4.6 Article

Vegetation Disturbance and Recovery Dynamics of Different Surface Mining Sites via the LandTrendr Algorithm: Case Study in Inner Mongolia, China

期刊

LAND
卷 11, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/land11060856

关键词

LandTrendr algorithm; surface mining site; disturbance; recovery; time-series; Google Earth Engine

资金

  1. National Key R&D Program of the Ministry of Science and Technology of China [2017YFC0504401]

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This study demonstrates the use of the LandTrendr algorithm for long-term monitoring of mining sites, and reveals the ecological impacts of different mining patterns and surrounding environments. Over time, disturbance decreases, recovery decreases and reaches a fluctuating state. Different mining patterns and surrounding environments have different ecological impacts, with scattered mining areas showing more natural recovery and restored ecosystems being more stable.
Mining sites are areas where mining and restoration coexist and are constantly changing. The vegetation condition can reflect the process of surface mining and restoration, while quantifying the impacts of different mining patterns and surrounding environments on vegetation is the key to balancing mining activities and ecological restoration. In this study, long-term monitoring from 1986 to 2020 was implemented by the LandTrendr algorithm to reveal the ecological impacts of two concentrated and contiguous surface mining sites with different mining patterns (scattered and aggregated mining) and surrounding environments in Inner Mongolia, China. The results show that it is reasonable to use the LandTrendr algorithm for long-term monitoring of surface mining sites, and that the ecological impacts of different surface mining sites in ecologically fragile areas have the same regularity. As the duration increases, the magnitude of disturbance decreases, and the magnitude of recovery first decreases and then reaches a natural fluctuation state after 20 years of recovery. Different mining patterns and surrounding environments bring different ecological impacts. Scattered mining areas are more likely to produce natural recovery while the restored ecosystem is more stable. The performance of mining development disturbance is more obvious in places with better ecological environment, while the effect of ecological restoration is also more significant. This study can provide guidance for the rational planning of mining and restoration activities in ecologically fragile areas.

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