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金属矿山 ›› 2026, Vol. 55 ›› Issue (8): 187-.

• 安全与环保 • 上一篇    

基于改进RSEI指数的尾矿库全生命周期生态质量演变分析

李雯静1,2 谢邹玥1 战 川1   

  1. 1.武汉科技大学资源与环境工程学院,湖北 武汉 430081; 2.冶金矿产资源高效利用与造块湖北省重点实验室,湖北 武汉 430081
  • 出版日期:2026-08-15 发布日期:2026-09-08
  • 作者简介:李雯静(1978—),女,教授,博士,博士研究生导师。
  • 基金资助:
    国家自然科学基金项目(编号:42301421)。

Life-Cycle Analysis of Ecological Quality Evolution in Tailings Ponds Using an Improved Remote Sensing Ecological Index

LI Wenjing1,2 XIE Zouyue1 ZHAN Chuan1   

  1. 1.School of Resources and Environmental Engineering,Wuhan University of Science and Technology,Wuhan 430081,China; 2.Key Laboratory of Efficient Utilization and Blocking of Metallurgical Mineral Resources,Hubei Province,Wuhan 430081,China
  • Online:2026-08-15 Published:2026-09-08

摘要: 尾矿库是矿山开采过程中高风险、高扰动的特殊功能单元,其生态环境质量在不同生命周期阶段呈现 显著差异。现有研究多聚焦矿区整体,缺乏对尾矿库生态环境长期演变规律的系统刻画。以湖北黄麦岭磷石膏尾矿 库为例,基于1994—2024年Landsat长时序遥感影像,结合尾矿库环境特点选取MSAVI和BSI指标替换原有的绿度 (NDVI)和干度(NDBSI)因子,并利用第一、第二主成分加权构建改进遥感生态指数(TP_RSEI)进行定量评价。研究 结果表明:TP_RSEI的平均相关度0.70优于单一指标,能有效表征研究区生态特征;时间维度上,30年间研究区 TP_RSEI均值由0.64下降至0.52,降幅为18.75%,整体呈现“先退化、后改善”的波动演变规律,其变化过程与尾矿 库“建设—运行—停用—修复”的全生命周期阶段高度耦合;空间格局上,生态环境呈现显著的“中心退化、边缘恢复” 特征,运行期高强度堆存导致生态退化,而闭库及修复工程促使生态质量逐步回升。本研究从全生命周期视角揭示 了尾矿库生态环境质量的演变规律,提出的TP_RSEI方法有效提升了遥感生态指数在尾矿库复杂场景下的适用性, 可为尾矿库生态修复成效评估、监管决策及绿色矿山建设提供科学依据与技术支撑。

关键词: 遥感生态指数 , 尾矿库全生命周期 , 生态环境质量 , 时空变化 , 生态修复

Abstract: Tailings ponds are special functional units with high risks and disturbances during the mining process,and their ecological environment quality shows significant differences at different life cycle stages.Existing studies mostly focus on the entire mining area,lacking systematic characterization of the long-term evolution laws of the ecological environment of tail ings ponds.Therefore,this study takes the Huangmailing phosphogypsum tailings pond in Hubei Province as an example,based on the long-term Landsat remote sensing images from 1994 to 2024,and selects the MSAVI and BSI indicators to replace the o riginal greenness (NDVI) and dryness (NDBSI) factors in combination with the environmental characteristics of the tailings pond.The improved remote sensing ecological index (TP_RSEI) is constructed by weighting the first and second principal components for quantitative evaluation.The research results show that:The average correlation degree of TP_RSEI is 0.70, which is better than that of a single indicator,and can effectively represent the ecological characteristics of the study area.In the temporal dimension,the mean value of TP_RSEI in the study area decreased from 0.64 to 0.52 over 30 years,with a de cline of 18.75%,showing a fluctuating evolution pattern of "first degradation and then improvement",which is highly coupled with the full life cycle stages of the tailings pond,namely "construction-operation-shutdown-restoration".In the spatial pattern, the ecological environment shows a significant feature of "degradation in the center and recovery at the edge".The high-inten sity storage during the operation period led to ecological degradation,while the closure and restoration projects promoted the gradual improvement of ecological quality.This study reveals the evolution laws of the ecological environment quality of tailings ponds from a full life cycle perspective.The proposed TP_RSEI method effectively enhances the applicability of the remote sensing ecological index in the complex scenarios of tailings ponds,providing scientific basis and technical support for the as sessment of ecological restoration effectiveness,regulatory decision-making,and the construction of green mines.

Key words:  remote sensing ecological index,full life-cycle of tailings pond,ecological environmental quality,spatiotempo ral variation,ecological restoration

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