崔骏

时间:2021-09-08阅读次数:3280

崔骏副教授  硕士生导师


电子邮箱

cuijun@buct.edu.cn

联系电话

18800105721


招生专业及研究方向

招生专业:
环境科学与工程

研究方向:
水污染控制工程、环境纳米功能材料的研发及其环境应用与作用过程

个人经历

工作经历:

2021.7-今:北京化工大学,副教授

2019.7-2021.7:中国环境科学研究院(博士后,导师席北斗研究员)

教育经历:

2015.9-2019.1:北京师范大学(工学博士,导师裴元生教授)

2012.9-2015.6:北京建筑大学(工学硕士,导师袁冬海教授)

2008.9-2012.6:燕山大学(工学学士)

科研项目

1.国家自然科学基金面上项目(52270055),项目负责人

2.国家自然科学基金青年项目(52000164),项目负责人

3.国家重点研发计划(2019YFD1101300),子课题负责人

4.中国博士后科学基金会站前特别资助(2019TQ0292),项目负责人

5.北京化工大学高层次引进人才项目(buctrc202209),项目负责人

6.国家环境保护食品链污染防治重点实验室开放课题(FC2022YB02),项目负责人

7.海淀区2021年关停企业原址用地土壤污染筛查项目,项目负责人

8.北京市海淀区苏家坨镇土壤污染状况调查项目,项目负责人

9.国家水体污染控制与治理科技重大专项(2018ZX07110-05),参与

10.国家水体污染控制与治理科技重大专项(2018ZX07109-003),参与

11.国家水体污染控制与治理科技重大专项(2012ZX07203-003),参与

12.国家重点研发计划(2018YFC1800703),参与

13.国家科技支撑课题(2012BAJ21B08-07),参与

14.北京市科委科技计划(Z161100001216009),参与

15.国家自然科学基金面上项目(52070174),参与

16.国家自然科学基金面上项目(51879012),参与

17.国家自然科学基金青年项目(51209003),参与

18.庆阳石化公司老厂区污染场地修复中试项目,参与

19.南澳县县域农村生活污水治理项目,参与

20.河北华荣制药有限公司污水处理项目,参与

学术成就

(一)论文:已发表论文50余篇,代表性论文如下:

1.Interfacial charge-modulated multifunctional MoS2/Ti3C2Tx penetrating electrode for high-efficiency freshwater production. ACS nano. (2022).(通讯作者)

2.High-efficiency control of pesticide and heavy metal combined pollution in paddy soil using biochar/g-C3N4 photoresponsive soil remediation agent. Chemical Engineering Journal. (2022) 139579.(通讯作者)

3.Ion exchange membrane optimized light-driven photoelectrochemical unit for efficiency simultaneous organic degradation and metal recovery from the mine wastewater. Journal of Hazardous Materials. 429 (2022) 128352.(通讯作者)

4.Superior electron utilization of the intermetallic L10‑FePt-dispersed g-C3N4 for high-efficiency activating peroxymonosulfate. Separation and Purification Technology, 302 (2022) 122105. (通讯作者)

5.Visible-light-driven melamine foam/PANI/N,O,P containing covalent organic polymer for achieving H2O2 production and boosting Fe(Ⅱ)/Fe(Ⅲ) cycle. Journal of Cleaner Production. 345 (2022) 131058.(通讯作者)

6.Ultrasonic-assisted preparation of interlaced layered hydrotalcite (U–Fe/ Al-LDH) for high-efficiency removal of Cr(VI): Enhancing adsorption-coupled reduction capacity and stability. Chemosphere. 308 (2022) 136472.(通讯作者)

7.Effects of selenium fertilizer application and tomato varieties on tomato fruit quality: A meta-analysis. Scientia Horticulturae, 15 (2022) 111242.(通讯作者)

8.Bioaccessibility and bioavailability evaluation of heavy metal(loid)s in ginger in vitro: relevance to human health risk assessment. Science of the Total Environment 857 (2023) 159582.(通讯作者)

9.Modified Biochar/humic substance/fertilizer compound soil conditioner for highly efficient improvement of soil fertility and heavy metals remediation in acidic soils. Journal of Environmental Management. (2022).(通讯作者)

10.Facile fabrication of magnetic phosphorylated chitosan for the removal of Co(II) in water treatment: separation properties and adsorption mechanisms. Environmental Science and Pollution Research, (2020) 27:2588–2598.(通讯作者)

11.Catalytic degradation of carbamazepine by a novel granular visible-light-driven photocatalyst activating the peroxydisulfate system. Chemical Engineering Journal. 421 (2021) 127867.(第一作者)

12.Construction of a carbon dots-based Z-scheme photocatalytic electrode with enhanced visible-light-driven activity for Cr(VI) reduction and carbamazepine degradation in different reaction systems. Chemical Engineering Journal. 420 (2021) 127571.(第一作者)

13.A long-term stable and environmental friendly self-healing coating with polyaniline/sodium alginate microcapsule structure for corrosion protection of water-delivery pipelines. Chemical Engineering Journal. 358 (2019) 379-388.(第一作者)

14.Toward a slow-release borate inhibitor to control mild steel corrosion in simulated recirculating water. ACS Applied Materials & Interfaces. 10 (2018) 4183-4197.(第一作者)

15.Effect of pH on the passivation of carbon steel by sodium borosilicate controlled-release inhibitor in simulated recirculating cooling water. Industrial & Engineering Chemistry Research. 56 (2017) 7239-7252.(第一作者)

16.Enhanced photocathodic protection performance of Fe2O3/TiO2 heterojunction for carbon steel under simulated solar light, Journal of Alloys and Compounds. 779 (2019) 183-192.(第一作者)

17.Application of electrochemical noise (EN) technology to evaluate the passivation performances of adsorption and film-forming type corrosion inhibitors, Journal of Electroanalytical Chemistry. 855 (2019) 113584.(第一作者)

18.Novel inorganic solid controlled-release inhibitor for Q235-b anticorrosion treatment in 1 M HCl. Applied Surface Science. 416 (2017) 213-224.(第一作者)

19.Effect of temperature on the passivation behaviour of the slow-release inhibitor for carbon steel in the simulated recirculating water. Corrosion Engineering, Science and Technology. 54 (2019) 286-297.(第一作者)

20.Corrosion resistance of carbon steel under an aerobic acidic condition in the presence of borate as corrosion inhibitor. Anti-Corrosion Methods and Materials. 66 (2019) 88-100.(第一作者)

21.Characterization of dissolved organic matter in lake baiyangdian using spectroscopic techniques and multivariate statistical analysis. Clean - Soil Air Water. 44 (2016) 1444-1452.(第一作者)

22.WO3/碳点/TiO2复合纳米材料的制备及其光致阴极保护作用研究. 北京化工大学学报(自然科学版), 4 (2022) 73-82.(通讯作者)

(二)获奖

1.2022届本科优秀毕业设计(论文)“优秀指导教师”称号

2.第八届中国国际“互联网+”大学生创新创业大赛北京赛区复赛高教主赛道二等奖指导教师

3.2021年度环境技术进步二等奖

4.2019年环境保护科学技术奖二等奖(省部级)

论著专利

(一)授权的发明专利

1.Visible light catalyst, preparation and application thereof. US 11420194 B2(美国)

2.The self-repairing anticorrosive coatings, preparation method and application thereof. GB2569462(英国)

3.一种可见光驱动颗粒催化剂活化过硫酸盐的方法及应用. ZL201911261615.9

4.一种无磷固体缓释型缓蚀剂. ZL2016102881473

5.一种用于控制循环水系统碳钢腐蚀的水溶性凝胶. CN201710387295.6

6.具备自修复能力的防腐涂层及其制备方法和应用. ZL201710685333

7.接触氧化-人工湿地农村生活污水组合处理系统. 201410159518.X

8.基于吸附材料制备的生态混凝土及用于水质净化的方法. 201410032317.3

9.一种高盐废水中资源回收流动式光电化学体系. ZL2021100339398.

10.一种地下水中石油烃类有机物的快速检测方法. CN202011000474.8

(二)专著

1.何小松,席北斗,崔骏,马妍,垃圾填埋有机质环境行为与污染地下水管控,化学工业出版社. 2021.

2.袁冬海,崔骏,王京刚,李俊奇,海绵城市有机质输移环境效应. 化学工业出版社. 2019.

3.袁冬海,严陈玲,张明顺,崔骏,电子废弃物拆解:物料流动分析与案例. 化学工业出版社. 2015.

招生需求

团队学生专业构成:环境科学与工程、市政工程、化学、化工、材料等,培养学生综合素质和能力为目标,欢迎有志于水污染控制、土壤污染修复的同学加入本课题组共同学习。