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北京科技大学冶金与生态工程学院导师教师师资介绍简介-刘晓明

本站小编 Free考研考试/2020-05-01

人物简介

姓 名:刘晓明
职 务:教授/博士生导师/副院长
电子邮件: liuxm@ustb.edu.cn



办公电话: 传 真:
本科课程: 冶金固废循环利用,科技英语技能训练
研究生课程: 资源循环与高效利用
科研方向: ?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

个人简介
成就及业绩


【教育与工作简历】
1999-2003,中国矿业大学,本科
2004-2010,中国矿业大学(北京),博士
期间: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
【主要学术成就】一直从事冶金等行业固废资源化高效利用的研究工作,包括赤泥、电解锰渣、钢渣、铁尾矿、粉煤灰、煤矸石、脱硫石膏、垃圾焚烧飞灰等工业固废的大宗和高附加值利用研究,低品位/复杂二次铁矿资源高效利用研究。先后负责或参与承担国家自然科学基金项目(4项)、国家“863”项目(2项)、国家科技支撑计划项目(3项)、国家十三五重点研发计划等国家及省部级科研项目30余项,负责企业项目10余项。在Journal of Hazardous Materials, Journal of Cleaner Production, Cement and Concrete Research, Resources, Conservation and Recycling, Construction and Building Materials等国内外学术期刊上发表论文80余篇;申请国家发明专利17项,已授权8项。主持项目“赤泥等多固废协同利用理论及其在建筑材料中的应用”获2019年度中国建筑材料联合会科技进步二等奖(排名第一)。主持项目“基于中钙体系的电解锰渣建材化低成本利用技术与应用”通过贵州省公路学会专家评价(排名第一),获评“国内领先水平”。兼任中国硅酸盐学会理事、固废与生态材料分会常务理事、青年委员会主任委员,中国电子显微镜学会无机非金属建筑材料微观测试与分析专业委员会委员。

代表性论著:
近几年发表的主要文章:[1]Yuliang Zhang, Xiaoming Liu*, Yingtang Xu, Binwen Tang, Yaguang Wang, Preparation of road base material by utilizing electrolytic manganese residue based on Si-Al structure: Mechanical properties and Mn2+ stabilization/solidification characterization, Journal of Hazardous Materials, 2020, 390, 122188.
[2]Yaguang Wang, Xiaoming Liu*, Wei Zhang, Zepeng Li, Yuliang Zhang, Yong Li, Yongyu Ren, Effects of Si/Al ratio on the efflorescence and properties of fly ash based geopolymer, Journal of Cleaner Production, 2020, 244, 118852.
[3]Yingtang Xu, Xiaoming Liu*, Yuliang Zhang, Binwen Tang, Emile Mukiza. Investigation on sulfate activation of electrolytic manganese residue on early activity of blast furnace slag in cement-based cementitious material. Construction and Building Materials, 2019, 229, 116831.
[4]Yaguang Wang, Shuai Gao, Xiaoming Liu*, BinwenTang, Emile Mukiz, Na Zhang*. Preparation of non-sintered permeable bricks using electrolytic manganese residue: Environmental and NH3-N recovery benefits. Journal of Hazardous Materials, 2019, 378, 120768.
[5]Emile Mukiz, Xiaoming Liu*, Lingling Zhang*, Na Zhang, Preparation and characterization of a red mud-based road base material: Strength formation mechanism and leaching characteristics. Construction and Building Materials, Volume 220, 2019, Pages 297-307.
[6]Yuliang Zhang, Xiaoming Liu*, Yingtang Xu, Binwen Tang, Yaguang Wang, Emile Mukiz. Synergic effects of Electrolytic Manganese Residue-Red Mud-Carbide Slag on the road base strength and durability properties, Construction and Building Materials, Volume 220, 2019, Pages 364-374.
[7]Yuliang Zhang, Xiaoming Liu*, Yingtang Xu, Binwen Tang, Yaguang Wang, Emile Mukiz, Preparation and characterization of cement treated road base material utilizing electrolytic manganese residue. Journal of Cleaner Production, Volume 232, 2019, Pages 980-992.
[8]Na Zhang*, Le Wu, Xiaoming Liu*, Yihe Zhang*, Structural characteristics and cementitious behavior of basic oxygen furnace slag mud and electric arc furnace slag. Construction and Building Materials, Volume 219, 2019, Pages 11-18.
[9]Yingtang Xu, Bo Yang, Xiaoming Liu*, Shuai Gao, Dongsheng Li, Emile Mukiz, and Huajian Li. Investigation of the medium calcium based non-burnt brick made by red mud and fly ash: durability and hydration characteristics. International Journal of Minerals, Metallurgy and Materials, Volume 26, Number 8, 2019, Page 983-991.
[10]Dandan Peng, Yaguang Wang, Xiaoming Liu*, Binwen Tang, Na Zhang*. Preparation, characterization, and application of an eco-friendly sand-fixing material largely utilizing coal-based solid waste. Journal of Hazardous Materials, Volume 373, 2019, Pages 294-302
[11]Binwen Tang, Shuai Gao, Yaguang Wang, Xiaoming Liu*, Na Zhang*. Pore structure analysis of electrolytic manganese residue based permeable brick by using industrial CT. Construction and Building Material, 2019, 208, 697-709.
[12]Xiang Lu, Wenbin Dai, Xiaoming Liu*, Daqiang Cang, and Liang Zhou. Effect of basicity on cementitious activity of modified electric arc furnace steel slag. Metallurgical Research Technology. 2019, 116(2):217-223.
[13]Emile Mukiza, LingLing Zhang*, Xiaoming Liu*, Na Zhang. Utilization of red mud in road base and subgrade materials: A review, Resources, Conservation and Recycling. 2019, 141: 187-199.
[14]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.
[15]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.
[16]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.
[17]X. Liu*, N. Zhang. Utilization of red mud in cement production: A review. Waste Management and Research, 2011, 29(10): 1053-1063.
[18]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.
[19]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.
[20]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.
[21]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.
[22]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.
[23]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.
[24]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.
[25]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.
[26]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.
[27]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.
[28]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.
[29]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.
[30]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.
[31]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.
[32]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
[33]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.
[34]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.
[35]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.
[36]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.
[37]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.




获奖:
[1]一种利用固废材料的生态友好复合胶凝材料及其制备方法,申请号:CN7.9
[2]一种含电解锰渣道路抗开裂水稳层材料及其制备方法,申请号:CN4.3
[3]一种拜耳法赤泥煤矸石路基材料及制备方法,申请号:1.X
[4]生物质还原赤泥中氧化铁同步提高无机组分活性的方法,专利号:9.X
[5]一种绿色可降解无机固沙材料的固沙方法,申请号:5.X
[6]一种利用钢渣湿法磁选尾泥制备陶瓷材料的方法,专利号,3.4;
[7]一种提高钢渣铁组分回收率的方法,申请号:8.9
[8]一种利用赤泥生产陶瓷材料的方法. 中国,申请号:1.2
[9]一种熔渣节能保温剂,专利号,3.8。
[10]一种双炉膛高温熔融炉,专利号:0.9
[11]一种透水砖的制备方法,专利号:1
[12]一种复合路基材料,专利号:0
[13]一种电解锰渣提氨改质的方法,专利号:9.2
[14]一种高温熔渣连续改质的工艺方法,专利号:5.9
[15]一种电解锰渣生态水泥的制备方法,申请号:2.0
[16]一种污泥基绿色还原剂及使用方法,2011.11.21,中国,CN4.0
[17]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, CN6.4


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),**,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”,2017YFC**-01,2017.07- 2020.12。
[3]中央高校基本科研业务费:“赤泥基胶凝材料水化过程中硅对铝的四配位同构效应” (负责人),FRF-TP-18-005B1,2019.03.11-2019.11.30。
[4]中央高校基本科研业务费:“电解锰渣中NH3-N提取机理及制备氮肥研究”(负责人),FRF-AT-19-007,2020.01.14- 2020.10.31。
[5]北京科大分析检验中心有限公司,“电解锰渣无害化处理技术”(负责人),2019-0755,2019.05.30-2021.5.30。
[6]北京科大分析检验中心有限公司,“赤泥碱溶出控制及协同多固废制备免烧砌块工艺研究”(负责人),2019-1153,2019.12.13- 2020.12.13。
[7]山西中科泓源环保科技有限公司,“利用阳泉赤泥制备免烧砖和水稳层技术”(负责人),2018.10-2019.6。
[8]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
[9]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
[10]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。
[11]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),**,2014.1-2016.12;
[12]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;
[13]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;
[14]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;
[15]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;
[16]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),015,2013.1-2015.12;
[17]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),,2010.12-2012.6;
[18]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;
[19]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;
[20]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;
[21]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;
[22]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;
[23]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;
[24]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;
[25]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;
[26]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;
[27]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
[28]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;
[29]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;
[30]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;
[31]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。




相关话题/冶金 北京科技大学