姓名:王晨
环境科学与工程学部
办公电话:0531-89631680
电子邮件:shanqing123@126.com
通讯地址:山东省济南市长清区大学路3501号
邮政编码:250353

作经历

1997.07-:教授,齐鲁工业大学,环境学部

教育背景

2002.09-2006.04:北京科技大学,安全技术及工程,博士

1.水污染物环境行为

2.工业废水处理及资源化

3.光催化剂制备及性能

纵向课题

1. 2007,国家自然基金项目面上项目,35万,参与,结题

2. 2008,山东省自然基金项目博士基金,10万,主持,结题

3. 2013,山东省科技攻关计划项目,主持,结题

4. 2015,山东省自然基金项目面上项目,15万,主持,结题

技术研发

1. 2019,挥发性有机气体污染物光催化降解新型催化剂制备中试与光催化降解工艺设备设计,企业技术研发,50万,主持,结题

2. 2021,微纳米气泡发生器技术+常温催化氧化技术的深入开发,企业技术研发,20万,主持,结题


3. 2024,脱硫剂成份剖析与主要成份性能研究, 企业技术研发,3万,主持,结题



著作


1. Zhang J., Wang C*, etc. Preparation and Photocatalytic Performance Study of TiO2-TMP Composites Under Effect of Crystal Structure Modulation. Materials, 2025,18,2623.

2. Qi X., Xu S., Zhang L., Cao Q., Zhang L., Shi X., Gua Y, *, Wang C*, NiFe2O4@MoS2 heterojunction induces the changes of PMS activation mode in PMS/Vis system for the directed generation of 1O2.Separation and Purification Technology,2025,363,132175

3. Zhang J., Wang C*, etc. Modulation of the structure of the conjugated polymer tmp and the effect of its structure on the catalytic performance of TMP–TiO2 under visible light: catalyst preparation, performance and mechanism. Materials, 2023,16,1563

4. Teer Ba, Wang C*, etc. Hierarchical nano-reactor with core-shell structure for efficient removal of atrazine via heterogeneous catalytic ozonation: Experimental parameters, kinetics and performance analysis.Journal of Water Process Engineering,53(2023)103716

5. Huang Z., Wang C*, etc. The mechanisms of sodium chloride stress mitigation by salt-tolerant plant growth promoting rhizobacteria in wheat. Agronomy, 2022,12,543

6. MaY., Wang C*, etc. Effective magnetic separation of phosphate from natural water by a novel magnetic composite. Desalination and Water Treatment,212(2021) 434–443

7. Zhang L. Wang C*, etc. Trimesoyl chloride-melamine copolymer-TiO2 nanocomposites as high-performance visible-light photocatalysts for volatile organic compound degradation.Catalysts,2020,10,575

8. Wang R. Wang C*, etc. Biological inoculant of salt-tolerant bacteria for plant growth stimulation under different saline soil conditions. J. Microbiol.  Biotechnol.2021,31(3):398–407

9. Yu W., Wang C*, etc. Flocculation performance and kinetics of magnetic polyacrylamide microsphere under different magnetic field strengths. Journal of Chemistry2020,1579424

10. Qi J., Wang C*, etc. TiO2 assisted photocatalytic decomposition of 2-Chloronaphthalene on Iron nanoparticles in aqueous systems: synergistic effect and intermediate products. Russian Journal of Physical Chemistry A,2019,93(8):1620–1626

11. Gu N., Wang C*, etc. Synthesis and characterization of magnetic poly (acrylamide-co-maleic anhydride) grafted gelatin as a novel heavy metal ions wastewater treatment agent.Desalination and Water Treatment,116 (2018) 170–178

12. Wang C*, etc. Preparation and characterization of polymercoated Fe3O4 magnetic flocculant. Separation Science and Technology,2018,53,(5):814–822

13. Wang C*, etc. Purification, Analysis and Surfactant Synthesis of Waste Cooking Oil. Tenside Surf. Det. 54 (2017) 1

14. Liang D., Wang C*, etc. Photolytic degradation of tris-(2,3-dibromopropyl) isocyanurate (TBC) in aqueous systems. Environmental Technology,2016,37(18):2292-2297

15. Wang C*, etc. Investigation of influence of low phosphorous co-polymer antiscalant on calcium sulfate dihydrate crystal morphologies.Desalination 348 (2014) 89–93


会议报告

本科生课程

1. 《环境化学》(64学时)

2. 《环境工程微生物学》(48学时)

研究生课程

1. 《高等环境化学》(32学时)

指导研究生

1. 2024级硕士:乔宇

2. 2023级硕士:李晓勇