导师风采
张彤
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个人信息

Personal Information

  • 教授
  • 导师类别:硕士,博士生导师
  • 性别: 女
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:环境科学与工程学院
  • 所属专业: 环境科学与工程
  • 邮箱 : zhangtong@nankai.edu.cn
  • 工作电话 : 022-23501117

个人简介

Personal Profile

教育背景

2000.09-2004.07,清华大学,环境科学与工程系,获学士学位

2004.09-2006.07,清华大学,环境科学与工程系,获硕士学位

2006.08-2007.05,康奈尔大学(美国),生物与环境工程系,博士研究生

2007.07-2012.05,杜克大学(美国),市政与环境工程系,获博士学位

科研教学经历

2012.05-2012.09,杜克大学(美国)市政与环境工程系,博士后研究员

2012.09-2015.06,伍兹霍尔海洋学研究中心(美国)海洋化学与地球化学系,博士后研究员

2015.06-2016.03,伍兹霍尔海洋学研究中心(美国)海洋化学与地球化学系,客座研究员

2016.03-至今,南开大学环境科学与工程学院,教授、博士生导师

2017.02-至今,讲授本科生全英文课程《Environmental Aquatic Chemistry》等

职称职务

教授、博士生导师,国家杰出青年基金获得者;

环境科学与工程学院副院长;

天津市城市生态环境修复与污染防治重点实验室副主任。

学术与社会任职

中国环境科学学会环境化学分会委员

中国矿物岩石地球化学学会生态地球化学专业委员会委员兼秘书

美国化学会(ACS)环境化学执行委员会委员

中国环境科学学会水处理与回用专业委员会委员

中国管理科学学会环境管理专业委员会委员

天津市可持续发展研究会理事

天津市欧美同学会会员

Environmental Science: Nano 副主编

Environment & Health 顾问编委

Frontiers in Microbiology 编委

Current Opinion in Environmental Science & Health 编委

Journal of Environmental Sciences 青年编委

《环境化学》编委

《化学进展》青年编委

荣誉与奖励

天津市自然科学一等奖(2023)

Environmental Science & Technology, Environmental Science & Technology Letters, 暨美国化学会“James J. Morgan Early Career Award”(2022)

南开大学青年五四奖章“青年科研工作者”(2021)

Environmental Science: Nano“Best Paper”Award(2019)

The 16th International Symposium on Persistent Toxic Substances (ISPTS) “Young Scientist Award” (2019)

中国自然资源学会青年科技奖(2017)

南开大学百名青年学科带头人培养计划A类(2016)

美国化学会C.Ellen Gonter环境化学奖(2012)


  • 研究方向Research Directions
土壤污染与修复化学,重金属生物地球化学
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
项目情况

1) 环境与地球科学,中组部青年人才项目,2016/03-2019/02,主持

2) 土壤和底泥间隙水中汞-硫-铁纳米颗粒物的形成条件、结构特征及其在甲基汞生物合成中的作用,国家自然科学基金青年项目,2017/01-2019/12,主持

3) 含汞纳米颗粒物在厌氧细菌生物膜中的富集和转化机制研究,天津市自然科学基金面上项目,2017/04-2020/03,主持

4) 场地土壤与地下水污染物多介质界面过程和调控机制,科技部重点研发计划项目,2018/12-2022/11,参与

5) 厌氧菌生物膜中汞甲基化过程的作用机制研究,国家自然科学基金面上项目,2020/01-2023/12,主持

6) 场地土壤复合污染的生态效应及其表征方法,科技部重点研发计划课题,2020/01-2023/12,主持

7) 地下含水层铁锰纳米颗粒物的原位生成及其去除污染物的过程机制研究,天津市自然科学基金重点项目,2020/04-2023/03,主持

8) 用于污染场地地下含水层原位修复的新型纳米技术研究,国家自然科学基金重点国际(地区)合作研究项目,2021/01-2025/12,参与

9) 环境汞污染与健康创新交叉团队,中国科学院创新交叉团队项目,2021/01-2023/12,参与

10)土壤污染与修复化学,天津市杰出青年科学基金,2021/10-2025/09,主持

11)土壤污染与修复化学,国家杰出青年科学基金,2022/01-2026/12,主持

12)工业集聚区土壤-地下水有机污染综合防治技术及应用,科技部重点研发计划项目,2022/12-2026/11,参与

13)典型区域土壤—地下水系统多场耦合水质演化与污染机制,国家重点研发计划项目,2023/12-2027/11,主持


科研项目

1) 环境与地球科学,中组部青年人才项目

2) 土壤和底泥间隙水中汞-硫-铁纳米颗粒物的形成条件、结构特征及其在甲基汞生物合成中的作用,国家自然科学基金青年项目

3) 含汞纳米颗粒物在厌氧细菌生物膜中的富集和转化机制研究,天津市自然科学基金面上项目

4) 场地土壤与地下水污染物多介质界面过程和调控机制,科技部重点研发计划项目

5) 厌氧菌生物膜中汞甲基化过程的作用机制研究,国家自然科学基金面上项目

6) 场地土壤复合污染的生态效应及其表征方法,科技部重点研发计划课题

7) 地下含水层铁锰纳米颗粒物的原位生成及其去除污染物的过程机制研究,天津市自然科学基金重点项目

8) 用于污染场地地下含水层原位修复的新型纳米技术研究,国家自然科学基金重点国际(地区)合作研究项目

9) 环境汞污染与健康创新交叉团队,中国科学院创新交叉团队项目

10)土壤污染与修复化学,天津市杰出青年科学基金

11)土壤污染与修复化学,国家杰出青年科学基金

12)工业集聚区土壤-地下水有机污染综合防治技术及应用,科技部重点研发计划项目

13)典型区域土壤—地下水系统多场耦合水质演化与污染机制,国家重点研发计划项目


研究成果

发表论文

1. Yang, Cuiyi; Duan, Lin; Wang, Jing; Jiang, Chuanjia; Zhang, Tong; Chen, Wei, Preferential association of PBDEs and PAHs with mineral particles vs. dissolved organic carbon: Implications for groundwater contamination at e-waste sites[J]. Journal of Environmental Sciences, 2025, 150: 288-296.

2. Duan, Lin; Liu, Jiahuan; Wang, Jing; Jiang, Chuanjia; Zhang, Tong; Chen, Wei, A screening model for predicting the potential of soil colloids-enhanced leaching of hydrophobic organic contaminants to groundwater at contaminated sites[J]. Journal of Environmental Sciences, 2025, 150: 309-317.

3. Du, Tingting; Guan, Wenyu; Zhang, Zhanhua; Jiang, Chuanjia; Alvarez, Pedro J. J.; Chen, Wei; Zhang, Tong, Facet-dependent oxysulfidation of Cu 2 O nanomaterials: implications for improving the efficacy of nanopesticides[J]. Environmental Science: Nano, 2025, 12(1): 675-685.

4. Liang, Zongsheng; Liu, Keman; Li, Yueyue; Liu, Yaqi; Jiang, Chuanjia; Zhang, Tong; Chen, Wei, Oxygen vacancies boost the efficacy of MnO 2 nanoparticles in catalyzing the hydrolytic degradation of organophosphate esters: implications for managing plastic additive pollution[J]. Environmental Science: Nano, 2025.

5. Cao, Tianchi; Zhao, Mengting; Zhang, Tong; Chen, Wei, Weathering pathways differentially affect colloidal stability of nanoplastics[J]. Environmental Science: Nano, 2025, 12(1): 232-240.

6. Pang, Zhihao; Luo, Zhongkui; Guan, Dong-Xing; Zhang, Tong; Qiu, Lixue; Zhao, Enqiang; Ma, Qingxu; Li, Tingqiang; Peng, Hongyun; Liang, Yongchao, The adsorption-diffusion model and biomimetic simulation reveal the switchable roles of silicon in regulating toxic metal uptake in rice roots[J]. Chemosphere, 2024, 353: 141669.

7. Li, Tong; Ju, Yiting; Du, Tingting; Jiang, Chuanjia; Zhang, Tong; Chen, Wei, Anatase TiO 2 nanomaterials are much more effective in enhancing hydrolysis of organophosphorus compounds than their rutile counterparts[J]. Environmental Science: Nano, 2024, 11(6): 2447-2456.

8. Liu, Zhenhai; Yang, Qihong; Zhu, Panpan; Liu, Yaqi; Tong, Xin; Cao, Tianchi; Tomson, Mason B.; Alvarez, Pedro J. J.; Zhang, Tong; Chen, Wei, Cr (VI) reduction and sequestration by FeS nanoparticles formed in situ as aquifer material coating to create a regenerable reactive zone[J]. Environmental Science & Technology, 2024, 58(16): 7186-7195.

9. Liu, Jiameng; Cao, Tianchi; Duan, Lin; Xu, Shengkai; Li, Min; Zhang, Tong; Chen, Wei, Co-transport of polybromodiphenyl ethers and soil nanoparticles in saturated porous media: implications for the risks of polybromodiphenyl ether spreading in groundwater[J]. Environmental Science: Nano, 2024, 11(6): 2568-2576.

10. Zhu, Panpan; Hou, Sheng-Li; Liu, Zhenhai; Zhou, Yinzhu; Alvarez, Pedro J. J.; Chen, Wei; Zhang, Tong, Multi-emission carbon dots combining turn-on sensing and fluorescence quenching exhibit ultrahigh selectivity for mercury in real water samples[J]. Environmental Science & Technology, 2024, 58(22): 9887-9895.

11. Liang, Zongsheng; Jiang, Chuanjia; Li, Yueyue; Liu, Yaqi; Yu, Jiaguo; Zhang, Tong; Alvarez, Pedro J. J.; Chen, Wei, Single-atom iron can steer atomic hydrogen toward selective reductive dechlorination: implications for remediation of chlorinated solvents-impacted groundwater[J]. Environmental Science & Technology, 2024, 58(26): 11833-11842.

12. Guan, Wenyu; Zhang, Zhanhua; Liu, Yaqi; Ji, Yunyun; Tong, Xin; Chen, Jiubin; Alvarez, Pedro J. J.; Chen, Wei; Zhang, Tong, Crystalline Phase Regulates Microbial Methylation Potential of Mercury Bound to MoS2 Nanosheets: Implications for Safe Design of Mercury Removal Materials[J]. Environmental Science & Technology, 2024, 58(29): 13110-13119.

13. Cao, Tianchi; Liu, Yaqi; Gao, Cheng; Yuan, Yuxin; Chen, Wei; Zhang, Tong, Understanding Nanoscale Interactions between Minerals and Microbes: Opportunities for Green Remediation of Contaminated Sites[J]. Environmental Science & Technology, 2024, 58(32): 14078-14087.

14. Tong, Xin; Zhang, Zhanhua; Dong, Xiaoyin; Guan, Wenyu; Liu, Zhenhai; Chen, Jiubin; Alvarez, Pedro J. J.; Chen, Wei; Zhang, Tong, Sulfur-Intercalated Layered Double Hydroxides Minimize Microbial Mercury Methylation: Implications for In Situ Remediation of Mercury-Contaminated Sites[J]. Environmental Science & Technology, 2024, 58(38): 17179-17189.

15. Qi, Yu; Guan, Wenyu; Jiang, Chuanjia; Chen, Wei; Zhang, Tong, Protein Corona Formation on Cadmium-Bearing Nanoparticles: Important Role of Facet-Dependent Binding of Cysteine-Rich Proteins[J]. Environment & Health, 2024, 2(9): 623-630.

16. Zhang, Zhiying; Zhang, Zhanhua; Zhang, Chenyang; Chang, Qing; Fang, Qingxuan; Liao, Chengmei; Chen, Jiubin; Alvarez, Pedro J. J.; Chen, Wei; Zhang, Tong, Simultaneous Reduction and Methylation of Nanoparticulate Mercury: The Critical Role of Extracellular Electron Transfer[J]. Environmental Science & Technology, 2024, 58(41): 18368-18378.

17. Qiu, Ye; Zhang, Tong; Zhang, Ping, Micro/nano plastics inhibit the formation of barium sulfate scale on metal surface[J]. Journal of Hazardous Materials, 2024, 480: 136151.

18. Shi, Yan; Zhang, Kejing; Chen, Jianxin; Zhang, Bingtian; Guan, Xun; Wang, Xin; Zhang, Tong; Song, Han; Zou, Long; Duan, Xiangfeng; Gao, Haichun; Lin, Zhang, Long‐Term Autotrophic Growth and Solar‐to‐Chemical Conversion in Shewanella Oneidensis MR‐1 through Light‐Driven Electron Transfer[J]. Angewandte Chemie International Edition, 2024, 63(51): e202412072.

19. Pei, Xule; Wang, Weichao; Chen, Zaihao; Liu, Keman; Liang, Zongsheng; Jiang, Chuanjia; Zhang, Tong; Chen, Wei, Metal heteroatoms significantly enhance efficacy of TiO2 nanomaterials in promoting hydrolysis of organophosphates: Implications for mitigating pollution of plastic additives[J]. Science of The Total Environment, 2024, 957: 177548.

20. He, Sheng; Cai, Hongming, Sun, Ruoyu; Zheng, Wang; Yuan, Shengliu; Yuan, Wei; Wang, Yuchun; Zhang, Ke; An, Yuchen; Liu, Jianfeng; Chen, Pengfei; Zhang, Tong; Kang, Shichang; Chen, Jiubin, Stable Isotopes Reveal the Contribution of Glacier Melting to Mercury Budget in Tibetan Rivers[J]. Environmental Science & Technology Letters, 2024, 12(1): 85-91.

21. Liu, Jiang; Lu, Benqi; Poulain, Alexandre J.; Zhang, Rui; Zhang, Tong; Feng, Xinbin; Meng, Bo, The underappreciated role of natural organic matter bond Hg (II) and nanoparticulate HgS as substrates for methylation in paddy soils across a Hg concentration gradient[J]. Environmental Pollution, 2022, 292: 118321.

22. Xiao, Bowen; Yang, Rongyan; Chen, Pengyu; Yang, Jing; Sun, Binbin; Wang, Kunkun; Zhang, Tong; Zhu, Lingyan, Insights into the lower trophic transfer of silver ions than silver containing nanoparticles along an aquatic food chain[J]. Science of The Total Environment, 2022, 804: 150228.

23. Fu, Di; Duan, Lin; Li, Xiaoyan; Jiang, Chuanjia; Zhang, Tong; Chen, Wei, Citrate-promoted dissolution of nanostructured manganese oxides: Implications for nano-enabled sustainable agriculture[J]. Journal of Environmental Sciences, 2023, 125: 492-498.

24. Jiang, Chuanjia; Liu, Songlin; Zhang, Tong; Liu, Qian; Alvarez, Pedro J. J.; Chen, Wei, Current methods and prospects for analysis and characterization of nanomaterials in the environment[J]. Environmental Science & Technology, 2022, 56(12): 7426-7447.

25. Qiu, Ye; Zhang, Zhanhua; Zhang, Tong; Zhang, Ping, Sulfide modifies physicochemical properties and mercury adsorption of microplastics[J]. Science of The Total Environment, 2022, 848: 157802.

26. Liu, Yaqi; Gan, Haibo; Tian, Li; Liu, Zhenhai; Ji, Yunyun; Zhang, Tong; Alvarez, Pedro J. J.; Chen, Wei, Partial oxidation of FeS nanoparticles enhances Cr (VI) sequestration[J]. Environmental Science & Technology, 2022, 56(19): 13954-13963.

27. Zhang, Zhanhua; Zhao, Zhenyu; Fang, Qingxuan; Qiao, Ruohong; Zhang, Tong, Extracellular polymeric substances enhance dissolution and microbial methylation of mercury sulfide minerals[J]. Environmental Science: Processes & Impacts, 2023, 25(1): 44-55.

28. Zhu, Meiling; Zhang, Zhanhua; Zhang, Tong; Hofmann, Thilo; Chen, Wei, Eco-Corona dictates mobility of nanoplastics in saturated porous media: The critical role of preferential binding of macromolecules[J]. Environmental Science & Technology, 2022, 57(1): 331-339.

29. Duan, Lin; Qin, Yiyuan; Meng, Xin; Liu, Yaqi; Zhang, Tong; Chen, Wei, Sulfide-and UV-induced aging differentially affect contaminant-binding properties of microplastics derived from commercial plastic products[J]. Science of The Total Environment, 2023, 869: 161800.

30. Ji, Yunyun; Gao, Shan; Si, Rui; Zhang, Zhanhua; Tian, Li; Guan, Wenyu; Wang, Weichao; Chen, Jiubin; Chen, Wei; Alvarez, Pedro J. J.; Zhang, Tong, Structural incorporation of iron influences biomethylation potential of mercury sulfide[J]. Geochimica et Cosmochimica Acta, 2023, 349: 115-125.

31. Qiu, Ye; Zhang, Tong; Zhang, Ping, Fate and environmental behaviors of microplastics through the lens of free radical[J]. Journal of Hazardous Materials, 2023, 453: 131401.

32. Yuan, Zhao-Feng; Zhou, Yujie; Chen, Zheng; Zhang, Tong; Kappler, Andreas; Gustave, Williamson; Tang, Xianjin; Xu, Jianming, Sustainable immobilization of arsenic by man-made aerenchymatous tissues in paddy soil[J]. Environmental Science & Technology, 2023, 57(33): 12280-12290.

33. Qiu, Ye; Li, Zhejun; Zhang, Tong; Zhang, Ping, Predicting aqueous sorption of organic pollutants on microplastics with machine learning[J]. Water Research, 2023, 244: 120503.

34. Shen, Meimei; Liu, Songlin; Jiang, Chuanjia; Zhang, Tong; Chen, Wei, Recent advances in stimuli-response mechanisms of nano-enabled controlled-release fertilizers and pesticides[J]. Eco-Environment & Health, 2023, 2(3): 161-175.

35. Gao, Xin; Yuan, Wei; Chen, Jiubin; Huang, Fang; Wang, Zhengrong; Gong, Yifei; Zhang, Yuanming; Liu, Yi; Zhang, Tong; Zheng, Wang, Tracing the source and transport of Hg during pedogenesis in strongly weathered tropical soil using Hg isotopes[J]. Geochimica et Cosmochimica Acta, 2023, 361: 101-112.

36. Ye Qiu, Zhejun Li, Tong Zhang, Ping Zhang*, Predicting aqueous sorption of organic pollutants on microplastics with machine learning, Water Research, 2023, xxxx

37. Zhao-Feng Yuan, Yujie Zhou, Zheng Chen, Tong Zhang, Andreas Kappler, Williamson Gustave, Xianjin Tang*, Jianming Xu, Sustainable immobilization of arsenic by man-made aerenchymatous tissues in paddy soil, Environmental Science & Technology, 2023, 57(33), 12280–12290.

38. Ye Qiu, Tong Zhang*, Ping Zhang*, Fate and environmental behaviors of microplastics through the lens of free radical, Journal of Hazardous Materials, 2023, 453, 131401.

39. Yunyun Ji, Shan Gao, Rui Si, Zhanhua Zhang, Li Tian, Wenyu Guan, Weichao Wang, Jiubin Chen, Wei Chen, Pedro J.J. Alvarez, Tong Zhang*, Structural incorporation of iron influences biomethylation potential of mercury sulfide, Geochimica et Cosmochimica Acta, 2023, 349: 115-125

40. Lin Duan, Yiyuan Qin, Xin Meng, Yaqi Liu, Tong Zhang, Wei Chen*, Sulfide- and UV-induced aging differentially affect contaminant-binding properties of microplastics derived from commercial plastic products, Science of the Total Environment, 2023, 869 (161800).

41. Meiling Zhu, Zhanhua Zhang, Tong Zhang, Thilo Hofmann, Wei Chen*, Eco-corona dictates mobility of nanoplastics in saturated porous media: The critical role of preferential binding of macromolecules, Environmental Science & Technology, 2023, 57(1): 331–339.

42. Yanyan Gong#*, Jie Yin#, Tong Zhang, Weizhao Yin, Luyao Sun, Qiru Liang, Qilin Wang, Ferrous sulfide nanoparticles control mercury speciation and bioavailability to methylating bacteria in contaminated groundwater: Impacts of mercury species, Chemical Engineering Journal, 2023, 455 (140612).

43. Zhanhua Zhang, Zhenyu Zhao, Qingxuan Fang, Ruohong Qiao, Tong Zhang*, Extracellular polymeric substances enhance dissolution and microbial methylation of mercury sulfide minerals, Environmental Science: Processes & Impacts, 2023, 25: 44-55.

44. 刘雅琪, 张展华, 常青, 张彤*, 陈威,铁锰基纳米材料在土壤-地下水污染修复中的应用[J].中国科学:化学,2023, 53.

45. Yaqi Liu, Haibo Gan, Li Tian, Zhenhai Liu, Yunyun Ji, Tong Zhang*, Pedro J. J. Alvarez, Wei Chen, Partial oxidation of FeS nanoparticles enhances Cr(VI) sequestration, Environmental Science & Technology, 2022, 56(19): 13954–13963.

46. Di Fu, Lin Duan*, Xiaoyan Li, Chuanjia Jiang, Tong Zhang, Wei Chen*, Citrate-promoted dissolution of nanostructured manganese oxides: Implications for nano-enabled sustainable agriculture, Journal of Environmental Sciences, 2023, 125: 492-498.

47. 董丽君,张展华,张彤*.土壤环境汞污染现状及其影响因素研究进展[J].地球与环境,2022, 50(3): 397-414.

48. Ye Qiu, Zhanhua Zhang, Tong Zhang*, Ping Zhang*, Sulfide modifies physicochemical properties and mercury adsorption of microplastics, Science of the Total Environment, 2022, 848 (157802).

49. 朱盼盼,张展华,张彤*,陈威.碳点荧光传感器的构建及其在环境污染分析中的应用[J].中国科学:化学,2022, 52(7): 1087-1100.

50. Chuanjia Jiang, Songlin Liu, Tong Zhang*, Qian Liu*, Pedro J. J. Alvarez, Wei Chen, Current methods and prospects for analysis and characterization of nanomaterials in the environment, Environmental Science & Technology, 2022, 56(12): 7426–7447.

51. 张桐,张展华,胡杰华,郭丹花,肖尧*,张彤*.淋洗技术在土壤污染修复中的应用与挑战[J].环境化学,2022, 41(11): 1-14.

52. Jiang Liu, Benqi Lu, Alexandre J. Poulain, Rui Zhang, Tong Zhang, Xinbin Feng, Bo Meng*, The underappreciated role of natural organic matter bond Hg(II) and nanoparticulate HgS as substrates for methylation in paddy soils across a Hg concentration gradient, Environmental Pollution, 2022, 292 (118321).

53. Bowen Xiao, Rongyan Yang, Pengyu Chen, Jing Yang, Binbin Sun, Kunkun Wang, Tong Zhang*, Lingyan Zhu*, Insights into the lower trophic transfer of silver ions than silver containing nanoparticles along an aquatic food chain, Science of the Total Environment, 2022, 804 (150228).

54. Li Tian, Wenyu Guan, Yunyun Ji, Xin He, Wei Chen, Pedro J. J. Alvarez, Tong Zhang*, Microbial methylation potential of mercury sulfide particles dictated by surface structure, Nature Geoscience, 2021, 14: 409-416.

55. 张展华,方清萱,赵振宇,张彤*.环境生物膜中的汞甲基化[J].环境化学,2021,40(9): 2605-2616.

56. Mengting Zhao, Tong Zhang, Xinlin Yang, Xinlei Liu, Dongqiang Zhu, Wei Chen*, Sulfide induces physical damages and chemical transformation of microplastics via radical oxidation and sulfide addition, Water Research, 2021, 197 (117100).

57. 田莉,关文宇,赵振宇,吉云芸,张彤*, 纳米晶体的晶型和暴露晶面对其环境行为和效应的影响[J].环境化学,2021,40(4): 999-1010.

58. 刘新蕾,欧阳婉约,张彤*, 大气颗粒物重金属组分的化学形态及健康效应[J].环境化学,2021,40(4): 974-989.

59. Carl H. Lamborg*, Colleen M. Hansel, Katlin L. Bowman, Bettina M. Voelker, Ryan M. Marsico, Veronique E. Oldham, Gretchen J. Swarr, Tong Zhang, Priya M. Ganguli, Dark reduction drives evasion of mercury from the ocean, Frontiers in Environmental Chemistry, 2021, 2 (659085).

60. Xule Pei, Tong Zhang, Jingyi Zhong, Zaihao Chen, Chuanjia Jiang*, Wei Chen, Substoichiometric titanium oxide Ti2O3 exhibits greater efficiency in enhancing hydrolysis of 1,1,2,2-tetrachloroethane than TiO2 nanomaterials, Science of the Total Environment, 2021, 774 (145705).

61. Qing Chang, Zhanhua Zhang, Yunyun Ji, Li Tian, Wei Chen, Tong Zhang*, Natural organic matter facilitates formation and microbial methylation of mercury selenide nanoparticles, Environmental Science: Nano, 2021, 8: 67-75.

62. Di Fu, Lin Duan*, Chuanjia Jiang, Tong Zhang, Wei Chen*, Nanostructured manganese oxides exhibit facet-dependent capabilities in oxidizing bisphenol A, Environmental Science: Nano, 2020, 7(12): 3840-3848.

63. Ruoyu Sun, Jingjing Yuan, Jeroen Sonke, Yanxu Zhang, Tong Zhang, Wang Zheng, Shun Chen, Mei Meng, Jiubin Chen, Yi Liu*, Xiaotong Peng*, Congqiang Liu, Methylmercury produced in upper oceans accumulates in deep Mariana Trench fauna, Nature Communications, 2020, 11 (3389).

64. Zelin Shen, Zhanhua Zhang, Tong Li, Qingqian Yao, Tong Zhang*, Wei Chen, Facet-dependent adsorption and fractionation of natural organic matter on crystalline metal oxide nanoparticles, Environmental Science & Technology, 2020, 54(14): 8622−8631.

65. Tong Li, Wen Zhong, Chuanyong Jing, Xuguang Li, Tong Zhang, Chuanjia Jiang*, Wei Chen*, Enhanced hydrolysis of p-Nitrophenyl phosphate by iron (hydr)oxide nanoparticles: Roles of exposed facets, Environmental Science & Technology, 2020, 54(14): 8658−8667.

66. Zhanhua Zhang, Rui Si, Jitao Lv, Yunyun Ji, Wenshan Chen, Wenyu Guan, Yuxiao Cui, Tong Zhang*, Effects of extracellular polymeric substances on the formation and methylation of mercury sulfide nanoparticles, Environmental Science & Technology, 2020, 54(13): 8061-8071.

67. Qilin Yu, Guizhu Wu, Tong Zhang, Xudong Zhao, Zhen Zhou, Lu Liu*, Wei Chen*, Pedro J. J. Alvarez*, Targeting specific cell organelles with different-faceted nanocrystals that are selectively recognized by organelle-targeting peptides, Chemical Communications, 2020, 56: 7613-7616.

68. Mae Sexauer Gustin*, Michael S. Bank, Kevin Bishop, Katlin Bowman, Brian Branfireun, John Chételat, Chris S. Eckley, Chad R. Hammerschmidt, Carl Lamborg, Seth Lyman, Antonio Martínez-Cortizas, Jonas Sommar, Martin Tsz-Ki Tsui, Tong Zhang, Mercury biogeochemical cycling: A synthesis of recent scientific advances, Science of the Total Environment, 2020, 737 (139619).

69. Chloe H. Wang, Lara K. Gulmann, Tong Zhang, Gabriela A. Farfan, Colleen M. Hansel*, Stefan M. Sievert*, Microbial colonization of metal sulfide minerals at a diffuse-flow deep-sea hydrothermal vent at 9°50′N on the East Pacific Rise, Geobiology, 2020, 18: 594-605.

70. Bowen Xiao, Xiaolei Wang, Jing Yang, Kunkun Wang, Yinqing Zhang, Binbin Sun, Tong Zhang*, Lingyan Zhu*, Bioaccumulation kinetics and tissue distribution of silver nanoparticles in zebrafish: The mechanisms and influence of natural organic matter, Ecotoxicology and Environmental Safety, 2020, 194 (110454).

71. Yu Qi, Tong Zhang*, Chuanyong Jing, Sijin Liu, Chengdong Zhang, Pedro J. J. Alvarez*, Wei Chen, Nanocrystal facet modulation to enhance transferrin binding and cellular delivery, Nature Communications, 2020, 11 (1262).

72. Wenli Tang, Yurong Liu, Wenyu Guan, Huan Zhong, Xiaomin Qu, Tong Zhang*, Understanding mercury methylation in the changing environment: Recent advances in assessing microbial methylators and mercury bioavailability, Science of the Total Environment, 2020, 714 (136827). (Invited Review)

73. Fanfan Wang, Xinlei Liu, Xuguang Li, Chuanjia Jiang, Tong Zhang*, Wei Chen, Sulfide and ferrous iron preferentially target specific surface O-functional groups of graphene oxide: Implications for accumulation of contaminants, Environmental Science: Nano, 2020, 7: 462-471. (HOT Article)

74. 吉云芸,杨麒弘,张彤*.土壤和底泥间隙水中汞-硫-铁纳米颗粒物的形成条件、结构特征及其在甲基汞生物合成中的作用[J].环境化学,2020,39 (1): 1-7.

75. Tingting Du, Guoliang Shi, Fangfei Liu, Tong Zhang*, Wei Chen, Sulfidation of Ag and ZnO nanomaterials significantly affects protein corona composition: Implications for human exposure to environmentally aged nanomaterials, Environmental Science & Technology, 2019, 53 (24): 14296-14307.

76. Bowen Xiao, Yinqing Zhang, Xiaolei Wang, Meng Chen, Binbin Sun, Tong Zhang*, Lingyan Zhu*, Occurrence and trophic transfer of nanoparticulate Ag and Ti in the natural aquatic food web of Taihu Lake, China, Environmental Science: Nano, 2019, 6: 3431-3441.

77. Xinlei Liu, Wanyue Ouyang, Yiling Shu, Yingze Tian, Yinchang Feng, Tong Zhang*, Wei Chen, Incorporating bioaccessibility into health risk assessment of heavy metals in particulate matter originated from different sources of atmospheric pollution, Environmental Pollution, 2019, 254: 113113.

78. Jin Liu, Tong Zhang, Lili Tian, Xinlei Liu, Zhichong Qi, Yini Ma, Rong Ji*, Wei Chen*, Aging significantly affects mobility and contaminant-mobilizing ability of nanoplastics in saturated loamy sand, Environmental Science & Technology, 2019, 53 (10): 5805-5815.

79. Tingting Du, Adeyemi S. Adeleye, Tong Zhang, Nan Yang, Rongjie Hao, Yao Li*, Weihua Song, Wei Chen*, Effects of ozone and produced hydroxyl radical on the transformation of graphene oxide in aqueous media, Environmental Science: Nano, 2019, 6 (8): 2484-2494.

80. Tong Zhang, Gregory V. Lowry*, Natalie L. Capiro, Jianmin Chen, Wei Chen, Yongsheng Chen, Dionysios D. Dionysiou, Daniel W. Elliott, Subhasis Ghoshal, Thilo Hofmann, Heileen Hsu-Kim, Joseph Hughes, Chuanjia Jiang, Guibin Jiang, Chuanyong Jing, Michael Kavanaugh, Qilin Li, Sijin Liu, Jie Ma, Bingcai Pan, Tanapon Phenrat, Xiaolei Qu, Xie Quan, Navid Saleh, Peter J. Vikesland, Qiuquan Wang, Paul Westerhoff, Michael S. Wong, Tian Xia, Baoshan Xing, Bing Yan, Lunliang Zhang, Dongmei Zhou, Pedro J. J. Alvarez, In situ remediation of subsurface contamination: Opportunities and challenges for nanotechnology and advanced materials, Environmental Science: Nano, 2019, 6: 1283-1302. (Cover Story)

81. Yu Qi, Wenshan Chen, Fangfei Liu, Jing Liu, Tong Zhang*, Wei Chen*, Aggregation morphology is a key factor determining protein adsorption on graphene oxide and reduced graphene oxide nanomaterials, Environmental Science: Nano, 2019, 6: 1303-1309. (HOT Article)

82. Yanyan Gong, Yao Huang, Mengxia Wang, Fangfei Liu, Tong Zhang*, Application of iron-based materials for remediation of mercury in water and soil, Bulletin of Environmental Contamination and Toxicology, 2019, 102: 721-729. (Invited Review)

83. Min Zhang, Hui Ma, Huihui Wang, Tingting Du, Mengmeng Liu, Yingying Wang, Tong Zhang*, Yao Li*, Effects of ion species on the disinfection byproduct formation in artificial and real water, Chemosphere, 2019, 217: 706-714.

84. Lin Duan, Tong Zhang, Weihua Song, Chuanjia Jiang, Yan Hou, Weilu Zhao, Wei Chen*, Pedro J. J. Alvarez, Photolysis of graphene oxide in the presence of nitrate: implications for graphene oxide integrity in water and wastewater treatment, Environmental Science: Nano, 2019, 6: 136-145.

85. Tingting Du, Adeyemi S. Adeleye, Tong Zhang, Chuanjia Jiang, Min Zhang, Huihui Wang, Yao Li*, Arturo A. Keller*, Wei Chen, Influence of light wavelength on the photoactivity, physicochemical transformation, and fate of graphene oxide in aqueous media, Environmental Science: Nano, 2018, 5: 2590-2603.

86. Guizhu Wu, Chuanjia Jiang, Tong Zhang*, FcγRIIB receptor-mediated apoptosis in macrophages through interplay of cadmium sulfide nanomaterials and protein corona, Ecotoxicology and Environmental Safety, 2018, 164: 140-148. (Highlighted Article)

87. Xuguang Li, Tong Li, Tong Zhang, Cheng Gu, Shourong Zheng, Haijun Zhang, Wei Chen*, Nano-TiO2-catalyzed dehydrochlorination of 1,1,2,2-tetrachloroethane: roles of crystalline phase and exposed facets, Environmental Science & Technology, 2018, 52 (7): 4031-4039.

88. Julia M. Diaz, Colleen M. Hansel*, Amy Apprill*, Caterina Brighi, Tong Zhang, Laura Weber, Sean McNally, Liping Xun, Species-specific control of external superoxide levels by the coral holobiont during a natural bleaching event, Nature Communications, 2016, 7 (13801).

89. Tong Zhang, Julia M. Diaz, Caterina Brighi, Rachel Parsons, Sean McNally, Amy Apprill, Colleen M. Hansel*, Dark production of extracellular superoxide by the coral Porites astreoides and representative symbionts, Frontiers in Marine Science, 2016, 3 (232).

90. Tong Zhang, Colleen M. Hansel*, Bettina M. Voelker, Carl H. Lamborg, Extensive dark biological production of reactive oxygen species in brackish and freshwater ponds, Environmental Science & Technology, 2016, 50 (6): 2983-2993.

91. Adiari I. Vázquez-Rodríguez, Colleen M. Hansel*, Tong Zhang, Carl H. Lamborg, Cara M. Santelli, Samuel M. Webb, Scott C. Brooks, Microbial- and thiosulfate-mediated dissolution of mercury sulfide minerals and transformation to gaseous mercury, Frontiers in Microbiology, 2015, 6(596).

92. Amrika Deonarine*, Helen Hsu-Kim, Tong Zhang, Yong Cai, Curtic J. Richardson, Legacy source of mercury in an urban stream-wetland ecosystem in central North Carolina, USA, Chemosphere, 2015, 138: 960-965.

93. Ryan M. Marsico, Robin J. Schneider, Bettina M. Voelker*, Tong Zhang, Julia M. Diaz, Colleen M. Hansel, Shuichi Ushijima, Spatial and temporal variability of ubiquitous dark production and decay of hydrogen peroxide in freshwater, Aquatic Sciences, 2015, 77(4): 523-533.

94. Tong Zhang, Katarzyna H. Kucharzyk, Bojeong Kim, Marc A. Deshusses, Helen Hsu-Kim*, Net methylation of mercury in estuarine sediment slurry microcosms amended with dissolved, nanoparticulate, and microparticulate mercuric sulfides, Environmental Science & Technology, 2014, 48(16): 9133-9141.

95. Anh L. Pham, Amanda Morris, Tong Zhang, Jonathan L. Ticknor, Clement Levard, Helen Hsu-Kim*, Precipitation of nanoscale mercuric sulfides in the presence of natural organic matter: structural properties, aggregation, and biotransformation, Geochimica et Cosmochimica Acta, 2014, 133: 204-215.

96. Julia M. Diaz, Colleen M. Hansel*, Bettina M. Voelker, Chantal M. Mendes, Peter F. Andeer, Tong Zhang, Widespread production of extracellular superoxide by heterotrophic bacteria, Science, 2013, 340(6137): 1223-1226.

97. Helen Hsu-Kim*, Katarzyna H. Kucharzyk, Tong Zhang, Marc A. Deshusses, Mechanisms regulating mercury bioavailability for methylating microorganisms in the aquatic environment: A critical review, Environmental Science & Technology, 2013, 47(6): 2441-2456. 

98. Rongguo Sun, Dingyong Wang*, Yutao Zhang, Wen Mao, Tong Zhang, Ming Ma, Cheng Zhang, Photo-degradation of monomethylmercury in the presence of chloride ion, Chemosphere, 2013, 91(11): 1471-1476.

99. Tong Zhang, Bojeong Kim, Clement Levard, Brian C. Reinsch, Gregory V. Lowry, Marc A. Deshussus, Helen Hsu-Kim*, Methylation of mercury by bacteria exposed to dissolved, nanoparticulate, and microparticulate mercuric sulfides, Environmental Science & Technology, 2012, 46(13): 6950-6958.

100. Nicholas A. Robins*, Nicole Hagan, Susan Halabi, Helen Hsu-Kim, Espinoza, Ruben Dario Espinoza Gonzales, Mark Morris, George Woodall, Daniel D. Richter, Paul Heine, Tong Zhang, Allan Bacon, John Vandenberg, Estimations of historical atmospheric mercury concentrations from mercury refining and present-day soil concentrations of total mercury in Huancavelica, Peru, Science of the Total Environment, 2012, 426: 146-154.

101. Nicole Hagan*, Nicholas A. Robins, Helen Hsu-Kim, Susan Halabi, Mark Morris, George Woodall, Tong Zhang, Allan Bacon, A., Daniel D. Richter, John Vandenberg, Estimating historical atmospheric mercury concentrations from silver mining and their legacies in present-day surface soil in Potosí, Bolivia, Atmospheric Environment, 2011, 45(40): 7619-7626.

102. Tong Zhang, Helen Hsu-Kim*, Photolytic degradation of methylmercury enhanced by binding to natural organic ligands, Nature Geoscience, 2010, 3(7): 473-476.

103. Chaoyang Fu, Xing Xie, Jingjing Huang, Tong Zhang, Qianyuan Wu, Jining Chen, Hongying Hu*, Monitoring and evaluation of removal of pathogens at municipal wastewater treatment plants, Water Science and Technology, 2010, 61(6): 1589-1599.

104. Tong Zhang, Xing Xie, Hongying Hu*, Yudong Song, Qianyuan Wu, Zusheng Zong, Improvement of detection method of Cryptosporidium and Giardia in reclaimed water, Frontiers of Environmental Science and Engineering in China, 2008, 2(3): 380-384.

发表专利

1. 张彤; 朱盼盼; 何惜澄; 陈威; 一种生物质荧光碳点的制备方法及应用, 2021-01-22, 中国, ZL202110093192.5

2. 张彤; 刘振海; 陈威; 一种改性纳米硫化亚铁复合材料及其制备方法与应用, 2022-04-15, 中国, ZL202110106190.5

3. 张彤; 张展华; 陈文姗; 一种适用于厌氧细菌的胞外聚合物提取方法, 2022-11-22, 中国, ZL202111250257.9

4. 张彤; 张桐; 胡杰华; 肖尧; 一种重金属污染土壤的修复方法, 2023-09-08, 中国, ZL202011629953.6

5. 张彤; 张展华; 毕天雅; 一种利用真菌胞外聚合物制备赤铁矿纳米颗粒的方法, 2023-09-19, 中国, ZL202111250256.4

6. 张彤; 童心; 陈威; 一种二硫化铁树脂复合材料及其制备方法和应用, 2023-12-29, 中国, ZL202111348013.4

7. 张彤; 朱盼盼; 陈威; 一种多发射荧光碳点及其制备方法和应用, 2023-03-21, 中国, ZL202210475285.9

8. 张彤; 刘雅琪; 陈威; 一种纳米复合材料及其制备方法和应用, 2024-06-21, 中国, ZL202210868128.4

9. 姜传佳; 刘松林; 张煜; 陈再豪; 张彤; 陈威; 一种锌铝氧化物修饰生物炭负载磷酸盐复合材料及其制备方法和应用, 2022-06-03 , 中国, ZL202111095455.2

10. 姜传佳; 刘松林; 张彤; 陈威; 一种赤铁矿-羧甲基纤维素-营养盐复合物及其制备方法和应用, 2023-04-11, 中国, ZL202210240414.6


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