人物简介
  • 姓        名:马保中
  • 职        务:教授/博士生导师/副院长
  • 电子邮件: mabaozhong@ustb.edu.cn; bzhma@126.com
  • 办公电话: +86-10-62332271                     传        真: +86-10-62332265

  • 办公地址:冶金生态楼311

  • 本科课程: 冶金单元设计与操作

  • 研究生课程: 镍钴冶金、湿法冶金

  • 科研方向:

  • 多元金属原生资源材料化冶金
    有色冶炼过程产物高效处置
    退役电池二次资源清洁回收


  • 个人简介
  • 成就及业绩
  • 教育与工作经历:

    2023.12-今    北京科技大学,副院长

    2020.07-今,北京科技大学,教授

    2019.08-2020.05,加拿大不列颠哥伦比亚大学(UBC),访问学者

    2017.07-2020.06,北京科技大学,副教授

    2008.07-2017.06,北京矿冶研究总院,助理工程师、工程师、高级工程师

    2014.09-2017.05,昆明理工大学,博士

    2005.09-2008.06,中国科学院过程工程研究所,硕士

    2001.09-2005.06,中南大学,本科


    主要学术成就:

    国家重点研发计划重点专项首席科学家,国家科技部“循环经济关键技术与装备”重点专项总体专家组专家委员,中国有色金属学会重有色金属冶金专委会副主任委员、有色冶金资源综合利用专委会专家委员、矿冶过程界面化学专委会专家委员、节能减排专委会专家委员。从事多元复杂金属原生资源/二次资源综合利用、清洁回收及冶金新材料制备方面的基础研究和工程转化工作。发明了镍钴钪共伴生矿综合利用、复杂锑金砷多金属资源低碳处置、复杂锂铷铯资源协同提取、高铝煤矸石/粉煤灰高效处置、废旧杂铜高值再生回用、工业废酸选择性脱氟氯、退役太阳能电池组分清洁回收等多项原创技术。建成有年30万吨矿石规模的非熔融态金属化深度还原镍铁示范工程、年10万吨矿石规模的褐铁型红土镍矿非常规介质温和提取示范工程等,在建年180万吨红土镍矿硝酸加压浸出技术示范工程、年50万吨复杂含金资源高效捕集与分离工程示范、万吨级锑金精矿低碳冶炼工程示范,取得显著经济、社会和环境效益。

    先后主持国家重点研发计划项目/课题,国家自然科学基金重点/面上/青年项目,北京市自然科学基金面上项目等20余项。以第一或通讯作者发表论文130余篇,其中SCI论文110余篇(总IF>700),中科院一区50余篇,被引2000余次;获授权专利90余件,其中国际专利4件;出版国家级重点专著1部(100.4万字);获省部级一等奖5项,省部级二等奖3项,获首届邱定蕃有色冶金青年科技奖。担任《International Journal of Minerals, Metallurgy and Materials》、《中国有色金属学报(中英文版)》、《有色金属工程》、《有色金属(冶炼部分)》等10余个期刊编委/青年编委,国内外20多个期刊审稿专家,多家企业技术顾问等。在国内外学术会议上做大会特邀/口头报告20余次。指导博/硕士生50余名,毕业20余名。


    代表性专著:

    [1] 王成彦,马保中. 《红土镍矿冶炼》,冶金工业出版社,2020.


    部分代表性论文:

    [1] Ding Zhao, Baozhong Ma*, Chengyan Wang*, Yuqing Zhang, Shuyang Shi, Yongqiang Chen. Investigation of the thermal behavior of Mg(NO3)2·6H2O and its application for the regeneration of HNO3 and MgO.  Chemical Engineering Journal , 2022, 433, 133804. (SCI, IF="16.744," 中科院一区).

    [2] Shuang Shao, Baozhong Ma*, Yongqiang Chen, Wenjuan Zhang, Chengyan Wang*. Behavior and mechanism of fluoride removal from aqueous solutions by using synthesized CaSO4·2H2O nanorods.  Chemical Engineering Journal , 2021, 426, 131364. (SCI, IF="13.273," 中科院一区).

    [3] Yingwei Lv, Yubo Liu, Baozhong Ma*, Chengyan Wang, Yongqiang Chen. Preferential extraction of rubidium from high concentration impurity solution by solvent extraction and preparation of high-purity rubidium salts.  Desalination, 2022, 545, 116162. (SCI, IF="11.211," 中科院一区)

    [4] Wei Liu, Baozhong Ma*, Ling Wang, Qinqing Zhao, Yi`an Zuo, Yongqiang Chen, Chengyan Wang*. Corrosion behavior of silica-alumina refractories for scrap brass smelter linings.  Journal of Cleaner Production , 2022, 370, 133600. (SCI, IF="11.072," 中科院一区)

    [5] Yubo Liu, Baozhong Ma*, Yingwei Lv, Chengyan Wang*, Yongqiang Chen. Thermodynamics analysis and response surface methodology to investigate decomposition behaviors for lepidolite sulfation products in presence of coal. Science of the Total Environment, 2023, 888, 164089. (SCI, IF="9.8," 中科院一区).

    [6] Yubo Liu, Baozhong Ma*, Yingwei Lv, Chengyan Wang*, Yongqiang Chen. Selective recovery and efficient separation of lithium, rubidium, and cesium from lepidolite ores.  Separation and Purification Technology , 2022, 288,120667. (SCI, IF="9.136," 中科院一区)

    [7] Baozhong Ma, Xiang Li, Bao Liu, Peng Xing, Wenjuan Zhang, Chengyan Wang*, Yongqiang Chen. Effective Separation and recovery of valuable components from CIGS chamber waste via controlled phase transformation and selective leaching.  ACS Sustainable Chemistry & Engineering, 2020, 8, 3026-3037. (SCI, IF="8.198," 中科院一区).

    [8] Longfei Shi, Baozhong Ma*, Zhihe Cao, Chengyan Wang, Xinglong Xiong, Chenqian Chen. Thermodynamic analysis and application for extracting valuable components from iron-phosphorus residue of spent catalysts. Waste Management, 2023, 170, 144-153. (SCI, IF="8.1," 中科院一区).

    [9] Shuang Shao, Baozhong Ma*, Chengyan Wang*, Yongqiang Chen. Thermal behavior and chemical reactivity of coal gangue during pyrolysis and combustion.  Fuel , 2022, 331, 125927. (SCI, IF="8.035," 中科院一区)

    [10] Bao Liu, Baozhong Ma*, Yongqiang Chen, Chengyan Wang*. Corrosion mechanism of Ti/IrO2-RuO2-SiO2 anode for oxygen evolution in sulfuric acid solution.  Corrosion Science , 2020, 170, 108662. (SCI, IF="6.479," 中科院一区).