姓名:王振
环境科学与工程学部
办公电话:15864791007
电子邮件:wz@qlu.edu.cn
通讯地址:济南市大学科技园3501号国重南楼412
邮政编码:250353

作经历

2014.01-今:教授,齐鲁工业大学,环境学部

2008.12-2013.12:副教授,齐鲁工业大学,环境学部

1996.07:齐鲁工业大学,教师

教育背景

2004.09-2007.07:南开大学,环境工程,博士

2000.09-2003.07:山东大学,环境工程,硕士

1992.09-1996.07齐鲁工业大学,制浆造纸工程,学士

1.废水高级氧化技术

2.植物质材料绿色分离技术

3.生物质材料资源化利用技术

纵向课题

1. 植物质基气凝胶负载锡氧化物催化体系构建及其热促光催化纤维素制乳酸机理研究,山东省自然科学基金面上项目,ZR2024MB15910万,主持,在研

2. 农业秸杆光热催化产乳酸及全要素综合利用校基金项目,2025XKJC010620万,主持,在研

3. 纺织行业清洁生产及废水循环利用技术及示范-印染废水重金属去除技术研究及示范,国家科技支撑项目(子课题)2014BAC13B0454万,主持,结题

4. 特色宜居渔村废弃物综合利用、健康生活模式构建及公共管理技术研究与示范,国家科技支撑项目(子课题)2013BAJ10B110220万,主持,结题

5. 植物纤维材料异质化改性及其对水体中酚类有机污染物吸附机理研究,山东省自然科学基金面上项目,ZR2013EMM01110万,主持,结题

6. 电化学絮凝-固定化微生物耦合技术对造纸终端混合废水的深度处理研究,山东省科技支撑项目,2011GGX1080120万,主持,结题

技术研发

1. 苯酐精馏残渣综合利用及高值化利用技术,企业技术研发,20万,主持,结题

期刊论文

1. Zhang, Z. W., Wang, Z.*, Wang, X. R.*, etc. Synthesis of Mimicking Plant Cell Wall-like Anti-Swelling Hydrogels Based on a "Bottom-Up" Strategy and Their Application in Osmotic Energy Harvesting. Advanced Functional Materials, 2025, 2502946.

2. Zhao, Y., Wang, Z.*, Lyu, G. J.*, etc. Construction of lignin-assisted nitrogen defective engineering graphitic carbon nitride for HMF selective conversion to maleic acid through photo-thermal processes. Advanced Functional Materials, 2025, 2422264.

3. Sun, P. L., Wang, Z.*, Lyu, G. J.* etc. Refining microcrystalline cellulose with 3D hydrangea like CuCeO2@LDO for simultaneous production of lactic acid and formic acid via photo-thermal catalysis. Chemical Engineering Journal, 2025, 512, 162318.

4. Zhao, X.R., Lyu*, G. J., Wang, Z.*, etc. Magnetically recyclable vanadium substituted phosphotungstic acid in deep eutectic solvent for effective wheat straw fractionation. Green Chemistry, 2025, 382.

5. Meng, F. Y., Wang, Z.*, etc. Ca-Al-LDHs@SnS2-C Promote selective isomerization of glucose-to-fructose via photo-thermal catalysis in water under mild conditions. Colloids and Surfaces A. 2025, 724:137440.

6. Zhang, R. R., Lyu*, G. J., Wang, Z.*, etc. Synergistic integration of redox-active nanoparticles and hierarchical porosity for high-performance osmotic energy harvesting in cellulose-based membranes. Chemical Engineering Journal, 2025, 520, 165851.

7. Zhang, R. R., Wang, Z.*, Lyu, G. J.*, etc.  Construction of cellulose 3D network composite membrane supported by hydroxylated boron nitride with high surface charge density to achieve high-efficiency osmotic energy collection. Chemical Engineering Journal, 2024, 500, 157000.

8. Yang, S. C., Wang, Z.*, etc. Developing of CuxSnSO@GO aerogels used as highly efficient catalysts for cellulose transform to lactic acid under the synergy of Cu-Sn thermo-catalysis and photo-catalysis processes. Chemical Engineering Journal, 2023, 474, 145716.

9. Li, P. P., Wang, Z.*, etc. Structural regulatory mechanism of phosphotungstate acid decorated graphene oxide quantum dots-chitosan aerogel and its application in ciprofloxacin degradation. International Journal of Biological Macromolecules, 2023, 474(242), 125137.

10. Zhang, Y. H., Yang, S. C., Wang, Z.*, etc. High selective conversion of fructose to lactic acid by photocatalytic reforming of BiOBr/Znx@SnO2-n in alkaline condition. Journal of Catalysis, 2022, 413, 843-857.

11. Qin, H. J., Wang, Z*, etc. High efficiency degradation of 2,4-dichlorophenol using Cu2S/Cu2O decorated nanoscale zerovalent iron via adsorption and photocatalytic performances. Journal of Cleaner Production, 2022, 378, 134587.

12. Liu, T. T., Wang, Z.*, etc. Adsorption-photocatalysis performance of polyaniline/dicarboxyl acid cellulose@graphene oxide for dye removal. International Journal of Biological Macromolecules, 2021, 182(1), 492-501.

13. Wang, Z.*, Chen, G.H., etc. Performance of L-Cu&Mn-nZVI@B nanomaterial on nitrate selective reduction under UV irradiation and persulfate activation in the presence of oxalic acid. Journal of Hazardous Materials, 2020, 401, 123378.

14. Wang, Z.*, Chen, G. H., etc. Removal of hexavalent chromium by bentonite supported organosolv lignin-stabilized zero-valent iron nanoparticles from wastewater. Journal of Cleaner Production, 2020, 267, 122009.

15. Chi, Z. X., Wang, Z.*, etc. The innovative application of organosolv lignin for nanomaterial modification to boost its heavy metal detoxification performance in the aquatic environment. Chemical Engineering Journal, 2019, 382, 122789.

16. Wang, Z.*, Huang, W. X., etc. Preparation of cellulose-base amphoteric flocculent and its application in the treatment of wastewater. Carbohydrate Polymers, 2019, 215, 179-188.

17. Wang, Z.*, Yao, M. J., etc. Influence of reaction media on synthesis of dialdehyde cellulose/GO composites and their adsorption performances on heavy metals. Carbohydrate Polymers, 2019, 232, 115781.

18. Yao, M. J., Wang, Z.*, etc. Preparation of dialdehyde cellulose grafted graphene oxide composite and its adsorption behavior for heavy metals from aqueous solution. Carbohydrate Polymers, 2019, 212, 345-351.

19. Chi, Z. X., Wang, Z.*, etc. Preparation of organosolv lignin-stabilized nano zero-valent iron and its application as granular electrode in the tertiary treatment of pulp and paper wastewater. Chemical Engineering Journal, 2018, 331(1), 317-325.

Wang, Z.*, Huang, W. X., etc. Preparation of quaternary amine-grafted organosolv lignin biosorbent and its application in the treatment of hexavalent chromium polluted water. International Journal of Biological Macromolecules, 2018, 126, 1014-1022.

本科生课程

1. 《水污染控制工程》(64学时)

2. 《清洁生产概论》 (32学时)

指导研究生

1. 2024级硕士:李海鹏

2. 2023级硕士:张卓文,徐泓毅

3. 2022级硕士:孙平立,赵悦,孟凡瑶

4. 2021级硕士:李良玉

5. 2020级硕士:杨少聪,李萍萍

6. 2019级硕士:张宇航,秦鸿

7. 2018级硕士:刘甜甜

8. 2017级硕士:姚明君,陈光辉

9. 2016级硕士:黄文秀

2015级硕士:迟泽旭

……