露天煤矿开采对植被扰动空间梯度的定量分析

    Quantitative analysis of the spatial gradient of vegetation disturbance caused by open-pit coal mining

    • 摘要: 黄河流域生态保护和高质量发展对维护区域生态安全、促进资源型地区绿色转型和提升矿区生态治理能力具有重要意义。露天煤矿开采扰动区是黄河流域典型生态影响区,采掘、剥离、排土、运输及工业场地建设等活动易造成地表形态改变、植被退化和生态服务功能下降。为定量识别露天煤矿开采对周边植被的影响范围与时空演化特征,以内蒙古准格尔旗魏家峁露天煤矿为研究对象,基于2017—2025年Landsat遥感影像,构建归一化植被指数、植被扰动强度指数和Sen趋势指标,结合多环缓冲区分析与距离衰减模型,分析矿区周边植被扰动的空间梯度、影响边界及时序变化特征。结果表明,魏家峁露天煤矿直接扰动区及邻近区域植被受采矿活动影响明显,外围区域植被状况相对较好,矿区生态影响呈显著空间分异特征。随距矿区边界距离增加,归一化植被指数整体升高,植被扰动强度指数持续降低,表明露天煤矿开采对周边植被的影响具有明显距离衰减特征。其中,小于1.50 km为强扰动区,1.50~3.00 km为扰动过渡区,超过3.00 km后扰动趋于稳定;植被扰动强度与距离符合负指数衰减关系,理论影响边界约为3.66 km,显著扰动范围约为2.97 km。Sen趋势分析结果显示,研究区植被退化与恢复并存,退化区域主要集中于矿区及邻近地带,恢复区域多分布于外围区域,说明采矿扰动、生态修复和降雨等自然因素共同影响矿区植被变化格局。研究结果可为黄河流域露天煤炭开采扰动区生态影响边界识别、生态损伤评估、修复分区划定和土地高值化利用提供遥感定量依据。

       

      Abstract: Ecological protection and high-quality development in the Yellow River Basin are of great significance for safeguarding regional ecological security, promoting the green transformation of resource-based regions and enhancing ecological governance capacity in mining areas. Open-pit coal mining disturbance zones represent typical ecologically impacted areas in the Yellow River Basin. Activities such as excavation, stripping, dumping, transportation, and the construction of industrial sites can readily lead to alterations in surface morphology, vegetation degradation, and a decline in ecosystem service functions. To quantitatively identify the impact range and spatiotemporal evolution characteristics of open-pit coal mining on surrounding vegetation, this study takes the Weijiamao Open-pit Coal Mine in Jungar Banner, Inner Mongolia, as the research object. Based on Landsat remote sensing images from 2017 to 2025, the normalized difference vegetation index, vegetation disturbance intensity index, and Sen’s trend indicator are constructed. In combination with multi-ring buffer analysis and a distance-decay model, the spatial gradient, impact boundary, and temporal variation characteristics of vegetation disturbance around the mining area are analyzed. The results show that vegetation in the directly disturbed area and adjacent zones of the Weijiamao Open-pit Coal Mine is significantly affected by mining activities, whereas vegetation conditions in the peripheral areas are relatively better, indicating pronounced spatial heterogeneity in the ecological impacts of the mining area. With increasing distance from the mining boundary, the normalized difference vegetation index generally increases, while the vegetation disturbance intensity index continuously decreases, suggesting that the impact of open-pit coal mining on surrounding vegetation exhibited a clear distance-decay pattern. Specifically, the area less than 1.50 km is identified as the strongly disturbed zone, the area within 1.50-3.00 km as the disturbance transition zone, and disturbance tends to stabilize beyond 3.00 km. Vegetation disturbance intensity shows a negative exponential decay relationship with distance, with a theoretical impact boundary of approximately 3.66 km and a significant disturbance range of approximately 2.97 km. The Sen’s trend analysis results indicate the coexistence of vegetation degradation and restoration in the study area. Degraded areas are mainly concentrated within and near the mining area, while restored areas are mostly distributed in peripheral zones, suggesting that mining disturbance, ecological restoration, precipitation, and other natural factors jointly shaped the spatial pattern of vegetation change in the mining area. The findings provide a quantitative remote sensing basis for identifying ecological impact boundaries, assessing ecological damage delineating restoration zones, and promoting high-value land use in open-pit coal mining disturbance areas of the Yellow River Basin.

       

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