数据集(库)目录

出版期刊|区域分类

数据详情

青藏高原年度生态风险评估数据集(1km, 2000-2020)


夏永强1王浩*1唐不甜1,2惠乐1韩彬瑶1
1 陕西师范大学地理科学与旅游学院,西安7101192 中国科学院生态环境研究中心,北京100085

DOI:10.3974/geodb.2025.06.01.V1

出版时间:2025年6月

网页浏览次数:50       数据下载次数:0      
数据下载量: 无      数据DOI引用次数:

关键词:

生态风险,生态系统健康,生态系统服务

摘要:

生态风险评估可以帮助识别和量化生态系统面临的潜在风险和威胁,评估人类活动或自然变化对生态系统健康、功能和服务的影响。作者通过融合2000-2020年土地利用、NDVI、土壤类型、年降水量、年平均气温等多源数据和模型算法,构建了一个综合生态系统健康和生态系统服务的评估框架,通过计算区域生态系统结构、质量和服务相关指标生成2000-2020年逐年生态风险评估数据集。其空间分辨率为1 km。生态风险数据的数值越小,代表生态风险越高,数据缺失被设置为-9999。数据集存储为.tif格式,由21个数据文件组成,数据量为485 MB(压缩为1个文件,155 MB)。

基金项目:

中华人民共和国科学技术部(2019QZKK0403)

数据引用方式:

夏永强, 王浩*, 唐不甜, 惠乐, 韩彬瑶. 青藏高原年度生态风险评估数据集(1km, 2000-2020)[J/DB/OL]. 全球变化数据仓储电子杂志(中英文), 2025. https://doi.org/10.3974/geodb.2025.06.01.V1.

参考文献:


     [1] Liu, C., Chen, L., Vanderbeck, R. M., et al. A Chinese route to sustainability: postsocialist transitions and the construction of ecological civilization [J]. Sustainable Development, 2018, 26(6): 741-748.
     [2] Shao, Q. Q., Liu, S. C., Ning, J., et al. Assessment of ecological benefits of key national ecological projects in china in 2000-2019 using remote sensing [J]. Acta Geographica Sinica, 2022, 77(9): 2133-2153.
     [3] Dong, S. K., Shang, Z. H., Gao, J. X., et al. Enhancing sustainability of grassland ecosystems through ecological restoration and grazing management in an era of climate change on Qinghai-Tibetan Plateau [J]. Agriculture, Ecosystems and Environment, 2019, 287(C): 106684.
     [4] Antongiovanni, M., Venticinque, E. M., Tambosi, L. R., et al. Restoration priorities for caatinga dry forests: landscape resilience, connectivity and biodiversity value [J]. Journal of Applied Ecology, 2022, 59(9): 2287-2298.
     [5] Guo, R., Wu, T., Liu, M. G., et al. The Construction and optimization of ecological security pattern in the Harbin-Changchun Urban Agglomeration, China [J]. International Journal of Environmental Research and Public Health, 2019, 16(7): 1190.
     [6] Gao, F. J., Yang, W., Zhang, S., et al. An integrated approach to constructing ecological security pattern in an urbanization and agricultural intensification area in Northeast China [J]. Land, 2023, 12(2): 330.
     [7] Hasani, M., Pielesiak, I., Mahiny, A. S., et al. Regional ecosystem health assessment based on landscape patterns and ecosystem services approach [J]. Acta Ecologica Sinica, 2023, 43(2): 333-342.
     [8] Wang, L., Ren, G., Hua, F., et al. Integrating habitat availability into restoration efforts for biodiversity conservation: evaluating effectiveness and setting priorities [J]. Biological Conservation, 2021, 257: 109127.
     [9] Li, S. C., Zhang, H., Zhou, X. W., et al. Enhancing protected areas for biodiversity and ecosystem services in the Qinghai-Tibet plateau [J]. Ecosystem Services, 2020, 43: 101090.
     [10] Sharma, S., Joshi, P. K., Fürst, C. Unravelling net primary productivity dynamics under urbanization and climate change in the western Himalaya [J]. Ecological Indicators, 2022, 144: 109508.
     [11] Frondoni, R., Mollo, B., Capotorti, G. A landscape analysis of land cover change in the Municipality of Rome (Italy): spatio-temporal characteristics and ecological implications of land cover transitions from 1954 to 2001 [J]. Landscape and Urban Planning, 2011, 100(1): 117-128.
     [12] Kang, P., Chen, W., Hou, Y., et al. Linking ecosystem services and ecosystem health to ecological risk assessment: a case study of the Beijing-Tianjin-Hebei urban agglomeration [J]. Science of The Total Environment, 2018, 636: 1442-1454.
     [13] Field, C. B., Behrenfeld, M. J., Randerson, J. T., et al. Primary production of the biosphere: integrating terrestrial and oceanic components [J]. Science, 1998, 281(5374): 237-240.
     [14] Hou, Y., Lü, Y., Chen, W. P., et al. Temporal variation and spatial scale dependency of ecosystem service interactions: a case study on the central Loess Plateau of China [J]. Landscape Ecology, 2017, 32(6): 1201-1217.
     [15] Tian, G. G., Qiao, Z. Assessing the impact of the urbanization process on net primary productivity in China in 1989-2000 [J]. Environmental Pollution, 2014, 184: 320-326.
     [16] Rendon, P., Steinhoff-Knopp, B., Burkhard, B. Linking ecosystem condition and ecosystem services: a methodological approach applied to European agroecosystems [J]. Ecosystem Services, 2022, 53: 101387.
     [17] Jiang, W., Wu, T., Fu, B. J. The value of ecosystem services in China: a systematic review for twenty years [J]. Ecosystem Services, 2021, 52: 101365.
     [18] Costanza, R., D’Arge, R., De Groot, R., et al. The value of the world’s ecosystem services and natural capital [J]. Nature, 1997, 387(6630): 253-260.
     [19] Chen, J. H., Wang, Y. F., Sun, J., et al. Precipitation dominants synergies and trade-offs among ecosystem services across the Qinghai-Tibet Plateau [J]. Global Ecology and Conservation, 2021, 32: e01886.
     [20] Fan, Y. P., Fang, C. L. Evolution process and obstacle factors of ecological security in western China, a case study of Qinghai Province [J]. Ecological Indicators, 2020, 117: 106659.
     [21] Pan, Z. Z., Gao, G. Y., Fu, B. J. Spatiotemporal changes and driving forces of ecosystem vulnerability in the Yangtze River Basin, China: quantification using habitat-structure-function framework [J]. Science of The Total Environment, 2022, 835: 155494.
     [22] Li, K., Hou, Y., Fu, Q., et al. Integrating decision-making preferences into ecosystem service conservation area identification: a case study of water-related ecosystem services in the Dawen River watershed, China [J]. Journal of Environmental Management, 2023, 340: 117972.
     

数据下载:

序号 数据名 数据大小 操作
1 ER2000-2020.rar 159576.08KB
主办单位
中国科学院地理科学与资源研究所    中国地理学会
协办单位
CODATA发展中国家任务组    肯尼亚JKUAT大学    数字化林超地理博物馆