广西煤炭资源勘查开发历史、现状及启示

History, current status, and implications of the exploration and exploitation of coal resources in Guangxi, China

  • 摘要:
    目的 在总结回顾广西煤炭勘查开发历史和现状的基础上,进行广西煤炭资源禀赋特点与勘查研究程度分析,基于广西煤炭自给能力和能源安全保障角度考虑,提出广西煤炭资源勘查开发建议。
    方法 通过系统资料查阅、煤矿企业调研及相关部门交流,厘清广西煤炭资源勘查程度、开发现状及煤炭供需矛盾,评价广西煤炭资源勘查开发的空间与潜力。
    结果 广西累计查明的煤炭资源储量为21.36亿t,1 500 m以浅含煤面积约20 300 km2,占全区总面积的8.58%;已勘查面积约5 065 km2,占含煤面积的24.95%。在广西现有的109个县级行政区划中,74个分布有含煤岩系,具有工业价值意义有5套煤系。区内各时代煤层发育的稳定性总体不佳,煤质多以高硫、高灰和低发热量为主,资源禀赋条件较差。同时自供保障程度低,区内现有5对正常生产矿井,近年年产量维持在300万~400万t,而全区年消费量约8 500万t,占能源总消费的45%,外部调入依赖度超95%,自给率不足5%。
    结论 广西煤炭供需缺口大、产需矛盾突出,对外调入依存度长期偏高,严重制约区域经济高质量可持续发展。基于此,提出3点建议:(1) 统筹发展与安全,在设法保持煤炭外部调入稳定的基础上,进一步深挖资源潜力,提前作好煤炭资源规划,积极稳妥推进省内煤炭产能释放,提升自治区煤炭的自给能力,高水平高质量发展广西煤炭工业;(2) 进一步加大煤炭资源勘查投入力度,做好矿业权设置区划,统筹部署勘查工作。首先在现有生产矿井深边部进行补充勘探,同时面向矿井深部复杂地质条件,围绕煤矿安全高效智能化开采目标,提供煤矿全生命周期精细地质技术保障,确保生产矿井资源接续和服务年限,其次是对关停矿井资源进行核实,为具备条件的矿井盘活复产做好准备,再次是提高已发现煤田/煤产地勘查区块的勘查程度,为矿区规划与建设提供依据,继而在找煤靶区有序安排勘查工作,寻找新的煤产地,增加自治区的煤炭资源量;(3) 注重煤与煤系共伴生矿产的协同勘查与综合评价,对于煤层埋深>1 000 m难以开采的含煤区域,可作为深部煤层气勘查有利区,进行科学合理规划与部署,提升煤炭清洁高效综合利用水平。

     

    Abstract:
    Objective Based on a comprehensive review of the history and current status of coal exploration and exploitation, this study presents an analysis of both the endowment characteristics and the exploration and research levels of coal resources in Guangxi Zhuang Autonomous Region. From the perspective of coal self-sufficiency capacity and energy security guarantee, this study proposes several recommendations for the exploration and exploitation of coal resources in the region.
    Methods The exploration level, current status of exploitation, and supply-demand imbalance of coal resources in Guangxi are determined through a systematic literature review, surveys of coal mine enterprises, and exchanges with relevant government departments. Accordingly, the space and potential for further exploration and exploitation of coal resources in the region are evaluated.
    Results In Guangxi, the cumulative identified coal resources amount to 2136 million tons. The coal-bearing areas with depths of 1500 m or less cover an area of approximately 20300 km2, accounting for 8.58% of the region’s total area. Among these areas, those that have been explored span about 5065 km2, representing 24.95% of the total. For the 109 county-level administrative areas of Guangxi Zhuang Autonomous Region, 74 of them host coal-bearing rock series, including four coal measures holding industrial value. The coal seams of various ages across the region generally show low stability and quality, largely characterized by high sulfur and ash contents and low calorific values, which suggest relatively poor resource endowment. Meanwhile, Guangxi exhibits a low coal self-sufficiency capacity. There exist five coal mines under normal operation currently, with annual production collectively maintained at 3‒4 million tons in recent years. However, the annual coal consumption of the region reaches up to approximately 85 million tons, accounting for 45% of its total energy consumption. As a result, the dependency of external coal supply exceeds 95%, while the self-sufficiency rate is less than 5%.
    Conclusions uangxi Zhuang Autonomous Region faces a significant coal scarcity and a pronounced supply-demand imbalance. These limitations lead to prolonged high dependence on external coal supply and pose a severe challenge to the high-quality, sustainable economic development of the region. Accordingly, this study proposes three recommendations. First, comprehensive planning of development and safety should be highlighted. It is advisable to further tap the region’s coal resource potential and develop coal resource exploration plans while striving to maintain a stable external coal supply. These efforts will proactively promote the release of coal productivity, enhance the coal self-sufficiency capacity, and facilitate high-level, high-quality development of the coal industry in the region. Second, it is necessary to intensify coal exploration, optimize mining right zoning, and perform comprehensive exploration deployment by introducing three measures: (1) It is necessary to conduct supplementary exploration in the deep and peripheral parts of existing production mines. Targeting the complex geological conditions in the deep parts of mines, along with the objective of safe, efficient, and intelligent coal mining, fine-scale geological technical guarantee should be provided throughout the full safety lifecycle of coal mines to ensure the resource substitution and service life of production mines; (2) Resources in abandoned mines should be verified to prepare for the activation and reproduction of qualified mines; (3) The exploration level of blocks within discovered coalfields/coal-producing areas should be enhanced to provide a basis for the planning and development of mining areas. Accordingly, exploration efforts in prospective target areas should be systematically arranged to search for new coal-producing areas and increase the coal resources of the region. Last, emphasis should be placed on the collaborative exploration and comprehensive evaluation of coals and the associated minerals of coal measures. Coal-bearing zones with burial depths of over 1000 m that are difficult to exploit should be subjected to scientific and rational planning and deployment as play fairways of deep coalbed methane. The purpose is to enhance the clean and efficient comprehensive utilization level of coals.

     

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