师资队伍
在职教师(按职称)
在职教师(按系别)
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张萌  (环境科学系)

基本信息

职称:副教授

职务:系支部书记

邮箱:zhangmeng@njfu.edu.cn

电话:

个人简介:

张萌,副教授,硕士生导师,主要从事环境污染过程与控制方面的教学和研究工作。主持国家自然科学基金2项,中国博士后基金1项,江苏省博士后科研资助计划1项,南京林业大学青年科技创新基金1项;参与国家重点研发计划课题、国家重点基础研究发展计划(973计划)课题等5项。在ES&T、ES-Nano、Carbon、EP等主流期刊发表学术论文20余篇。授权国家发明专利1项。参与编写国家林业和草原局普通高等教育“十三五”重点规划教材、江苏省高等教育重点教材1部。中国林学会高级会员。

学习与工作经历:

2016/09-至今           南京林业大学  生物与环境学院  环境科学系

2025/01-2026/01    英国伯明翰大学  地理地球与环境科学学院  访问学者

2011/09-2016/07    北京大学    环境地理学    博士(硕博连读)

2007/09-2011/07    武汉大学    环境科学       学士

研究兴趣:

1、有机污染物的环境界面过程和生物有效性

2、碳(纳米)材料的环境应用效应及风险

3、水土污染修复技术原理

主讲课程:

《水污染控制技术》、《水土污染控制新技术与案例》、《环境保护法律法规》、《环境规划与管理》、《空气污染学》等本科生课程;《环境与人类健康》公共选修课

科研项目:

1. 国家自然科学基金面上项目,碳纳米材料对土壤中持久性有机物微生物有效性的调控机理及其生态毒性研究 (42177387),2022-2025,主持

2. 国家自然科学基金青年项目,黑碳对湿地土壤中疏水性有机污染物吸附解吸和微生物可利用性的影响 (41701555),2018-2020,主持

3. 中国博士后科学基金,生物炭与共存溶解性有机质对土壤中有机污染物微生物有效性的影响 (2020M671507),2020-2022,主持

4. 江苏省博士后科研资助计划,碳纳米材料吸附协同微生物降解对土壤中持久性有机物的去除效应及机理研究 (2021K213B),2021-2023,主持

5. 南京林业大学青年科技创新基金,黑炭对湿地土壤中疏水性有机污染物的吸附解吸和微生物可利用性的影响 (CX2017022),2018-2020,主持

6. 国家自然科学基金面上项目,典型抗生素胁迫绿藻表达致毒-解毒双向效应的特征及耦合作用机制 (32171628),2022-2025,参与

7. 国家重点研发计划课题,海岸带小流域水污染防控与生态功能综合提升技术 (2017YFC0505803),2017-2020,参与

8. 国家重点基础研究发展计划(973计划)课题,土壤复合有机污染过程与生物有效性 (2014CB441104),2014-2018,参与

9. 国家自然科学基金面上项目,碳纳米颗粒的环境行为和效应研究 (41271461),2013-2016,参与

10. 国家自然科学基金面上项目,碳纳米管与有机污染物的相互作用机理研究 (40971246),2011-2012,参与

发布论文:

Zhang, M.*; Kang, Y. K.; Ran, J.; Song, J. C.; Wang, Z. Y.; Li, J. W.; Chen, L. Y. Combined effects of biochar and rhamnolipid on phenanthrene biodegradation in agricultural soil: bioavailability and microbial community dynamics. Agriculture 2025, 15: 1116.

Wang, Z. Y.; Li, J. W.; Kang, Y. K.; Ran, J.; Song, J. C.; Jiang, M. Q.; Li, W.; Zhang, M.* Effects of wheat straw-derived biochar on soil microbial communities under phenanthrene stress. Agriculture 2025, 15: 77.

Zhang, M.*; Duan, T. X.; Kang, Y. K.; Zhang, H. Y.; Li, W.; Wang, X. L.; Han, J. G. Impact mechanisms of various surfactants on the biodegradation of phenanthrene in soil: bioavailability and microbial community responses. Sci. Total Environ. 2024, 950: 175225. 

Zhang, M.; Chen, W. X.; Chuan, X. Y.; Guo, X. Y.; Shen, X. F.; Zhang, H. Y.; Wu, F.; Hu, J.; Wu, Z. P.; Wang, X. L.* Remediation of heavily PAHs-contaminated soil with high mineral content from a coking plant using surfactant-enhanced soil washing. Sci. Total Environ. 2024, 909: 168499.

Yu, X. F.; Yan, C. H.; Zhang, J. L.; He, J. L.; Zhang, M.; Guo, X. Y.; Wu, Z. P.; Liu, J. F.; Wang, X. L.* An O/N/S-rich porous Fe-based metal-organic framework (MOF) for gold recovery from the aqueous phase with excellent performance. Sci. Total Technol. 2024, 927: 172160.

Zhang, H. Y.; Zhang, M.; Zhang, H. L.; Shen X. F.; Lv, W. G.; Wang, X. L.; Zhang, J. Q.*; Guo, X. Y.* Bioaccumulation, transformation and toxicity of imidacloprid and dinotefuran in Eisenia fetida under single and binary exposure scenarios. Environ. Toxicol. Phar. 2024, 111, 104570.

Li, M. L.*; Li, Z.; Zhang, M.; Liu, Q. Efficient shrub modelling based on terrestrial laser scanning (TLS) point clouds. Int. J. Remote Sens. 2024, 45(4): 1148-1169.

Zhang, M.*; Luo, Y. Q.; Zhu, Y. T.; Zhang, H. Y.; Wang, X. L.; Li, W.; Li, P. P.; Han, J. G. Insights into the mechanisms underlying the biodegradation of phenanthrene in biochar-amended soil: from bioavailability to soil microbial communities. Biochar 2023, 5: 14. 

Li, Z.; Li, M. L.*; Zhang, M.* Three-dimensional modeling of shrubs based on LiDAR point clouds. ISPRS Ann. Photogramm. Remote Sens. Spatial Inf. Sci. 2023, X-1/W1-2023: 575-580.

Yan, C. H.; Yu, X. F.; Jia, W. Y.; He, J. L.; Hu, J.; Zhang, M.; Wang, J. L.; Tang, L.; Liu, J. F.; Wang, X. L.* Superior sorption capacity and one-step reduction of Au(III) by a novel chitosan-based electrospun fiber mat: A cheap and simple technique. Chem. Eng. J. 2023, 465: 143028. 

Li, W.*; Liu, K.; Min, Z. F.; Li, J. P.; Zhang, M.; Korshin, G. V.; Han, J. G. Transformation of macrolide antibiotics during chlorination process: Kinetics, degradation products, and comprehensive toxicity evaluation. Sci. Total Environ. 2023, 858: 159800.

Li, J. P.; Liu, K.; Li, W.*; Zhang, M.; Li, P. P.; Han, J. G. Removal mechanisms of erythromycin by microalgae Chlorella pyrenoidosa and toxicity assessment during the treatment process. Sci. Total Environ. 2022, 848: 157777.

Zhang, M.*; Zhu, Y. T.; Lvu, Y. B.; Luo, Y. Q.; Duan, T. X.; Li, W.; Li, P. P. Impact of deashing treatment on biochar physicochemical properties and sorption mechanisms of naphthalene and 1-naphthol. Environ. Technol. Inno. 2021, 24: 101960. (IF = 5.263)

Chen, W. X.; Zhang, H. Y.; Zhang, M.; Shen, X. F.; Zhang, X. Y.; Wu, F.; Hu, J.; Wang, B.; Wang Xilong*. Removal of PAHs at high concentrations in a soil washing solution containing TX-100 via simultaneous sorption and biodegradation processes by immobilized degrading bacteria in PVA-SA hydrogel beads. J. Hazard. Mater. 2021, 124533. (一区TOP,IF = 10.588)

Zhang, M.; Tao, S.; Wang, X. L.* Interactions between organic pollutants and carbon nanomaterials and the associated impact on microbial availability and degradation in soil: a review. Environ. Sci. Nano 2020, 7(9): 2486-2508. (一区TOP,IF = 8.131)

Li W.; Lyu B. L.; Li J. P.; Korshin G. V.; Zhang M.; Zhang Y. L.; Li P. P.; Han J. G.; Phototransformation of roxithromycin in the presence of dissolved organic matter: Characteriazation of the degradation products and toxicity evaluation, Sci. Total Environ. 2020, 733: 139348. (二区TOP,IF = 7.963)

Zhang, M.; Shen, X. F.; Zhang, H. Y.; Werner, D.; Wang, B.; Yang, Y.; Tao, S.; Wang, X. L.* Humic acid can enhance the mineralization of phenanthrene sorbed on biochars. Environ. Sci. Technol. 2019, 53(22), 13201-13208. (一区TOP,IF = 9.028)

Guo, X. Y.; Shen, X. F.; Zhang, M.; Zhang, H. Y.; Chen, W. X.; Wang, H.; Koelmans, A. A.; Cornelissen, G.; Tao, S.; Wang, X. L.* Sorption mechanisms of sulfamethazine to soil humin and its subfractions after sequential treatments. Environ. Pollut. 2017, 221, 266-275. (二区TOP,IF = 8.071)

Zhang, H. Y.; Chen, W. X.; Shen, X. F.; Zhang, M.; Yang, Y.; White, J. C.; Tao, S; Wang, X. L.* Influence of multi-walled carbon nanotubes and fullerenes on the bioaccumulation and elimination kinetics of phenanthrene in geophagous earthworms (Metaphire guillelmi). Environ. Sci. Nano 2017, 4(9), 1887-1899. (一区TOP,IF = 8.131)

Zhang, H. Y.; Liu, Y.; Shen, X. F.; Zhang, M.; Yang, Y.; Tao, S; Wang, X. L.* Influence of multiwalled carbon nanotubes and sodium dodecyl benzene sulfonate on bioaccumulation and translocation of pyrene and 1-methylpyrene in maize (Zea mays) seedlings. Environ. Pollut. 2017, 220, 1409-1417. (二区TOP,IF = 8.071)

Cai, F.; Wu X. Y.; Zhang H. Y.; Shen, X. F.; Zhang, M.; Chen, W. X.; Gao, Q.; White, J. C.; Tao, S.; Wang, X. L.* Impact of TiO2 nanoparticles on lead uptake and bioaccumulation in rice (Oryza sativa L.). NanoImpact 2017, 5, 101-108. (二区,IF = 5.316)

Zhang, M.; Shen, X. F.; Zhang, H. Y.; Cai, F.; Chen, W. X.; Gao, Q.; Ortega-Calvo, J. J.; Tao, S.; Wang, X. L.* Bioavailability of phenanthrene and nitrobenzene sorbed on carbonaceous materials. Carbon 2016, 110, 404-413. (一区TOP,IF = 9.594)

Wang, X. L.*; Liu, Y.; Zhang, H. Y.; Shen, X. F.; Cai, F.; Zhang, M.; Gao, Q.; Chen, W. X.; Wang, B.; Tao, S. The impact of carbon nanotubes on bioaccumulation and translocation of phenanthrene, 3-CH3-phenanthrene and 9-NO2-phenanthrene in maize (Zea mays) seedlings. Environ. Sci. Nano 2016, 3(4): 818-829. (一区TOP,IF = 8.131)

Zhang, M.; Shu, L.; Guo, X. Y.; Shen, X. F.; Zhang, H. Y.; Shen, G. F.; Wang, B.; Yang, Y.; Tao, S.; Wang X. L.* Impact of humic acid coating on sorption of naphthalene by biochars. Carbon 2015, 94, 946-954. (一区TOP,IF = 9.594)

Shen, X. F.; Guo, X. Y.; Zhang, M.; Tao, S.; Wang, X. L.* Sorption mechanisms of organic compounds by carbonaceous materials: Site energy distribution consideration. Environ. Sci. Technol. 2015, 49(8), 4894-4902. (一区TOP,IF = 9.028)

Zhang, M.; Shu, L.; Shen, X. F.; Guo, X. Y.; Tao, S.; Xing, B. S.; Wang X. L.* Characterization of nitrogen-rich biomaterial-derived biochars and their sorption for aromatic compounds. Environ. Pollut. 2014, 195, 84-90. (二区TOP,IF = 8.071)

Wang, X. L.*; Ma, E. X.; Shen, X. F.; Guo, X. Y.; Zhang, M.; Zhang, H. Y.; Liu, Y.; Cai, F.; Tao, S.; Xing, B. S. Effect of model dissolved organic matter coating on sorption of phenanthrene by TiO2 nanoparticles. Environ. Pollut. 2014, 194, 31-37. (二区TOP,IF = 8.071)

张萌*,朱一滔,罗雅琪,段天欣,李威,李萍萍,韩建刚. 土壤中纳米颗粒的生物效应研究进展[J]. 环境化学, 2022(已接收)

程虎,张佳鹏,宋洋,李威,李胎花,张萌,蒋新*,韩建刚*. 水热炭在土壤环境中的应用研究进展和展望[J]. 环境工程技术学报, 2021, 11(6): 1202-1209.

孙天航,沈晓芳,张占恩,陈淑敏,刘丹,徐舒艺,陈勇宏,张萌,郭笑盈. 邻苯二甲酸酯及邻苯二甲酸在碳管上的吸附[J]. 中国环境科学, 2021, 41(6): 2717-2724.

张萌*,吕耀斌,朱一滔,罗雅琪,李威,李萍萍,王喜龙. 生物炭去灰分对萘和1-萘酚的吸附动力学影响[J]. 农业环境科学学报, 2020, 39(12): 2806-2814.

张萌*,吕耀斌,朱一滔,施羲渊,李威,李萍萍,王喜龙. 去灰分对生物炭理化性质及芳香族污染物吸附的影响[J]. 环境化学, 2020, 39(11): 3161-3170.

张萌*,吕耀斌,朱一滔,施羲渊,杨庆,王喜龙,李威,李萍萍. 腐殖酸负载对萘和1-萘酚在生物炭上吸附动力学的影响[J]. 环境化学, 2020, 39(1): 101-109.

科研成果:

国家授权发明专利:

周培疆,张萌,李世迁.ZnO/累托石/碳纳米管纳米复合材料的制备方法,ZL201110218787.5.

教学成果:

1.  2021年江苏省高校在线开放课程:园林废弃物资源化之堆肥的秘密(3/3)

2.  2020届本科毕业设计(论文)优秀指导教师(1/1)

3.  张萌等,翻转课堂模式在污染控制类课程案例教学中的应用[J]. 教育教学论坛, 2020, 33: 278-280.