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精细化学品智能设计、合成与污染控制技术科研团队

精细化学品智能设计、合成与污染控制技术科研团队


团队名称:精细化学品智能设计、合成与污染控制技术科研团队

团队成员

1976-),博士,教授,博士生导师

武文洁1963- 硕士,教授,硕士生导师

1986-),博士,讲师,硕士生导师

闫方友(1985-),博士,副教授,硕士生导师

成功(1989-),博士,讲师博士生协导

研究方向:以精细化学品智能设计、合成天然产物提取、材料构效关系计算、固废资源化利用为优势和特色,应用化学合成技术、高效吸附技术、分子膜阻蒸发技术、污染控制技术、现代分离科学与技术,开展资源综合利用所涉及的科学问题与关键技术研究,推动我国环境资源循环综合利用。主要研究方向如下:

1. 精细化学品智能设计、合成及应用技术

2. 界面分子膜制备及阻蒸发应用技术

3. 高效吸附材料的与应用技术

4. 天然产物提取技术

5. 固废的无害化处理技术

6. 分子智能设计与材料构效关系

7. 化工过程人工智能

研究生招生:可招收化学工程与技术专业学术型博士/硕士研究生,化学工程专业型硕士研究生,化学工程领域工程硕士研究生。

主要研究成果:

1. 2015-2020代表性论文、著作

1) Fangming Yang, Yan Wu*, Xiting FangLijuan Ma. Experimental and theoretical study on the behaviour of a pickling solution: The role of ferrous ionsJournal of Cleaner Production, 2020, 243. (SCIIF7.28)

2) Wang A , Peng X , Shi N , Yan Wu*. Study on the preparation of the hierarchical porous CX-TiO 2 composites and their selective degradation of PHE solubilized in soil washing eluent[J]. Chemosphere, 2020260.SCIIF=5.778

3) Kairu Xue, Chenggong Ju, Mao Yang, Na Li, Yuzhou Peng, Xiao Peng, Yan Wu*. Non-sintered dredged sediments artificial cobblestones: Preparation, structure and properties[J]. Construction and Building Materials, 2020, 257:119560.(SCI IF4.419)

4) Mao Yang, Chenggong Ju, Kairu Xue, Yuzhou Peng, Hong Han, Qianqian Wan, Xiao Peng, Yan Wu*. Environmental-friendly Non-sintered Permeable Bricks: Preparation from Wrap-shell Lightweight Aggregates of Dredged Sediments and Its Performance, 2020. (SCIIF4.419)

5) Lingling PangYan Wu*Yanfang PanZhaojun BanLi Li**Xihong Li. Insights into exogenous melatonin associated with phenylalanine metabolism in postharvest strawberryPostharvest Biology and Technology2020168.SCIIF 4.303

6) Hongmei Sun, Chenggong Ju, Yiwei Zhao, Chenyang Wang, Xiao Peng, Yan Wu*. Preparation of SiO2@ZIF-67/CNTs and Research on Its Adsorption Performance at Low-Temperature. Colloids and Surfaces APhysicochemical and Engineering Aspects2020,603.SCIIF 3.99

7) Chenggong Ju, Xinyue Li, Yang Guang, Chencheng Yuan, Sergey Semin, Yaqing Feng*, Theo Rasing, Jialiang Xu*. Polymorph Dependent Linear and Nonlinear Optical Properties of Naphthalenyl Functionalized Fluorenones. Dyes and Pigments, 2019, 166: 272-282. (SCI, IF 4.61)

8) Chenggong Ju, Yongzhu Zhou, Sergey Semin, Guang Yang, Paul Tinnemans, Yulong Duan, Yaqing Feng*, Theo Rasing, Jialiang Xu*. Solvent dependent linear and nonlinear optical properties of triphenylamine unit incorporated difluoroboron β-diketonate complexes. Dyes and Pigments, 2019, 162: 776-785. (SCI, IF 4.61)

9) Yan Wu*, Fangming Yang, Xiting Fang. The stability performances of epoxy resin-based monolayers onresisting disruption of temperature and windColloids and Surfaces A: Physicochemical, 2015, 391: 85-89. (SCIIF 2.832)

10) Yan Wu*, Yin Liu, Jiuchun Han & Wenjiang Wang. Study on Convective Drying Characteristics of Dredged Sludge from Dian Lake, Separation Science and Technology, 201550:11, 1731-1739. (SCIIF 1.171)

11) Yulong Duan#, Chenggong Ju#, Guang Yang, Eduard Fron, Eduardo Coutino-Gonzalez, Sergey Semin, Chencheng Fan, R.S. Balok, Jonathan Cremers, Paul Tinnemans, Yaqing Feng*, Yuliang Li, Johan Hofkens, Alan E. Rowan, Theo Rasing, Jialiang Xu*. Aggregation Induced Enhancement of Linear and Nonlinear Optical Emission from a Hexaphenylene Derivative. Advanced Functional Matererials, 2016, 26(48): 8968-8977. (SCI, IF 16.83)

12) Shuying Zhang; Qingzhu Jia; Fangyou Yan*; Shuqian Xia*; Qiang Wang; Evaluating the properties of ionic liquid at variable temperatures and pressures by quantitative structure–property relationship (QSPR), Chemical Engineering Science, 2021, 231: 116326. (SCI, IF 3.871)

13) Fangyou Yan, Yajuan Shi, Ying Wang, Qingzhu Jia, Qiang Wang*, Shuqian Xia*. QSPR models for the properties of ionic liquids at variable temperatures based on norm descriptors, Chemical Engineering Science 2020, 217: 115540 (SCI, IF 3.871)

14) Fangyou Yan, Tingting Liu, Qingzhu Jia, Qiang Wang*. Multiple toxicity endpoint–structure relationships for substituted phenols and anilines, Science of the Total Environment 2019, 663: 560-567 SCIIF=6.551

15) Fangyou Yan, Tian Lan, Xue Yan, Qingzhu Jia, Qiang Wang*. Norm index-based QSTR model to predict the eco-toxicity of ionic liquids towards Leukemia rat cell line, Chemosphere 2019, 234: 116-122 SCIIF=5.778

16) Fangyou Yan, Wensi He, Qingzhu Jia, Shuqian Xia, and Qiang Wang*. Prediction of ionic liquids viscosity at variable temperatures and pressures, Chemical Engineering Science 2018, 184: 134-140 (SCI, IF 3.871)

17) Wensi He, Fangyou Yan*, Qing zhu Jia, Shuqian Xia, and Qiang Wang. QSAR models for describing the toxicological eects of ILs against Staphylococcus aureus based on norm indexes, Chemosphere 2018, 195: 831-838 SCIIF=5.778

18) Fangyou Yan, Wensi He, Qingzhu Jia, Shuqian Xia, and Qiang Wang*. QSAR models for describing the toxicological eects of ILs against Candida albicans based on norm indexes, Chemosphere 2018, 201: 417-424 SCIIF=5.778

19) Fangyou Yan, Hao Wu, Wei Li, Jinli Zhang*. Simultaneous optimization of heat-integrated water networks by a nonlinear program, Chemical Engineering Science 2016, 140: 76–89. (SCI, IF 3.871)

20) Fangyou Yan , Qiaoyan Shang, Shuqian Xia*, Qiang Wang*, and Peisheng Ma. Topological Study on the Toxicity of Ionic Liquids on Vibrio fischeri by the Quantitative Structure−Activity Relationship Method, Journal of Hazardous Materials 2015, 286, 410-415. (SCI, IF 9.038)

21) Fangyou Yan, Ze Yan, Wei Li, Jinli Zhang*. Inflection Point Method (IPM): A New Method for Single-Contaminant Industrial Water Networks Design, Chemical Engineering Science 2015, 126: 529– 542. (SCI, IF 3.871)

22) Jisi Zhao, Wenjie Wu*Zhangyong Hong*, Multimerization increases tumor enrichment of peptide-photosensitizer conjugates Molecules2019,244,817-34 (SCI, IF 3.3)

23) Qingle chen,wenjie Wu*, zhangyong Hong*, In vitro and in vivo evaluation of improved EGFR targeting peptide-conjugated phthalocyanine photosensitizers for tumor photodynamic therapy.   Chinese Chemica Letters, 29(2018),1171-8 (SCI, IF 4.632)


2发明专利

[1] 吴燕等,一种光催化剂复合材料RHC-CS/La3+-TiO2的制备方法,ZL201710715910.1(已授权)

[2] 吴燕等,一种高吸湿性粉体喷射式消雾车,ZL201710666082.7(已授权)

[3] 吴燕等,一种富集降解苯系物有机废水的复合材料的制备方法,ZL201610832663.9(已授权)

[4] 吴燕等,一种利用疏浚底泥骨料制备免烧砖的方法,ZL201510420943.4(已授权)

[5] 吴燕等,一种疏浚底泥免烧陶粒的裹壳方法,ZL201510387395.X(已授权)

[6] 吴燕等,一种掺加疏浚底泥制备免烧陶粒的方法,ZL201510374608.5(已授权)

[7] 吴燕等,一种环保疏浚底泥一体化机械深度干化系,ZL201420294523.7(已授权)

[8] 吴燕等,一种环保疏浚余水/尾水净化人工湿地系统,ZL201410272676.6(已授权)

[9] 吴燕等,一种环保疏浚底泥原位快速脱水系统,ZL201310129451.0(已授权)

[10] 吴燕等,一种抑制液体危化品有毒气体生成与传输的微乳液及其制备方法,ZL202220134127.9(已授权)

[11] 吴燕等,一种绞吸式淤泥脱水疏浚船,ZL202220084783.2(已授权)

[12] 吴燕等,一种车载可移动下水道清淤装置,ZL202220084742.3(已授权)

[13] 吴燕等,一种非均相水分蒸发抑制剂的制备方法,ZL200710056672.4(已授权)

[14] 吴燕等,一种复合水分蒸发抑制剂的制备方法,ZL200710056671.X(已授权)

[15] 吴燕等,一种超细硅酸铝粉体沉淀包膜表面修饰方法,ZL200710056670.5(已授权)

主持科研项目

1. 国家863计划军口部分项目,编号:DQS83671282011-201676万元

2. 十三五预研项目,编号3050903052019-202092

3. 国家自然科学基金,编号:2180612224

4. 国家自然科学基金,编号: 2180816726

5. 国家自然科学基金,编号:2097613133

6. 国家自然科学基金,编号:U116210450

7. 国家自然科学基金,编号:2130613725

8. 国家自然科学基金,编号:2167620363

9. 军工项目,编号19000300412019-2021669

10. 军工项目,编号210030052021-202282

11. 军工项目,编号210030042020-202148

12. 军工项目,编号19000300402019-202030

13. 军工项目,编号19000300202019-202030

14. 军工项目,编号18000300202017-201972

15. 军工项目,编号17000300392017-201924

16. 军工项目,编号15000300202015-201696

17. 横向项目:环保疏浚底泥深度脱水技术的研究与开发,2013-2016180

18. 横向项目:一般工业固废制备免烧砖技术服务2020-202160

19. 横向项目:疏浚土制备免烧砖与绿化土产业化技术咨询2018-202050

20. 横向项目:有机硅表面活性剂研制,2015-2021100

21. 横向项目:环保疏浚底泥板框脱水工艺技术研究,2017-2020116

22. 横向项目:阳离子聚丙烯酰胺合成技术研究,2012-201465

23. 横向项目:太湖疏浚底泥制备免烧砖的技术可行性研究,2015-201620

24. 国家自然科学基金,编号211070802011-201425

25. 天津市自然科学基金,编号:20JCQNJC000906

26. 天津市科委基金,编号09JCYBJC061002009-201110

27. 横向项目:环保疏浚淤泥絮凝脱水技术研究,2010-201235