高潜水位煤粮复合区主动适应性采矿复垦耦合修复研究进展

    Research progress on coupled restoration of active adaptive mining and reclamation in coal-grain overlapping areas with high groundwater level

    • 摘要: 高潜水位煤粮复合区对于保障国家粮食安全与能源安全至关重要,科学有效的土地复垦与生态修复技术理念有助于高潜水位煤粮复合区生态保护与高质量发展。本文基于开采沉陷过程与原理,从开采沉陷盆地形变坡位与潜水位波动视角,系统分析高潜水位煤粮复合区采矿扰动不同区域耕地质量破坏特征。基于主动适应性修复视角,厘清我国土地复垦与生态修复领域政策法规与技术标准的演进脉络与背景,深入分析主动适应性修复理念的现实困境与潜在技术路径及发展潜力,给出了主动适应性修复理念的初步科学设想与核心内涵。进而从基础理论与理念、技术体系、工程实践等方面围绕我国高潜水位煤粮复合区土地复垦与生态修复研究进行系统梳理,从地层结构、潜水位埋深、开采工艺与时序、地形地貌与水系特征、气候特点等方面分析了高潜水位煤粮复合区主动适应性修复的影响因素。基于已有研究指出高潜水位采煤沉陷区采动岩土体协同形变机制、高潜水位煤粮复合区开采沉陷积水时滞效应与调控机制、高潜水位煤粮复合区沉陷调控与微地貌重塑联动机理、顾及多元因素耦合影响的修复时机模型构建等是亟待解决的关键科学问题。本文试图进一步拓展和创新高潜水位煤粮复合区生态修复技术理念,为高潜水位煤粮复合区生态修复与水土资源高效利用提供科学参考与技术支撑。

       

      Abstract: Coal-grain overlapping areas with high groundwater level are crucial to safeguarding national food and energy security. Scientific and effective theories and technologies for land reclamation and ecological restoration contribute to ecological protection and high-quality development in such areas. Based on the processes and mechanisms of mining subsidence, this paper systematically analyzes the damage characteristics of cultivated land quality across different mining-disturbed zones in coal-grain overlapping areas with a high groundwater level, from the perspectives of deformation slope positions within subsidence basins and groundwater level fluctuations. From the viewpoint of active adaptive restoration, this paper clarifies the evolutionary context and background of policies, regulations and technical standards governing land reclamation and ecological restoration in China. It further explores the practical dilemmas, potential technical approaches and development prospects of the active adaptive restoration concept, and puts forward its preliminary scientific conception and core connotation. Moreover, this paper systematically reviews research on land reclamation and ecological restoration for coal-grain overlapping areas with high groundwater level in China in terms of basic theories and concepts, technical systems and engineering practices. It also analyzes the influencing factors of active adaptive restoration in these areas, including stratigraphic structure, groundwater level depth, mining techniques and schedules, topographic and hydrological features, as well as climatic characteristics. Based on existing research, this paper identifies several urgent key scientific issues that need to be addressed: the synergistic deformation mechanism of mining-induced rock and soil masses in high groundwater level coal mining subsidence areas; the time-lag effect and regulation mechanism of waterlogging caused by mining subsidence; the coupling mechanism between subsidence control and micro-landform reconstruction; and the restoration timing model considering the coupled effects of multiple factors. This paper aims to further expand and innovate the theoretical framework of ecological restoration technologies for coal-grain overlapping areas with high groundwater level, and provide scientific references and technical support for ecological restoration and efficient utilization of soil and water resources in such regions.

       

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