青海三江源地区土地覆盖揭示的生态系统变化(1990-2015)

Pub Date : 2023-04-01 DOI:10.1016/j.rcar.2023.05.001
XuWei Sun , Sen Li , XiaoHui Zhai , XiaoXu Wei , ChangZhen Yan
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引用次数: 2

摘要

青海省三江源区位于中国青藏高原,是长江、黄河和澜沧江的主要源头,对中国和东南亚的淡水资源安全具有重要意义。它是中国生态功能的关键生态区,近几十年来由于气候变化和人类压力而发生了变化甚至退化。为了有效保护和恢复退化的生态系统,中国政府在TRHR启动了一系列生态保护项目。定量评估生态系统变化及其与驱动因素的关系,对于深入了解生态系统的长期变化和生态恢复政策的影响,为生态恢复提供切实可行的见解至关重要。这里,用陆地卫星1990-2015年的系列数据对土地覆盖数据进行了解释。不同生态系统的模式及其发展过程源于土地覆盖的变化。结果表明,TRHR的生态系统类型包括森林、草地、农田、湿地、人工地表和荒地,分别占4.51%、70.80%、0.15%、9.47%、0.16%和14.90%。荒地转湿地是1990~2015年生态系统发生的重大变化。气温和降水量的增加以及生态恢复的实施有助于维持相对稳定的生态系统模式。有必要继续开展生态项目,以改善和/或维护TRHR的生态系统,因为在气候变化和人类活动不断增加的情况下,土地仍有退化的风险。
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Ecosystem changes revealed by land cover in the three-river headwaters region of Qinghai, China (1990–2015)

The Three-River Headwaters Region (TRHR) of Qinghai Province, in the Tibetan Plateau of China, is the main source of the Yangtze, Yellow, and Lancang rivers, and is very significant to the security of freshwater resources for China and southeastern Asia. It is a critical ecological region of China for its ecological functions, and has been changed or even degraded in recent decades owing to climate change and human pressure. To effectively protect and restore the degraded ecosystems, the Chinese government initiated a series of ecological conservation projects in TRHR. It is essential to quantitatively assess ecosystem changes and their relationship to driving factors for in-depth understanding of long-term changes of ecosystems and effects of ecological restoration policies and offer practical insights for ecological restoration. Here, land cover data has been interpreted with the series data of Landsat during 1990–2015. The patterns of different ecosystems and their developing process have been derived from land cover change. The results show that ecosystem types in TRHR include forest, grassland, cropland, wetland, artificial surface and barren land, accounting for 4.51%, 70.80%, 0.15%, 9.47%, 0.16% and 14.90%, respectively. Barren land converted to wetland was the significant ecosystem change from 1990 to 2015. Increases in temperature and precipitation and implementation of ecological rehabilitation helped maintain relatively stable ecosystem patterns. It is necessary to continue ecological projects to improve and/or maintain the ecosystems in TRHR because there is still a risk of land degradation under increasing climate change and human activity.

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