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天津科技大學化工學院精細化學品智能設計與污染控制技術科研團隊2021年研究生招生
團隊名稱:精細化學品智能設計與污染控制技術科研團隊
團隊成員:
吳 燕 (1976-),博士,教授,博士生導師
武文潔(1963-), 碩士,教授,碩士生導師
彭 嘯 (1986-),博士,講師,碩士生導師
閆方友(1985-),博士,副教授,碩士生導師。
琚成功(1989-),博士,講師
研究方向:以精細化學品制備、天然產(chǎn)物提取、材料構(gòu)效關系計算、固廢資源化利用為優(yōu)勢和特色,應用化學合成技術、高效吸附技術、分子膜阻蒸發(fā)技術、污染控制技術、現(xiàn)代分離科學與技術,開展資源綜合利用所涉及的科學問題與關鍵技術研究,推動我國環(huán)境資源循環(huán)綜合利用。
主要研究方向如下:
1. 精細化學品制備及應用技術
2. 界面分子膜制備及阻蒸發(fā)應用技術
3. 高效吸附材料的研發(fā)與應用技術
4. 天然產(chǎn)物提取技術
5. 固廢的無害化處理技術
6. 分子智能設計與材料構(gòu)效關系
7. 化工過程人工智能
研究生招生:可招收化學工程與技術專業(yè)學術型博士/碩士研究生,化學工程專業(yè)型碩士研究生,化學工程領域工程碩士研究生。要求具備化工相關專業(yè)本科背景,研究生初試科目為政治、英語、數(shù)學、專業(yè)課。英語六級通過者優(yōu)先。
研究生待遇:碩士研究生每月發(fā)放600-1000元助學金。學校設國家獎學金每年2萬元、學術之星獎學金2000元、學業(yè)獎學金1.2萬、新生獎學金8000元等多種獎學金及助學金。
聯(lián)系人:
彭老師 pengxiao@tust.edu.cn
琚老師 juchenggong@tust.edu.cn
電話 022 60601457
主要研究成果:
1. 2015-2020代表性論文、著作
1)Fangming Yang, Yan Wu*, Xiting Fang,Lijuan Ma. Experimental and theoretical study on the behaviour of a pickling solution: The role of ferrous ions,Journal of Cleaner Production, 2020, 243. (SCI,IF7.28)
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, 2020,260.(SCI,IF=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. (SCI,IF4.419)
5)Lingling Pang,Yan Wu*,Yanfang Pan,Zhaojun Ban,Li Li**,Xihong Li. Insights into exogenous melatonin associated with phenylalanine metabolism in postharvest strawberry,Postharvest Biology and Technology,2020,168.(SCI,IF 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 A:Physicochemical and Engineering Aspects,2020,603.(SCI,IF 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 wind,Colloids and Surfaces A: Physicochemical, 2015, 391: 85-89. (SCI,IF 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, 2015,50:11, 1731-1739. (SCI,IF 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 (SCI,IF=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 (SCI,IF=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 effects of ILs against Staphylococcus aureus based on norm indexes, Chemosphere 2018, 195: 831-838 (SCI,IF=5.778)
18)Fangyou Yan, Wensi He, Qingzhu Jia, Shuqian Xia, and Qiang Wang*. QSAR models for describing the toxicological effects of ILs against Candida albicans based on norm indexes, Chemosphere 2018, 201: 417-424 (SCI,IF=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, Molecules,2019,24(4),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. 發(fā)明專利
[1]吳燕等,一種光催化劑復合材料RHC-CS/La3+-TiO2的制備方法,ZL201710715910.1(已授權(quán))
[2]吳燕等,一種高吸濕性粉體噴射式消霧車,ZL201710666082.7(已授權(quán))
[3]吳燕等,一種富集降解苯系物有機廢水的復合材料的制備方法,ZL201610832663.9(已授權(quán))
[4]吳燕等,一種利用疏浚底泥骨料制備免燒磚的方法,ZL201510420943.4(已授權(quán))
[5]吳燕等,一種疏浚底泥免燒陶粒的裹殼方法,ZL201510387395.X(已授權(quán))
[6]吳燕等,一種摻加疏浚底泥制備免燒陶粒的方法,ZL201510374608.5(已授權(quán))
[7]吳燕等,一種環(huán)保疏浚底泥一體化機械深度干化系,ZL201420294523.7(已授權(quán))
[8]吳燕等,一種環(huán)保疏浚余水/尾水凈化人工濕地系統(tǒng),ZL201410272676.6(已授權(quán))
[9]吳燕等,一種環(huán)保疏浚底泥原位快速脫水系統(tǒng),ZL201310129451.0(已授權(quán))
[10]吳燕等,一種抑制液體;酚卸練怏w生成與傳輸?shù)奈⑷橐杭捌渲苽浞椒,ZL201110134127.9(已授權(quán))
[11]吳燕等,一種絞吸式淤泥脫水疏浚船,ZL201110084783.2(已授權(quán))
[12]吳燕等,一種車載可移動下水道清淤裝置,ZL201110084742.3(已授權(quán))
[13]吳燕等,一種非均相水分蒸發(fā)抑制劑的制備方法,ZL200710056672.4(已授權(quán))
[14]吳燕等,一種復合水分蒸發(fā)抑制劑的制備方法,ZL200710056671.X(已授權(quán))
[15]吳燕等,一種超細硅酸鋁粉體沉淀包膜表面修飾方法,ZL200710056670.5(已授權(quán))
3. 主持科研項目
1.國家863計劃軍口部分項目,編號:DQS8367128,2011-2016,76萬元
2.十三五預研項目,編號:305090305,2019-2020,92萬
3.國家自然科學基金,編號:21806122,24萬
4.國家自然科學基金,編號: 21808167,26
5.國家自然科學基金,編號:20976131,33萬
6.國家自然科學基金,編號:U1162104,50萬
7.國家自然科學基金,編號:21306137,25萬
8.國家自然科學基金,編號:21676203,63萬
9.天津市自然科學基金,編號:20JCQNJC00090,6萬
10.軍工項目,編號:1900030041,2019-2021,669萬
11.軍工項目,編號:21003005,2021-2022,82萬
12.軍工項目,編號:21003004,2020-2021,48萬
13.軍工項目,編號:1900030040,2019-2020,30萬
14.軍工項目,編號:1900030020,2019-2020,30萬
15.軍工項目,編號:1800030020,2017-2019,72萬
16.軍工項目,編號:1700030039,2017-2019,24萬
17.軍工項目,編號:1500030020,2015-2016,96萬
18.橫向項目:環(huán)保疏浚底泥深度脫水技術的研究與開發(fā),2013-2016,180萬
19.橫向項目:一般工業(yè)固廢制備免燒磚技術服務,2020-2021,60萬
20.橫向項目:疏浚土制備免燒磚與綠化土產(chǎn)業(yè)化技術咨詢,2018-2020,50萬
21.橫向項目:有機硅表面活性劑研制,2015-2021,100萬
22.橫向項目:環(huán)保疏浚底泥板框脫水工藝技術研究,2017-2020,116萬
23.橫向項目:陽離子聚丙烯酰胺合成技術研究,2012-2014,65萬
24.橫向項目:太湖疏浚底泥制備免燒磚的技術可行性研究,2015-2016,20萬
25.國家自然科學基金,編號21107080,2011-2014,25萬
26.天津市科委基金,編號09JCYBJC06100,2009-2011,10萬
27.橫向項目:環(huán)保疏浚淤泥絮凝脫水技術研究,2010-2012,35萬
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