智能化赋能绿色矿山建设路径研究

    Research on the path of intelligent empowerment for green mine construction

    • 摘要: 新修订的《中华人民共和国矿产资源法》于2025年7月1日起施行,将绿色矿山建设和智能化改造明确纳入法律框架,绿色矿山建设已纳入法律鼓励与支持的范畴,智能化技术正重塑矿产资源开发模式。研究系统梳理我国绿色矿山建设的政策演进与实践成效,分析智能化赋能的开发利用技术体系与典型实践,总结瑞典、德国、智利等国家的融合发展经验,从制度、技术、路径三个维度提出智能化赋能绿色矿山建设的协同发展路径。研究结果表明:第一,绿色矿山建设已取得显著成效,但绿色矿山与智能矿山的深度融合正处于关键突破期,融合推进中面临标准不兼容、数据孤岛、路径不清、复合型人才匮乏等突出瓶颈;第二,智能化赋能绿色矿山的本质是“制度-技术-装备”的系统性协同,矿山全生命周期的系统创新模式、智能化驱动的安全与可持续性模式、运输电动化与新能源微网协同模式等为我国分类施策、分步推进提供了有益借鉴;第三,构建“制度-技术-路径”三维螺旋协同推进体系是智能化赋能绿色矿山建设的系统路径,我国应依据“约束强度-收益可验证性-基础能力”三维原则,确定三种国际模式“风险防控→减碳增效→系统集成”的组合优先级,建立“强制性底线-鼓励性增效-引领性创新”的三级目标体系。三维路径的核心要义是“标准引领、数据赋能、装备自主”三者通过反馈循环形成动态耦合,实现从静态政策设计向持续迭代的动态过程转变。研究旨在为破解绿色矿山与智能矿山建设“两张皮”困境提供理论参考,为推动智能化绿色矿山建设提供实践指引。

       

      Abstract: The newly revised Mineral Resources Law of the People’s Republic of China came into force on July 1, 2025, clearly incorporating green mine construction and intelligent transformation into the legal framework. Green mine construction has been included in the scope of legal encouragement and support, and intelligent technology is reshaping the mineral resources development mode. The research systematically combs the policy evolution and practical effect of green mine construction in China, analyzes the development and utilization technology system and typical practice of intelligent enabling, and summarizes the integrated development experience of Sweden, Germany, Chile and other countries, and puts forward the collaborative development path of intelligent enabling green mine construction from three dimensions of system, technology and path. The research results show that: firstly, remarkable results have been achieved in the construction of green mines, but the deep integration of green mines and intelligent mines is in a critical breakthrough period. In the process of integration, outstanding bottlenecks such as incompatible standards, isolated data islands, unclear paths and lack of compound talents are still faced. Secondly, the essence of intelligent enabling green mines is the systematic coordination of “institution-technology-equipment”. Sweden’s mine life cycle system model, Germany’s intelligent-driven safety and sustainability model, and Chile’s transport-electrification and new energy-microgrid coordination model provide useful references for China’s classified policies and step-by-step promotion. Thirdly, establishing a “institution-technology-path” three-dimensional spiral synergistic framework serves as the systematic pathway for intelligent empowerment of green mine construction. China should prioritize the combination of the three international models in the sequence of “risk prevention→carbon reduction→system integration” based on the three-dimensional principle of “constraint intensity-benefit verifiability-basic capacity”, and develop a three-tier target system comprising “mandatory baseline-incentivized efficiency improvement-leading innovation”. The core essence of the three-dimensional path lies in “standard guidance, data empowerment, and equipment autonomy”, with the three elements forming dynamic coupling through feedback loops, enabling the transition from static policy design to a continuously iterative dynamic process. The research aims to provide theoretical reference for solving the dilemma of “two separate tracks” between green mine and intelligent mine construction, and to provide practical guidance for promoting the construction of intelligent green mine.

       

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