职  称:教授
研究方向:湿地碳循环与湿地恢复
办公电话:043185098982
办公地点:地理学院208室

个人简历

王铭,女,1986年生,博士,教授,博士生导师。毕业于中国科学院东北地理与农业生态研究所。主要研究方向为泥炭沼泽碳循环与植被生态。主要从事泥炭沼泽有机碳累积与含碳气体循环过程、湿地植物物种多样性与植被恢复等方面的研究。系统研究了长白山区苔草泥炭沼泽有机碳累积过程及稳定机制,阐明了环境因子对泥炭沼泽碳稳定性的影响机制,明确了苔草泥炭沼泽含碳气体关键排放过程的影响及机制,揭示了苔草沼泽小空间尺度物种多样性分布格局以及草丘微地貌对物种多样性的影响,为科学评估泥炭沼泽的碳汇功能及沼泽湿地恢复和管理提供了科学依据。目前以第一/通讯作者在《Catena》、《Ecological indicators》、《Ecological Engineering》、《Land Degradation and Development》、《wetlands》及《Marine and fresh water research》等国际期刊发表SCI论文18篇,合作发表文章40余篇。主持和参加国家自然科学基金面上项目、青年基金、科技部基础性工作专项子课题,吉林省自然科学基金、优秀青年基金、国家博士后面上项目、重点研发专项课题等科研项目10余项。获得吉林省科学技术进步一等奖1项,自然科学二等奖1项。 教育经历: 2011/09 – 2014/06,中国科学院东北地理与农业生态研究所,环境科学,博士 2009/09 – 2011/07,中国科学院东北地理与农业生态研究所,生态学,硕士 2005/09 – 2009/07,哈尔滨师范大学,生命与环境科学学院,地理信息系统,学 士 工作经历: 2023/07-至今,东北师范大学,地理科学学院,教授 2017/07-2023/06,东北师范大学,地理科学学院,副教授 2014/07 - 2017/06,东北师范大学,地理科学学院,讲师 主要科研项目: 1.科技部青年项目任务,典型沼泽植被近自然恢复的种源限制机制,2023/12-2026/11, 60万,主持,在研 2.科技部基础性工作专项子课题,吉林省主要沼泽湿地植物种质资源调查,2020/01-2024/12,80万,主持,在研 3.国家自然科学基金面上基金项目,草丘微地貌对苔草泥炭沼泽碳排放关键过程的影响机制研究,2019/01-2022/12,63万,主持,在研 4.吉林省自然科学基金项目, 长白山区密丛型苔草沼泽甲烷排放特征及影响机制研究 ,2020/01-2022/12,6万,主持,在研 5.吉林省自然科学基金主题引导项目子课题,吉林省湿地关键动植物及其栖息地现状调查与评估,2019/01-2021/12,10万,主持,在研 6.吉林省优秀青年基金项目,长白山区密丛型苔草泥炭沼泽土壤有机碳存储特征及其稳定性研究,2018/01-2019/12,10万,主持,结题. 7.国家自然科学基金青年科学基金项目,草丘微地貌格局对苔草泥炭沼泽有机碳累积的影响机制研究,2016/01- 2018/12,24万,主持,结题 代表性论文: 1.Xu SQ, Wang M*, Zhou JH, Huang YJ, Zhang J, Wang SZ. Soil bacteria, archaea, and enzymatic activity of natural and rewetted peatlands display varying patterns in response to water levels. Catena, 2023, 228: 107191. 2.Wang M, Wang YX, Wang SZ*, Jiang M, Wang GD**. The type of soil amendment during farming affects the restorability of peatlands. Ecological Engineering, 2023, 189(2023):106916. 3.Wang M, Xu S, Wang S, Chen C, Wang Y and Liu L. Responses of soil enzyme activities and bacterial community structure to different hydrological regimes during peatland restoration in the Changbai Mountain, northeast China. Frontiers in Microbiology, 2022, 13:1005657. 4.Wang M, Wang SZ, Cao YW, et al. The effects of hummock-hollow microtopography on soil organic carbon stocks and soil labile organic carbon fractions in a sedge peatland in Changbai Mountain, China.Catena,2021. 5.Wang M, Han YY, Xu ZW, et al. Hummock-hollow microtopography affects soil enzyme activity by creating environmental heterogeneity in the sedge-dominated peatlands of the Changbai Mountains, China. Ecological Indicator. 2021, 121:107187. 6.Wang GD, Jiang M, Wang M*, et al. Element composition of soils to assess the success of wetland restoration. Land Degradation & Development. 2020,1–9. 7.Wang M, Wang SZ, Wang GD, et al. Soil seed banks and restoration potential of tussock sedge meadows after farming in Changbai Mountain, China[J]. Marine and Freshwater Research, 2020, 71(9):1323-1650. 8.Wang GD, Jiang M, Wang M*, et al. Natural revegetation during restoration of wetlands in the Sanjiang Plain, Northeastern China. Ecological Engineering, 2019,132:49-55. 9.Wang M, Wang SZ, Wang GD, et al.Tussock’s importance in supporting plant diversity in Carex schmidtii Meinsh. Wetlands Marine and Freshwater Research. 2019, 70, 807-815. 10.Wang M, Li XJ, Wang SZ, et al. Patterns and controls of temperature sensitivity of soil respiration in a meadow steppe of the Songnen Plain, Northeast China. PLoS ONE, 2018, 13(9): e0204053. 11.Wang M, Wang GD*, Wang SZ*, et al. Structure and Richness of Carex meyeriana Tussocks in Peatlands of Northeastern China, Wetlands, 2018, 2(38): 15-23. 12.Wang M, Wang GD, Lu XG, et al. Soil seed banks and their implications for wetland restoration along the Nongjiang River, Northeastern China. Ecological Engineering, 2016, (96):26-33. 13.Wang M, Liu XT, Zhang JT, et al. Diurnal and seasonal dynamics of soil respiration at the temperate Leymus Chinensis meadow steppes in the western Songnen Plain, China. Chinese Geographical Science, 2014, 24 (3): 287-296. 14.Wang M, Liu XT, Zhang JT, et al. Soil respiration associated with plant succession at the meadow steppes in Songnen Plain, northeast China. Journal of Plant Ecology. 2015,8(1),1-10. 15.Yu XL, Li XJ, Xu LS,Wang M*, et al. Diurnal variation of soil CO2, efflux and its optimal measuring time-window of temperate meadow steppes in western Songnen Plain, China[J]. Chinese Geographical Science, 2016, 26(4):518-526. 16.Wang G, Wang M, et al. Effects of farming on the soil seed banks and wetland restoration potential in Sanjiang Plain, Northeastern China[J]. Ecological Engineering, 2015, 77:265-274. (共同第一作者) 17.Wang GD, Wang M, Yuan YX, et al. Effects of sediment load on the seed bank and vegetation of Calamagrostis angustifolia wetland community in the National Natural Wetland Reserve of Lake Xingkai, China. Ecological Engineering, 2014, 63: 27-33.(共同第一作者)

社会兼职

  • 吉林省地理学会理事
  • 吉林省泥炭学会理事

获奖情况 (数据来源:科学技术处、社会科学处)

  • 2023-12-17 吉林省科学技术奖自然科学奖二等奖

教学信息 (数据来源:教务处)

  • 土壤地理学
  • 湿地科学理论问题
  • 临班1616
  • 地理基础实验:土壤地理学

科研信息 (数据来源:科学技术处、社会科学处)

  • 项目:
  • 1. 典型沼泽植被近自然恢复的种源限制机制,国家科技部,2023年
  • 2. 吉林省主要沼泽湿地植物种质资源调查,国家科技部,2020年
  • 3. 长白山区密丛型苔草沼泽甲烷排放特征及影响机制研究,省、市、自治区科技项目,2020年
  • 4. 吉林省东水西引工程流域规划阶段陆生生态现状调查,企事业单位委托科技项目,2020年
  • 5. 吉林省湿地关键动植物及其栖息地现状调查与评估,省、市、自治区科技项目,2019年
  • 6. 草丘微地貌对苔草泥炭沼泽碳排放关键过程的影响机制研究,国家自然科学基金项目,2018年
  • 7. 长白山区密丛型苔草泥炭沼泽土壤有机碳存储特征及其稳定性研究,省、市、自治区科技项目,2018年
  • 8. 拉林河流域陆生生态调查技术服务(补充合同),企事业单位委托科技项目,2017年
  • 9. 图们江流域陆生生态调查技术服务,企事业单位委托科技项目,2015年
  • 10. 拉林河流域陆生生态调查技术服务,企事业单位委托科技项目,2015年
  • 11. 草丘微地貌格局对苔草泥炭沼泽有机碳累积的影响机制研究,国家自然科学基金项目,2015年
  • 12. 黑龙江乌裕尔河国家湿地公园总体规划图集,企事业单位委托科技项目,2015年
  • 13. 垦殖对长白山地泥炭沼泽土壤有机碳组分的影响,其他课题,2015年
  • 专著:
  • 1. 干旱地区高寒草原湿地生态安全调查与评估——以新疆巴音布鲁克草原为例,科学出版社,01-6年
  • 论文:
  • 1. 不同水位管理对恢复泥炭地土壤CO2、CH4排放的影响,生态学报,2023年
  • 2. Soil bacteria, archaea, and enzymatic activity of natural and rewetted peatlands display varying patterns in response to water levels,CATENA,2023年
  • 3. The type of soil amendment during farming affects the restorability of peatlands,ECOLOGICAL ENGINEERING,2023年
  • 4. Assessment of topsoil removal as an effective method for vegetation restoration in farmed peatlands,FRONTIERS IN ENVIRONMENTAL SCIENCE,2023年
  • 5. Responses of soil enzyme activities and bacterial community structure to different hydrological regimes during peatland restoration in the Changbai Mountain, Northeast China,FRONTIERS IN MICROBIOLOGY,2022年
  • 6. 水文管理措施对长白山区恢复泥炭地土壤酶活性的影响,生态学杂志,2022年
  • 7. Vegetation Regulates Element Composition of Soils by Enhancing Organic Matter Accumulation in the Salt Marshes of Liao River Delta, China,FRONTIERS IN MARINE SCIENCE,2022年
  • 8. Coastal salt marsh restoration drives element composition of soils toward its original state by recovering soil organic matter,LAND DEGRADATION & DEVELOPMENT,2022年
  • 9. Variations in soil microbial communities in the sedge-dominated peatlands along an altitude gradient on the northern slope of Changbai Mountain, China,ECOL INDIC,2021年
  • 10. The effects of hummock-hollow microtopography on soil organic carbon stocks and soil labile organic carbon fractions in a sedge peatland in Changbai Mountain, China,CATENA,2021年
  • 11. 长白山区苔草泥炭沼泽植物物种多样性,应用生态学报,2021年
  • 12. 吉林省26处湿地地表水中硝态氮和氨氮含量分布特征,湿地科学,2021年
  • 13. Hummock-hollow microtopography affects soil enzyme activity by creating environmental heterogeneity in the sedge-dominated peatlands of the Changbai Mountains, China,ECOL INDIC,2021年
  • 14. Element composition of soils to assess the success of wetland restoration,LAND DEGRADATION & DEVELOPMENT,2020年
  • 15. Soil seed banks and restoration potential of tussock sedge meadows after farming in Changbai Mountain, China,MAR FRESHWATER RES,2020年
  • 16. Does the element composition of soils of restored wetlands resemble natural wetlands ?,GEODERMA,2019年
  • 17. Natural revegetation during restoration of wetlands in the Sanjiang Plain, Northeastern China,ECOL ENG,2019年
  • 18. Importance of tussocks in supporting plant diversity in Carex schmidtii Meinsh. wetlands,MAR FRESHWATER RES,2019年
  • 19. 长白山区金川泥炭沼泽土壤酶活性特征,湿地科学,2018年
  • 20. Patterns and controls of temperature sensitivity of soil respiration in a meadow steppe of the Songnen Plain, Northeast China,PLOS ONE ,2018年
  • 21. Structure and Richness of Carex meyeriana Tussocks in Peatlands of Northeastern China,WETLANDS,2018年
  • 22. 草丘微地貌对苔草泥炭沼泽枯落物分解的影响,生态学杂志,2018年
  • 23. 新疆巴音布鲁克高寒沼泽湿地植物群落空间分布与环境解释,湖泊科学,2017年
  • 24. Soil seed banks and their implications for wetland restoration along the Nongjiang River, Northeastern China,ECOL ENG,2016年
  • 25. 水位和草丘微地貌对巴音布鲁克高寒沼泽植物群落物种多样性的影响,湿地科学,2016年
  • 26. TROPHIC STATUS OF THE MIRES IN CHANGBAI MOUNTAINS, NORTHEAST CHINA,15th International PEAT Congress 2016,2016年
  • 27. Diurnal variation of soil CO2 efflux and its optimal measuring time-window of temperate meadow steppes in western Songnen Plain, China,CHINESE GEOGRAPHICAL SCIENCE,2016年
  • 28. A testate amoebae transfer function from Sphagnum-dominated peatlands in the Lesser Khingan Mountains, NE China,J PALEOLIMNOL,2015年
  • 29. Effects of farming on the soil seed banks and wetland restoration potential in Sanjiang Plain, Northeastern China,ECOL ENG,2015年
  • 专利:
  • 一种利用土壤繁殖体库进行退耕泥炭地苔草群落快速重建的方法 2022-12-20
  • 一种控制退化泥炭地非目标种并促进优势植被重建的方法 2022-01-28
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