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王方方
2024-07-26 00:03  

  王方方1993.02-

  女,河南驻马店人,博士,讲师。现任新疆大学生态与环境学院生态系教师。

  联系方式:

  办公地点:生态与环境学院208

  电子邮件:wangfangfanggzf@163.com



教育经历:

2020-092024-06, 北京师范大学, 环境学院, 环境科学专业, 工学博士

2017-092020-06, 南京师范大学, 地理科学学院, 自然地理学专业, 理学硕士

2013-092017-06, 新疆师范大学, 地理科学与旅游学院, 地理科学专业, 理学学士

工作经历:

2024-07至今, 新疆大学, 生态与环境学院, 讲师

主要研究方向:

氮素流动及其环境效应;养分资源管理和农业生态学

主持/参与科研项目:

(1) 第二次青藏高原综合科学考察研究项目-农牧区生态安全屏障优化体系, 2019-112024-10, 4514万元, 在研, 参与

(2) 科技部水体污染控制与治理科技重大专项:河口水域生态综合调查与退化特征分析, 2017-12020-12, 结题, 参与

(3) 国家重大科学研究计划(973)项目:我国活性氮源及其对空气质量与气候变化的影响机理研究, 2014-12018-12, 结题, 参与

5年发表论文:

(1) Wang, F.F., Liu, S.L., Liu, H., et al. Resilience assessment of the nitrogen flow system in food production and consumption for sustainable development on the Qinghai-Tibet Plateau. Science of the Total Environment. 2023, 896, 165223.

(2) Wang, F.F., Liu, S.L., Liu, H., et al. Aggravation of nitrogen losses driven by agriculture and livestock farming development on the Qinghai-Tibet Plateau. Journal of Environmental Management. 2023,326, 116795.

(3) Wang, F.F., Liu, S.L., Liu, Y.X., et al. Food nitrogen footprint increased by 35% on the Third Pole during 1998-2018. Geohealth. 2023, 7, e2022GH000737.

(4) Wang, F.F., Liu, S.L., Liu, H., et al. Scenarios and sustainability of the economynitrogen resourceenvironment system on the Qinghai-Tibet Plateau. Journal of Environmental Management. 2022, 318, 115623.

(5) Wang, F.F., Liu, S.L., Liu, Y.X., et al. Long-term dynamics of nitrogen flow in a typical agricultural and pastoral region on the Qinghai-Tibet Plateau and its optimization strategy. Environmental Pollution. 2021, 288, 117684.

(6) Liu, S.L., Wang, F.F., Deng, L., et al. Multi-scale ecological connectivity dynamics associated with hydropower station: A case study in the Lancang River Valley. Frontiers in Ecology and Evolution. 2021, 6, 616356.  

(7) Wang, F.F., Wang, Y.H., Cai, Z.C., et al. Environmental losses and driving forces of nitrogen flow in two agricultural towns of Hebei province during 1997-201. Environmental Pollution. 2020, 264,114636.

(8) 王方方, 王延华, 蔡祖聪, . 基于DPSIR模型的曲周县氮素资源可持续利用评价与预测. 生态与农村环境学报, 2020, 36(9):1133-1140.

(9) 王方方, 王延华, 蔡祖聪, . 耕作制度对河北农业生产系统氮流的影响. 环境科学与技术, 2019, 42(5):174-180.

(10) Yu L., Liu, S.L., Wang, F.F., et al. Effect of ecological restoration projects on carbon footprint in a grassland ecosystem on the Qinghai-Tibet Plateau. Land Degradation & Development. 2023, 34(18), 5824-5834.

(11) Yu, L., Liu, S.L., Wang, F.F., et al. Strategies for agricultural production management based on land, water and carbon footprints on the Qinghai-Tibet Plateau. Journal of Cleaner Production. 2022, 362, 132563.

(12) Yu, L., Liu, S.L., Wang, F.F., et al. Effects of agricultural activities on energy-carbon-water nexus of the Qinghai-Tibet Plateau. Journal of Cleaner Production. 2022, 331, 129995.

(13) Liu, H., Liu, S., Wang, F., et al. How to synergize ecological restoration to co-benefit the beneficial contributions of nature to people on the Qinghai-Tibet Plateau? Journal of Environmental Management. 2023, 348, 119267.

(14) Liu, H., Liu, S.L., Wang, F.F., et al. Multilevel driving factors affecting ecosystem services and biodiversity dynamics on the Qinghai-Tibet Plateau. Journal of Cleaner Production. 2023, 396, 136448.

(15) Liu, H., Liu, S.L., Wang, F.F., et al. Identifying ecological compensation areas for ecosystem services degradation on the Qinghai-Tibet Plateau. Journal of Cleaner Production. 2023, 423, 138626.

(16) Liu, H., Liu, S.L., Wang, F.F., et al. Management practices should be strengthened in high potential vegetation productivity areas based on vegetation phenology assessment on the Qinghai-Tibet Plateau. Ecological Indicators. 2022,140, 108991.

(17) Liu, Y.X., Liu, S.L., Wang, F.F., et al. Identification of key priority areas under different ecological restoration scenarios the Qinghai-Tibet Plateau. Journal of Environmental Management. 2022, 323,116174.

(18) Li, M.Q., Liu, S.L., Wang, F.F., et al. Cost-benefit analysis of ecological restoration based on land use scenario simulation and ecosystem service on the Qinghai-Tibet Plateau. Global Ecology and Conservation. 2022, 34, e02006.


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