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刘晓明

领域:新材料产业 学校:北京科技大学职称:教授

冶金等工业二次资源循环与材料化利用 复杂/低品位铁矿资源高效利用...

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教育背景

1999-2003,中国矿业大学,本科
2004-2010,中国矿业大学(北京),博士

工作经历

2007-2009,美国威斯康星-麦迪逊大学,博士联合培养 2010-2012,北京科技大学,师资博士后 2012-2013,北京科技大学,讲师 2013-2018,北京科技大学,副教授 2017-今,北京科技大学,博士生导师 2018-今,北京科技大学,教授,副院长

项目课题经历

主要科研项目/业绩:
近几年负责或参与的主要科研项目:
[1] 国家自然科学基金面上项目:“生物质磁化低品位赤铁矿协同提高其尾矿胶凝活性机理研究”(负责人),51574024,2016.1-2019.12;
[2] 国家重点研发计划重点专项课题,“基于高炉炉料结构优化的硫硝减排技术及示范”,2017YFC0210604-01,2017.07- 2020.12。
[3] 上海净域土壤修复工程有限公司,“利用贵州松桃县电解锰渣制备透水砖技术” (负责人),2017-055,2017.2-2018.2
[4] 中色十二冶金建设有限公司,“利用拜耳法赤泥制备路基材料和免烧砌块技术”(负责人),2017-314,2017.2-2017.12
[5] 贵州中科见地新材料科技有限公司,“利用电解锰渣制备路面基层材料技术研究”,(负责人),2018.3-2020.2。
[6] 国家自然科学基金青年项目:“铝冶炼硅钙渣基生态胶凝材料钠离子固结机理研究”(负责人),51302012,2014.1-2016.12;
[7] 中国博士后基金特别资助项目,“高磷铁矿生物质热解直接还原脱磷机理研究”(负责人),2016T90034,2015.12-2017.1;
[8] 中央高校基本科研业务费:“二次铁矿资源选-冶-材协同全组分清洁利用基础研究”(负责人),FRF-BR-16-026A,2017.2-2017.12;
[9] 中色十二冶金建设有限公司,“利用华兴铝业赤泥制备生态材料技术”(负责人),2016-270,2016.4-2016.8;
[10] 中国博士后科学基金面上项目:“低品位赤铁矿生物质磁化还原耦合热液蚀变作用机理研究”(负责人),2015M580987,2015.11-2017.1;
[11] 教育部博士点专项科研基金:“高铝粉煤灰提取氧化铝后硅钙渣中Na+固结机理研究”(负责人),20120006120015,2013.1-2015.12;
[12] 中国博士后科学基金面上项目:“熔融钢渣粒化轮和冷却水联合雾化的基本规律研究”(负责人),20100480202,2010.12-2012.6;
[13] 钢铁冶金新技术国家重点实验室创新基金:“生物质磁化含磷铁矿脱磷机理研究”(负责人),2013.1-2014.12;
[14] 中央高校基本科研业务费:“生活垃圾焚烧飞灰制备轻质保温复合墙体材料基础研究”(负责人),FRF-TP-15-055A3,2015.10-2016.9;
[15] 中央高校基本科研业务费:“赤泥基高固体含量生态无机涂料基础研究”(负责人),2014.9-2015.8;
[16] 中央高校基本科研业务费:“熔融钢渣可控粒化数值模拟研究”(负责人),2012.1-2013.12;
[17] 大唐国际发电有限公司,“利用高碱硅钙渣制备绿色建材技术”(负责人), 2012.5-2013.5;
[18] 清华大学建筑设计研究院,“利用高碱硅钙渣制备绿色混凝土掺合料技术”(负责人),横向课题,2014.1-2014.6;
[19] 国家自然科学基金重点项目:“钢渣‘热’和‘渣’双利用制备高附加值产品的关键技术基础研究”,2011.01-2014.12;
[20] 国家高技术研究发展计划(863计划)重大项目:“钢渣活性组分固化与资源化利用技术”,2011-2015;
[21] 国家“十二五”科技支撑计划重大项目:“典型工业园区清洁生产与循环经济关键技术及示范50万吨/年跨行业废弃物水泥窑协同利用技术及示范”,2011.1-2014.12;
[22] 国家“十二五”科技支撑计划:“纳米微米高辐射覆层节能材料应用和示范”,2011-2015
[23] 国家“十一五”科技支撑计划,“液态钢渣改性及气淬处理技术”,2008.1-2010.12;
[24] 教育部博士学科点专项科研基金:“电解锰渣潜在胶结活性增强机理研究”,2011.1-2013.12;
[25] 广东省教育部产学研结合项目:“陶瓷低碳制备资源循环利用及清洁生产技术开发”,2010.2.2-2012.11.29;
[26] 内蒙古自治区科技重大专项“煤基固废硅铝资源协同利用技术与示范”,2013.1-2016.12。

论文、成果、著作等

近几年发表的主要文章:
[1] X. Liu*, X. Zhao, H. Yin, J. Chen, N. Zhang*. Intermediate-calcium based cementitious materials prepared by MSWI fly ash and other solid wastes: hydration characteristics and heavy metals solidification behavior. Journal of Hazardous Materials.2018, 349, 262-271.
[2] X. Liu, N. Zhang, Y. Yao*, H. Sun, C. Feng. Micro-structural characterization of the hydration products of bauxite-calcination-method red mud-coal gangue based cementitious materials. Journal of Hazardous Materials, 2013, 262, 428-438.
[3] X. Liu*, N. Zhang, H. Sun, J. Zhang, L. Li. Structural investigation relating to the cementitious activity of bauxite residue – red mud. Cement and Concrete Research, 2011,41(8):847-853.
[4] X. Liu*, N. Zhang. Utilization of red mud in cement production: A review. Waste Management and Research, 2011, 29(10): 1053-1063.
[5] E. Mukiza, L. Zhang*, X. Liu*, N. Zhang. Utilization of red mud in road base and subgrade materials: A review, Resources, Conservation and Recycling. 2019, 141: 187-199.
[6] N. Zhang, H. Li, X. Liu*, Hydration mechanism and leaching behavior of bauxite-calcination-method red mud-coal gangue based cementitious materials. Journal of Hazardous Materials, 2016, 314, 172-180.
[7] N. Zhang, H. Li, Y. Zhao, X. Liu*, Hydration products and environmental friendly performance of a cementitious material composed of calcium silicate slag. Journal of Hazardous Materials, 2016, 306, 67-76.
[8] N. Zhang, H. Sun, X. Liu*, J. Zhang, Early-age characteristics of red mud-coal gangue cementitious material. Journal of Hazardous Materials. 2009,167:927-932.
[9] X. Lu, W. Dai, X. Liu*, D. Cang, L. Zhou. Effect of basicity on cementitious activity of modified electric arc furnace steel slag. Metallurgical Research Technology. 2019, 116(2):217-223.
[10] X. Liu*, H. Sun, X. Feng, N. Zhang. Relationship between the microstructure and reaction performance of aluminosilicate. International Journal of Mineral, Metallurgy and Materials, 2010,17(1):108-115.
[11] X. Liu*, N. Zhang, H. Sun, Y. Li , D. Cang. Effect of multiplex thermal activation on microstructure of red mud-coal gangue, Rare Metal Materials and Engineering, 2013, 42(6):538-542.
[12] X. Liu*, D. Cang, H. Sun, Y. Zong. Effect of Oil Shale Residue on the Hydration of Red Mud-Fly Ash Cementitious Material. The Journal of Solid Waste Technology and Management. 2013, 39(1):43-50.
[13] X. Liu*, H. Zhang, S. Li, D. Huang, Y. Zhao,Mechanism on Reduction of Fe2O3 by Biomass Sawdust,Journal of Shanghai JiaoTong University. 2017, 22(3):280-285.
[14] X. Liu*, Y. Li, L. Zhang, D. Cang, S. Zhou. Phase transitions relating to the pozzolanic activity of electrolytic manganese residue during calcinations. Journal of Shanghai JiaoTong University. 2013, 18(1): 105-110.
[15] X. Liu*, Y. Li, H. Sun, D. Cang. Effect of oil shale on the Na+ solidification of red mud-fly ash cementitious material. Journal of Shanghai JiaoTong University. 2012, 17(6): 723-729.
[16] X. Liu, H. Wen*, T. B. Edil, C. H. Benson. Stabilization of Flue Gas Desulfurization By-Products with Fly Ash, Cement, and Sialite. Journal of the Transportation Research Board. 2011,2204:pp 102-109.
[17] D. Huang, Y. Zong, R. Wei, W. Gao, X. Liu*. Direct Reduction of High-Phosphorus Oolitic Hematite Ore Based on Biomass Pyrolysis. Journal of Iron and Steel Research International. 2016,23(9):874-883.
[18] N. Zhang, H. Li, D. Peng, X. Liu*, Properties evaluation of silica-alumina based concrete: Durability and environmental friendly performance. Construction and Building Materials. 2016, 115, 105-113.
[19] N. Zhang, X. Liu, H. Sun, L. Li. Evaluation of blends bauxite-calcination-method red mud with other industrial wastes as a cementitious material: Properties and hydration characteristics. Journal of Hazardous Materials, 2011,185(1):329-335.
[20] N. Zhang, X. Liu, H. Sun, L. Li. Pozzolanic behaviour of compound-activated red mud-coal gangue mixture. Cement and Concrete Research, 2011,41(3):270-278.
[21] Y. Li, Y. Yao, X. Liu, H. Sun, W. Ni, Improvement on pozzolanic reactivity of coal gangue by integrated thermal and chemical activation, Fuel, July 2013, 109, 527-533.
[22] R. Wei, D. Cang, Y. Bai, D. Huang, X. Liu. Reduction characteristics and kinetics of iron oxide by carbon in biomass. Ironmaking and Steelmaking. 2016,43(2): 144-152.
[23] X. Liu*, H. Zhang, S. Li, D. Huang, Y. Zhao,Mechanism on Reduction of Fe2O3 by Biomass Sawdust,Journal of Shanghai JiaoTong University. 2017, 22(3):280-285
[24] 刘晓明, 唐彬文, 尹海峰, Emile Mukiza. 赤泥煤矸石基公路路面基层材料的耐久与环境性能. 工程科学学报, 2018, 40(4):438-445.
[25] 李恒, 刘晓明*, 赵喜彬, 陈蛟龙, 尹海峰, 生物质松木锯末中低温还原高铁拜耳法赤泥. 工程科学学报, 2017, 39(9): 1331-1338.
[26] 陈蛟龙,张娜,李恒,赵喜彬,刘晓明*.赤泥基似膏体充填材料水化特性研究.工程科学学报, 2017, 39 (11):1641-1646.
[27] 黄冬波,宗燕兵,邓振强, 刘莲凤, 李彦辉, 王俊, 刘晓明*. 鲕状赤铁矿生物质低温磁化焙烧实验研究,工程科学学报.2015,37(10):1260-1267.
[28] 张娜,刘晓明*,孙恒虎. 赤泥-煤矸石基中钙体系胶凝材料的水化特性.材料研究学报.2014,28(5): 325-332.


专利、著作版权等

[1] 一种拜耳法赤泥煤矸石路基材料及制备方法,申请号:201710260111.X
[2] 生物质还原赤泥中氧化铁同步提高无机组分活性的方法,申请号:201710473929.X
[3] 一种绿色可降解无机固沙材料的固沙方法,申请号:201611061575.X
[4] 一种利用钢渣湿法磁选尾泥制备陶瓷材料的方法,授权号,201210276443.4;
[5] 一种提高钢渣铁组分回收率的方法,申请号:201610833748.9
[6] 一种利用赤泥生产陶瓷材料的方法. 中国,申请号:201610056201.2
[7] 一种熔渣节能保温剂,授权号,201010225763.8。
[8] 一种双炉膛高温熔融炉,授权号:201020521930.9
[9] 一种透水砖的制备方法,授权号:201310184631
[10] 一种复合路基材料,授权号:201310183480
[11] 一种电解锰渣提氨改质的方法,授权号:201410752049.2
[12] 一种高温熔渣连续改质的工艺方法,授权号:201510191265.9
[13] 一种电解锰渣生态水泥的制备方法,申请号:201010283952.0
[14] 一种含铁工业熔渣在线回收铁及制备微晶玻璃熔块的方法,2010.9.8, CN201010275956.4
[15] 一种污泥基绿色还原剂及使用方法,2011.11.21,中国,CN201110370934.0
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