导师简介:张鹏

文章来源: 发布时间:2025-11-18浏览次数:

 

基本信息

姓名:张鹏  

职称:教授

电子邮箱:pzhang@xtu.edu.cn

办公室:环境与资源学院B429

个人简介:

张鹏,男,毕业于重庆大学环境科学与工程专业,工学博士,湘潭大学教授,博士生导师,湖南省普通高校青年骨干教师。曾获得重庆市优秀博士学位论文,上海同济高廷耀环保科技发展基金会“青年博士生杰出人才奖学金”。主持国家自然科学基金、湖南省自然科学基金、湖南省教育厅科研项目和湖南省环保科研课题等多项课题。以第一/通讯作者在《Trends in Biotechnology》《Applied and Environmental Microbiology》《Water Research》等国内外高水平期刊发表论文30余篇,授权发明专利2项。任《Frontiers in Microbiology》编委,《iMeta》青年编委,以及《Water Research》等20余个期刊审稿人。指导本科生获批湖南省自然科学基金青年学生基础研究项目、国家级和省级大学生创新训练项目并将成果发表在SCI期刊;指导的研究生获评各类奖学金和优秀硕士学位论文,并受邀在全国环境博士生学术会议和全国研究生环境论坛上作口头报告。

研究方向:

污水生物处理与资源回收;废物生物炼化

科研项目:

[1]国家自然科学基金面上项目:短程硝化驱动藻菌体系藻青素合成与氮去除机制,在研,主持

[2]国家自然科学基金青年基金项目:生物膜中纳米TiO2高亲和胞外蛋白的解析及结合机制,结题,主持

[3]湖南省教育厅重点项目:阿莫西林降解-藻青素合成的微藻群落构建及代谢机理,在研,主持

[4]湖南省生态环境厅项目:基于NO3-策略的污水处理厂藻酸盐合成强化技术研究,结题,主持

[5]湖南省自然科学基金面上项目:纳米TiO2诱导生物膜形成的机制及生物膜控制方法研究,结题,主持

[6]湖南省自然科学基金青年基金项目:胞外蛋白环对纳米TiO2聚集和铅镉吸收的影响,结题,主持

[7]湖南省教育厅优秀青年项目:基于c-di-GMP调控促进生物膜胞外多糖合成及强化重金属吸附,结题,主持


科研成果

发表论文:

代表性论文:

[1]Wen M (本科生), Deng C (本科生), Lei J (本科生), Yang X (本科生), Li J (本科生), Al-Dhabi N A, Wen S*, Tang W, Feng B, Zhang P*. Amoxicillin effects on pollutant removal, cyanophycin synthesis, and the proliferation of antibiotic resistance genes (ARGs) in the algal-bacterial biofilm. Journal of Hazardous Materials, 2025, 500. 140363.

[2]Liu H, Zhou Z, Long C, Qing T, Feng B, Zhang P*, Chen Y-P. Light/dark synergy enhances cyanophycin accumulation in algal-bacterial consortia: Boosted strategy for nitrogen recovery from wastewater. Bioresource Technology. 2025. 425. 132309.

[3]Chen D, Li J, Zhou Z, Long C, Qing T, Feng B, Zhang P*. Sequential extraction of cyanophycin granule polypeptide and lipids from algal-bacterial consortia: simultaneous recovery of biopolymer and fat acids. International Journal of Biological Macromolecules. 2025. 323. 147048.

[4]Jiang H, Lin H, Al-Dhabi N A, Liu H, Qing T, Feng B, Tang W, Zhang P*. Sustainable lipids production in algal-bacterial consortia under low light intensity: Regulation of light–dark on fatty acid composition. Chemical Engineering Journal. 2025, 505. 158987.

[5]Xiong C, Zhang P*, Zhu Y, Gao X, Wang Z, Chen X, Zhang P*. Sewage tertiary treatment: Bacterial-algal symbiosis promotes nutrient removal and biofilm stabilization. Algal Research. 2025. 90. 104188.

[6]Liu H, Al-Dhabi N A, Jiang H, Liu B, Qing T, Feng B, Ma T, Tang W, Zhang P*. Toward nitrogen recovery: Co-cultivation of microalgae and bacteria enhances the production of high-value nitrogen-rich cyanophycin. Water Research. 2024. 256. 121624.

[7]Zou K, Liu H, Feng B, Qing T, Zhang P*. Recovery of cyanophycin granule polypeptide from activated sludge: carbon source dependence and aggregation induced luminescence characteristics. Frontiers of Environmental Science & Engineering. 2024. 2.16.

[8]Tao X (本科生), Zou K (本科生), Yuan M (本科生), Wen Y (本科生), Liu B (本科生), Qing T, Feng B, Zhang P*. Beyond denitrification: Alginate production by mucoid Pseudomonas aeruginosa using wastewater nitrate as electron acceptor. Journal of Environmental Chemical Engineering. 2024. 12(5). 113679.

[9]Zeng J., Chen D, Zhu J, Long C, Qing T, Feng B, Zhang P*. Phosphate recovery using activated sludge cyanophycin: Adsorption mechanism and utilization as nitrogen-phosphorus fertilizer. Chemical Engineering Journal, 2023, 476. 146607.

[10]Wang J, Liu H, Peng M-W, Qing T, Feng B, Zhang P*. Amoxicillin degradation and high-value extracellular polymer recovery by algal-bacterial symbiosis systems. Journal of Hazardous Materials, 2023, 460. 132344.

[11]Zou K, Huang Y, Feng B, Qing T, Zhang P*, Chen Y-P. Cyanophycin granule polypeptide: A neglected high value-added biopolymer, synthesized in activated sludge on a large-scale. Applied and Environmental Microbiology. 2022. 88(14). e00742-22.

[12]Zhu J, Wang J, Chen YP, Qing T, Zhang P*, Feng B. Quantitative proteomics and phosphoproteomics elucidate the molecular mechanism of nanostructured TiO2-stimulated biofilm formation. Journal of Hazardous Materials. 2022. 432. 128709.

[13]Zhang P, Zou K, Yuan L, Liu J, Liu B*, Qing T, Feng B*. A biomass resource strategy for alginate-polyvinyl alcohol double network hydrogels and their adsorption to heavy metals. Separation and Purification Technology. 2022. 301. 122050.

[14] Zhang P, Yuan L, Zeng J, Zou K, Liu B, Qing T, Feng B. Alginate production of Pseudomonas strains and its application in preparation of alginate-biomass hydrogel for heavy metal adsorption. International Journal of Biological Macromolecules. 2022. 222. 1511-1521.

[15] Huang Y, Zou K, Qing T, Feng B, Zhang P*. Metagenomics and metatranscriptomics analyses of antibiotic synthesis in activated sludge. Environmental Research. 2022. 213. 113741.

[16] Zhang P, Xu X-Y, Zhang X-L, Zou K, Liu B, Qing T, Feng B*. Nanoparticles-EPS corona increases the accumulation of heavy metals and biotoxicity of nanoparticles. Journal of Hazardous Materials. 2021. 409. 124526.

[17] Zhang P, Chen Y-P*, Qiu J-H, Dai Y-Z, Feng B*. Imaging the microprocesses in biofilm matrices. Trends in Biotechnology. 2019. 37(2). 214-226.

[18] Zhang P, Feng B, Chen Y-P*, Dai Y-Z*, Guo J-S. In situ characterizations for EPS-involved microprocesses in biological wastewater treatment systems. Critical Reviews in Environmental Science and Technology. 2019. 49(11). 917-946.

[19] Zhang Peng*, Zhu J, Xu X-Y, Qing T, Dai Y-Z, Feng B*. Identification and function of extracellular protein in wastewater treatment using proteomic approaches: A minireview. Journal of Environmental Management. 2019. 233. 24-29.

[20] Zhang P, Xu X-Y, Chen Y-P, Xiao M-Q, Feng B, Tian K-X, Chen Y-H, Dai Y-Z*. Protein corona between nanoparticles and bacterial proteins in activated sludge: Characterization and effect on nanoparticle aggregation. Bioresource Technology. 2018. 250. 10-16.

[21] Zhang P, Guo J-S, Yan P, Chen Y-P*, Wang W, Dai Y-Z, Fang F, Wang G-X, Shen Y. Dynamic dispersal of surface layer biofilm induced by nanosized TiO2 based on surface plasmon resonance and waveguide. Applied and Environmental Microbiology. 2018. 84(9). e00047-18.

 

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