“双碳”背景下煤炭开采与综合利用转型升级研究

    Research on the transformation and upgrading of coal mining and comprehensive utilization under the background of “dual carbon” goals

    • 摘要: 在“双碳”背景下,煤炭开采与综合利用转型升级的研究目的在于探索低碳高效的开采技术、优化清洁化利用路径、构建循环经济模式,以推动传统煤炭产业向绿色低碳方向转型,实现资源开发与环境保护的协调发展,为我国能源结构优化、碳中和目标实现提供技术支撑与产业实践方案。在解读煤炭行业碳达峰碳中和政策的基础上,从供需失衡、价格下行、债务压力、结构性矛盾等角度分析当前煤炭行业面临的多重困境,并从技术革新与效率提升、清洁能源协同发展、碳减排与循环经济、政策与市场机制四方面,给出煤炭开采与综合利用转型升级具体路径。转型升级具体路径包括智能化开采、绿色矿山建设、燃煤发电升级、多能互补体系、瓦斯综合利用、矿井地热开发、CCUS技术应用、煤基固废处理、煤化工转型、转型金融支持和产能优化布局等11个方向,涵盖技术、政策、产业协同等多个维度。研究结论指出,煤炭开采与综合利用的转型升级意义重大,通过绿色开采技术减少环境破坏,提升原煤入洗率和资源回收率实现清洁化利用;发展煤化工、煤制氢等高效增值路径替代传统燃烧方式,推动煤电与新能源协同的低碳能源体系;同时依托碳捕集技术与循环经济模式减少全生命周期碳排放,既保障能源安全又支撑工业需求,最终实现煤炭从“高碳资源”向“低碳载体”的战略转型。

       

      Abstract: Against the background of “dual carbon” goals, the research on the transformation and upgrading of coal mining and comprehensive utilization aims to explore low-carbon and efficient mining technologies, optimize clean utilization pathways, and establish a circular economy model. This is to facilitate the transformation of the traditional coal industry towards a green and low-carbon direction, achieve coordinated development between resource exploitation and environmental protection, and provide technical support and industrial practice solutions for the optimization of China’s energy structure and the realization of carbon neutrality. Based on the interpretation of the carbon peak and carbon neutrality policies in the coal industry, this paper analyzes the multiple predicaments currently faced by the coal industry from the perspectives of supply-demand imbalance, price decline, debt pressure, and structural contradictions. It proposes specific paths for the transformation and upgrading of coal mining and comprehensive utilization from four aspects: technological innovation and efficiency improvement, coordinated development of clean energy, carbon reduction and circular economy, and policy and market mechanisms. The specific paths for transformation and upgrading include 11 directions such as intelligent mining, green mine construction, upgrading of coal-fired power generation, multi-energy complementary systems, comprehensive utilization of coalbed methane, development of mine geothermal energy, application of CCUS technology, treatment of coal-based solid waste, transformation of coal chemical industry, financial support for transformation, and optimization of production capacity layout. These cover multiple dimensions including technology, policy, and industrial collaboration. The conclusion of the research points out that the transformation and upgrading of coal mining and comprehensive utilization is of great significance. It aims to reduce environmental damage through green mining technologies, achieve clean utilization by increasing the rate of raw coal washing and resource recovery; develop efficient and high-value paths such as coal chemical industry and coal-to-hydrogen to replace traditional combustion methods, and promote a low-carbon energy system that integrates coal power and new energy; at the same time, it relies on carbon capture technology and circular economy models to reduce carbon emissions throughout the life cycle, ensuring energy security and supporting industrial demands, ultimately achieving the strategic transformation of coal from a “high-carbon resource” to a “low-carbon carrier”.

       

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