11).

    [6] Zhengjian Liu, Qiang Cheng, Yaozu Wang, et al. The interaction of nanoparticulate Fe3O4 during the diffusion-limited aggregation process: A molecular dynamics simulation[J]. Powder Technology, 2020.

    [7] Zhengjian Liu, Qiang Cheng, Kejiang Li, et al. The interaction of nanoparticulate Fe2O3 in the sintering process: A molecular dynamics simulation[J]. Powder Technology, 2020, 367.

    [8] Zhengjian Liu, Qiang Cheng, Yaozu Wang, et al. Sintering neck growth mechanism of Fe nanoparticles: A molecular dynamics simulation[J]. Chemical Engineering Science, 2020, 218.

    [9] Yaozu Wang, Jianliang Zhang, HuiQing Jiang, et al. Experimental and molecular dynamics examination of the interface interaction between magnesium oxide and magnetite in a high temperature oxidation environment[J]. Materials & Design, 2022, 215.

    [10] Yaozu Wang, Zhengjian Liu, Jianliang Zhang, et al. Study of stand-support sintering to achieve high oxygen potential in iron ore sintering to enhance productivity and reduce CO content in exhaust gas[J]. Journal of Cleaner Production, 2020, 252.

    [11] Yaozu Wang, Zhengjian Liu, Jianliang Zhang, et al. Advanced converter sludge utilization technologies for the recovery of valuable elements: A review[J]. Journal of Hazardous Materials, 2020, 381.

    [12] Yaozu Wang, Jianliang Zhang, Zhengjian Liu, et al. Co-utilization of converter sludge-containing dedust wastewater in iron ore sintering to save fresh water, enhance quality and reduce pollution[J]. Journal of Cleaner Production, 2019, 234.


    著作:

    [1]《高炉炉钢安全长寿理论与实践》,冶金工业出版社,2022;

    [2]《氢冶金初探》,冶金工业出版社,2021;

    [3]《非高炉炼铁》,冶金工业出版社,2015;