“双碳”目标下我国选煤行业低碳转型与高质量发展路径

    Low-carbon transition and high-quality development pathways for China′s coal preparation industry under the “Dual Carbon” goals

    • 摘要: 在 “双碳” 战略深入推进与能源结构加速转型的时代背景下,我国煤炭行业正经历从燃料主导向原料与材料属性延伸的深刻变革,选煤作为煤炭清洁高效利用的源头环节,其战略价值愈发凸显。立足 2025 年《中华人民共和国能源法》实施后的政策导向,结合新能源产业爆发式增长、煤炭消费行业(煤电、冶金、煤化工等)技术升级的现实格局,针对当前选煤行业存在的原煤入选率波动、智能化建设碎片化、工艺选择与市场需求适配不足等问题,系统展开发展路径研究。综合分析了晋陕蒙新四省(区)占全国 82% 以上产量的资源布局特征,以及干法选煤、重介分选等领先技术的应用现状,指出选煤行业需紧扣低碳发展核心要求。在工艺设计层面,提出动力煤与化工用煤优先采用干法分选工艺,冶金用煤推行 “干法粗选 + 湿法精选” 模式,同时强化采选充一体化设计与新能源耦合应用;在管理体制方面,建议成立专业化煤质选煤中心,推动采选深度融合与信息化管控;在生产经营维度,构建市场导向的定制化产品体系与副产品高值利用链条;在技术创新领域,聚焦设备大型化、智能决策系统建设与特色煤种分选技术研发。此外,从政策保障角度提出建立全链条煤质管控体系、差异化财税激励机制与跨学科人才培养模式等建议。研究旨在通过多维度协同优化,推动选煤行业实现工艺低碳化、管理专业化、产品高端化、智能高效化转型,为提升煤炭资源利用效率、降低全产业链碳排放提供实践路径,助力我国 “双碳” 目标与能源安全战略协同落地。

       

      Abstract: Against the backdrop of the deepening “Dual Carbon” strategy and the accelerated transformation of the energy structure, China′s coal industry is undergoing a profound shift, extending from its primary role as a fuel towards increased utilization as a raw material and feedstock. As the crucial first step in the clean and efficient utilization of coal, coal preparation holds growing strategic importance. Based on the policydirection following the implementation of the Energy Law of the People′s Republic of China in 2025, and considering the explosive growth of new energy industries and the technological upgrades in coal-consuming sectors (such as coal-fired power, metallurgy, and coal chemicals), this study systematically investigates the development path for the coal preparation industry. It addresses existing challenges, including fluctuations in the raw coal washing rate, fragmented intelligent construction, and insufficient alignment of process selection with market demands. The analysis synthesizes the resource distribution characteristics of Shanxi, Shaanxi, Inner Mongolia, and Xinjiang, which account for over 82% of national output, and the application status of leading technologies like dry coal separation and dense medium separation. It underscores that the industry must closely align with the core requirement of low-carbon development. At the process design level, it proposes prioritizing dry separation for steam coal and coal for chemical use, and promoting a “dry coarse separation + wet fine separation” model for metallurgical coal, while strengthening integrated mine-preparation-backfill design and coupled applications with new energy. In terms of the management system, it suggests establishing specialized coal quality and preparation centers to promote deeper integration of mining and preparation, alongside enhanced IT-based management and control. From a production and operation perspective, it recommends building a market-oriented, customized product system and value-added utilization chains for by-products. In the realm of technological innovation, the focus should be on developing large-scale equipment, intelligent decision-making systems, and separation technologies for specific coal types. Furthermore, from a policy support standpoint, proposals include establishing a full-chain coal quality management system, differentiated fiscal and tax incentive mechanisms, and interdisciplinary talent cultivation models. The study aims to promote a multi-dimensional coordinated optimization, driving the coal preparation industry towards low-carbon processes, professional management, high-value products, and intelligent efficiency. This provides a practical pathway for improving coal resource utilization efficiency and reducing carbon emissions across the entire industrial chain, thereby supporting the synergistic achievement of China′s “Dual Carbon” goals and energy security strategy.

       

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