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長(zhǎng)沙理工大學(xué)水利海洋工程學(xué)院研究生導(dǎo)師基本信息表

1、個(gè)人基本信息:

    名:張偉

    別:

          

出生年月:1989/10

技術(shù)職稱:講師

畢業(yè)院校武漢大學(xué)

學(xué)歷(學(xué)位):研究生/博士

所在學(xué)科:市政工程/土木水利

2、學(xué)習(xí)和工作經(jīng)歷:

長(zhǎng)沙理工大學(xué)

2020/02?至今

給排水科學(xué)與工程系 教師

武漢大學(xué)

2016/09?2019/12

市政工程 博士

湖南科技大學(xué)

2013/09?2016/06

2009/09?2013/06

土木工程 碩士

給水排水工程 學(xué)士

3、目前研究領(lǐng)域:

[1]基于生物質(zhì)廢棄物的環(huán)境功能材料開發(fā)與應(yīng)用研究

[2]外源電子供體驅(qū)動(dòng)生物反硝化研究

[3]底泥原位修復(fù)及其資源化利用研究

4、主持在研或已完成主要課題:

[1]湖南省教育廳科學(xué)研究項(xiàng)目?jī)?yōu)秀青年項(xiàng)目,底泥基鈍化材料添加對(duì)湖泊底泥磷污染的影響研究(24B0300),2024/08-2026/08,主持

[2]湖南省湖泊生態(tài)修復(fù)與底泥資源化利用重點(diǎn)開放實(shí)驗(yàn)室開放基金項(xiàng)目(2023zkhx524),底泥基鎖磷覆蓋材料體系的構(gòu)建及其底泥修復(fù)應(yīng)用,2023/09-2025/08,主持

[3]湖南省自然科學(xué)基金青年項(xiàng)目,多重刺激響應(yīng)型凝膠微球的構(gòu)建及其修復(fù)重金屬-有機(jī)復(fù)合污染底泥的研究(2021JJ40606),2021/01-2023/12,主持

[4]湖南省教育廳科學(xué)研究項(xiàng)目一般項(xiàng)目,環(huán)境刺激響應(yīng)型微凝膠球的構(gòu)建及其在底泥污染物釋放與修復(fù)的研究(20C0024),2020/09-2022/12,主持

[5]湖南省環(huán)境保護(hù)河湖疏浚污染控制工程技術(shù)中心開放基金項(xiàng)目,疏浚尾水重金屬-有機(jī)復(fù)合污染同步吸附與協(xié)同去除機(jī)理研究(EPD202004),2020/08-2021/12,主持

[6]長(zhǎng)沙理工大學(xué)引進(jìn)博士科研啟動(dòng)基金項(xiàng)目,智能型水凝膠固定生物炭強(qiáng)化修復(fù)底泥重金屬污染的行為機(jī)制及其對(duì)底泥微環(huán)境的影響研究,2020/02-2023/02,主持

[7]長(zhǎng)沙理工大學(xué)水利工程學(xué)院科研助推計(jì)劃項(xiàng)目,基于海藻酸鈉基納米復(fù)合凝膠的重金屬吸附特性及其溶脹行為協(xié)同調(diào)控研究,2020/05-2021/12,主持

[8]國(guó)家重點(diǎn)研發(fā)計(jì)劃項(xiàng)目,富里酸強(qiáng)化土著菌修復(fù)黑臭水體及其淤泥質(zhì)資源化研究與應(yīng)用(2022YFE0105600),2022/06-2025/05,項(xiàng)目骨干

[9]國(guó)家自然科學(xué)基金面上項(xiàng)目,基于群體感應(yīng)的自然光誘導(dǎo)藻-菌顆粒污泥穩(wěn)態(tài)運(yùn)行機(jī)制及調(diào)控策略(51878517),2019/01-2022/12,參與

[10]國(guó)家自然科學(xué)基金面上項(xiàng)目,反硝化除磷污泥顆粒化穩(wěn)態(tài)機(jī)制及功能菌群特性研究(51378400),2014.01-2017.12,參與(新增)

[11]國(guó)家自然科學(xué)基金面上項(xiàng)目,錳礦區(qū)土-水界面重金屬污染流遷移轉(zhuǎn)化機(jī)理及其過(guò)程數(shù)學(xué)模型研究(41472328),2015/01-2018/12,參與

[12]國(guó)家自然科學(xué)基金青年項(xiàng)目,DON熒光組分與DON含量、N-DBPs的相關(guān)性分析及優(yōu)化混凝過(guò)程研究(51408215),2015/01-2017/12,參與

5、主要科研成果(發(fā)表學(xué)術(shù)論文、出版著作、授權(quán)發(fā)明專利):

累計(jì)發(fā)表論文60余篇(ESI高被引論文3篇,h指數(shù)30,引用3000余次),申請(qǐng)專利10余項(xiàng)。部分成果如下:

Researchgate: https://www.researchgate.net/profile/Wei-Zhang-59

Google Scholar: https://scholar.google.com/citations?user=hy7RNscAAAAJ&hl=zh-CN

[1]Chen Mengqi, Long Anlin, Zhang Wei*, Wang Ziyi, Xiao Xinxin, Gao Yang, Zhou Lean, Li Yifu, Wang Jingting, Sun Shiquan, Tang Meiyi, Peng Yazhou*, Wang Hongyu, 2025. Recent advances in alginate-based hydrogels for the adsorption–desorption of heavy metal ions from water: A review. Sep. Purif. Technol., 353, 128265. (SCI一區(qū))

[2]Chen Haolin, Pan Yiwei, Zhang Wei*, Long Anlin, Chen Mengqi, Xiao Xinxin, Wang Ziyi, Tang Meiyi, Peng Yazhou, Sun Shiquan, Zhang Huining, He Qiulai, 2024. Adsorption-desorption of copper(II) by temperature-sensitive nano-biochar@PNIPAM/alginate double-network composite hydrogel: Enhanced mechanisms and application potentials. Chem. Eng. J., 495, 153356. (SCI一區(qū))

[3]Zhang Wei*, Wu Yuanping, Chen Haolin, Gao Yang, Zhou Lean, Wan Junli, Li Yifu, Tang Meiyi, Peng Yazhou*, Wang Bin, Wang Hongyu, Sun Shiquan, 2024. Efficient phosphate removal from water by multi-engineered PVA/SA matrix double network hydrogels: Influencing factors and removal mechanism. Sep. Purif. Technol., 336, 126261. (SCI一區(qū))

[4]Chen Haolin, Tang Meiyi, He Liang, Xiao Xinxin, Yang Fei, He Qiulai, Sun Shiquan, Gao Yang, Zhou Lean, Li Yifu, Sun Julong, Zhang Wei*, 2024. Exploring the impact of fulvic acid on electrochemical hydrogen-driven autotrophic denitrification system: Performance, microbial characteristics and mechanism. Bioresource Technol., 412, 131432. (SCI一區(qū))

[5]Zhang Wei, Zhao, Yibo, Wang Jing, Gao Yang, Zhou Lean, Sun Shiquan, Tang Meiyi, Peng Yazhou, Guo Wenbing, Wang Hongyu*, 2024. Effect of nitrate concentration on anaerobic methane oxidation coupled to denitrification in membrane biofilm reactor after prolonged storage, Water Air Soil Poll., 235, 246. (SCI四區(qū))

[6]Xiao Xiang, Peng Yazhou*, Zhang Wei*, Yang Xiuzhen, Zhang Zhi, Ren Bozhi, Zhu Guocheng, Zhou Saijun, 2024, Current status and prospects of algal bloom early warning technologies: A Review. J. Environ. Manage., 349, 119510. (SCI二區(qū))

[7]Xiao Xiaozhen, Sun Shiquan*, Song Chuxuan, Jiang Yuhui, Jiang Qian, Zhou Lean, Gao Yang, Wan Junli, Zhang Wei*, 2024. Is it possible for fulvic acid modified dredged sediment biochar to adsorb tetracycline and result in a novel method of resource utilization? Waste Manage., 174, 487-495. (SCI二區(qū))

[8]Zhao Yuelong, Zhang Peng*, Zhang Wei*, Fan Yali, 2023. Study on Flocculation Behavior of Cr(VI) Using a Novel Chitosan Functionalized with Thiol Groups, Polymers, 15, 1117. (SCI三區(qū))

[9]Zhang Wei, Ou Ji, Tang Meiyi, He Qiulai, Long Anlin, Luo Shuangxue, Sun Shiquan*, Wan Junli, Gao Yang, Zhou Lean, Wang Bin, Wang Hongyu*, 2022. Physically-crosslinked activated CaCO3/polyaniline-polypyrrole-modified GO/alginate hydrogel sorbent with highly efficient removal of copper(II) from aqueous solution. Chem. Eng. J., 431, 133375. (SCI一區(qū))

[10]Zhang Wei, Ou Ji, Wang Bin, Wang Hongyu*, He Qiulai, Song Jianyang, Zhang Huining, Tang Meiyi, Zhou Lean, Gao Yang, Sun Shiquan*, 2021. Efficient heavy metal removal from water by alginate-based porous nanocomposite hydrogels: The enhanced removal mechanism and influencing factor insight. J. Hazard. Mater., 418, 126358. (SCI一區(qū))

[11]Wang Bin, Hu Xiaoling, Zhou Dao, Zhang Heng, Chen Rongfan, Guo Wenbin, Wang Hongyu*, Zhang Wei**, Hong Zhenzhen, Lyu Wanlin, 2021. Highly selective and sustainable clean-up of phosphate from aqueous phase by eco-friendly lanthanum cross-linked polyvinyl alcohol/alginate/palygorskite composite hydrogel beads. J. Clean. Prod., 298, 126878. (SCI一區(qū))

[12]Zhang Wei, Long Anlin, Ou Ji, Zeng Xin, Wang Jing, Wang Bin, Wang Hongyu*, He Qiulai, Tang Meiyi, Zhou Lean, Gao Yang, Sun Shiquan*, 2021. Enhanced removal of hexavalent chromium from aqueous solution by functional polymer-wrapped gamma-alumina composite adsorbent, Environmental Technology & Innovation, 24, 101954. (SCI二區(qū))

[13]Zhang Wei, Song Jianyang, He Qiulai, Wang Hongyu*, Lyu Wanlin, Feng Huijuan, Xiong Wenqi, Guo Wenbin, Wu Jing, Chen Ling*, 2020. Novel pectin based composite hydrogel derived from grapefruit peel for enhanced Cu(II) removal. J. Hazard. Mater., 384, 121445. (SCI一區(qū)) 2021-ESI Highly Cited Paper 

[14]Zhang Wei, Wang Hongyu*, Hu Xiaoling, Feng Huijuan, Xiong Wenqi, Guo Wenbin, Zhou Jinping, Mosa Ahmed, Peng Yazhou, 2019. Multicavity triethylenetetramine-chitosan/alginate composite beads for enhanced Cr(VI) removal. J. Clean. Prod., 231, 733-745. (SCI一區(qū))

[15]Zhang Wei, Deng Qian, He Qiulai, Song Jianyang, Zhang Shilu, Wang Hongyu*, Zhou Jinping, Zhang Huining, 2018. A facile synthesis of core-shell/bead-like poly(vinyl alcohol)/alginate@PAM with good adsorption capacity, high adaptability and stability towards Cu(II) removal. Chem. Eng. J., 351, 462-472. (SCI一區(qū))

[16]Zhang Wei, Zhang Shilu, Wang Jing, Wang Meng, He Qiulai, Song Jianyang, Wang Hongyu*, Zhou Jinping, 2018. Hybrid functionalized chitosan-Al2O3@SiO2 composite for enhanced Cr(VI) adsorption. Chemosphere, 203, 188-198. (SCI二區(qū))

[17]Wang Hongyu*, Zhang Wei, Ye Yaping, He Qiulai, Zhang Shilu, 2018. Isolation and characterization of Pseudoxanthomonas sp. strain YP1 capable of denitrifying phosphorus removal (DPR). Geomicrobiology Journal, 35, 537-543. (SCI四區(qū))

[18]張鵬*, 張偉, 廖為雄, 2018. 絮凝劑CTS-GSH的合成及其除鉻性能. 過(guò)程工程學(xué)報(bào), 18(2), 312-317. (CSCD)

[19]張鵬*, 張偉, 廖為雄, 朱國(guó)成, 丁文杰, 2017. 響應(yīng)面優(yōu)化制備CTS-GSH及其對(duì)鉻(VI)的去除研究. 環(huán)境工程, 35(3), 57-61. (CSCD)

[20]Zhang Peng*, Zhang Wei, Zhang Xue, Ren Bozhi, Ma Hongpu, Wang Zhenghua, 2014. Degradation of rhodamine B by ultrasound/fenton-like reagent. Asian Journal of Chemistry, 26(15), 4845-4848. (SCI四區(qū))

[21]Zhang Peng*, Zhang Wei, 2014. Preparation of polymeric phosphate aluminum-ferric chloride (PPAFC) and response surface methodology approach to optimize coagulation-flocculation process. Journal of Chemical and Pharmaceutical Research, 6(6), 906-911.(EI)

[22]Zhang Peng*, Zhang Wei, Zhu Guocheng, Ren Bozhi, Li Xuemei, Ma Hongpu, 2014. Preparation of polymeric phosphate aluminum-ferric chloride (PPAFC) and its application in humic acid removal. Journal of Chemical and Pharmaceutical Research, 6(5), 801-807.(EI)

[23]一種改性生物炭及其制備方法與應(yīng)用, 中國(guó), 申請(qǐng)?zhí)?/span>: 202310631221.8

[24]一種重金屬吸附劑及其制備方法與其再利用的方法, 中國(guó), 申請(qǐng)號(hào): 202310630972.8

[25]一種多糖復(fù)合水凝膠及其制備方法與應(yīng)用, 中國(guó), 申請(qǐng)號(hào): 202310631115.X

[26]一種海藻酸鈉/聚乙烯醇@聚丙烯酰胺核殼結(jié)構(gòu)凝膠球的制備方法及其應(yīng)用, 中國(guó), ZL201711436540.4.

[27]生物電催化耦合接觸氧化反硝化過(guò)濾一體化生物反應(yīng)器, 中國(guó), ZL201810392276.7.

[28]巰基化氧化石墨烯/聚乙烯醇大孔復(fù)合球吸附劑及其制備方法和應(yīng)用,中國(guó), ZL201610772031.8.

[29]一種聚乙烯醇/氨基硅烷化氧化石墨烯大孔復(fù)合球及其制備方法和應(yīng)用, 中國(guó), ZL201610772033.7.

[30]一種可調(diào)節(jié)溫度的混凝攪拌燒杯, 中國(guó), ZL201520506976.6.

[31] 紫外引發(fā)制備陽(yáng)離子聚丙烯酰胺的方法及應(yīng)用, 中國(guó), ZL201410763382.3.

[32] 一種陽(yáng)離子聚丙烯酰胺的制備方法及應(yīng)用, 中國(guó), ZL201410767113.4.

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