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    遥感驱动与多源融合方法的生态质量评价对比研究——以江苏省为例

    A comparative study between remote sensing-driven and multi-source fusion methods for ecological quality assessment: A case study in Jiangsu Province

    • 摘要: 生态质量评价对于环境管理和政策制定具有重要意义。当前不同生态评价方法的对比研究尚存在不足,尤其缺乏对指标选取逻辑和评价性能的系统性分析。该文以江苏省为例,对遥感生态指数(remote sensing based ecological index, RSEI)与生态质量指数(environmental quality index, EQI)2种常用评价体系进行多维对比。结果表明: ①两者在整体评价结果上呈显著正相关(ρ=0.737,p < 0.001); ②RSEI强调自然因子,如植被覆盖和地表干度,适用于生态恢复动态监测,而EQI综合生态格局、功能和人类胁迫,具备更强的政策关联性和解释力; ③进一步基于“结构-功能-胁迫”三维生态内涵,采用地理探测器量化分析各维度指标对生态质量的解释力,揭示2种体系在不同维度下的适用边界与性能差异。研究为构建融合型生态质量监测与评估体系提供了方法参考与理论支撑。

       

      Abstract: Ecological quality assessment (EQA) plays a critical role in environmental management and policy formulation. However, there remains a lack of comparative studies among different EQA methods, particularly in systematic analysis of both indicator selection and their performance. Given this, targeting Jiangsu Province, this study conducted a multidimensional comparative analysis of two common EQA frameworks-the remote sensing-based ecological index (RSEI) and the environmental quality index (EQI). The results indicate that both EQA frameworks generally exhibited a significant positive correlation (ρ=0.737, p < 0.001). Moreover, they presented distinct emphases. Specifically, the RSEI prioritizes natural factors like vegetation cover and surface dryness, making it suitable for monitoring ecological restoration dynamics. In contrast, the EQI integrates ecological patterns, functions, and human-induced pressures, offering stronger policy relevance and explanatory capacity. Leveraging the "structure-function-pressure" three-dimensional ecological framework, the respective explanatory capacities of dimensional indicators on ecological quality were quantified using geographical detectors. This clarified the specific differences in applicability boundaries and performance of the two EQA frameworks across these dimensions. This study provides methodological reference and theoretical foundations for developing integrated ecological quality monitoring and assessment systems.

       

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