王路, 曹代勇, 丁正云, 陈泉霖, 邓瑞锦, 林晓炎, 李阳, 杜欣. 闽西南地区煤成石墨的控制因素与成矿区带划分[J]. 煤炭学报, 2020, 45(8): 2865-2871. DOI: 10.13225/j.cnki.jccs.2019.0690
引用本文: 王路, 曹代勇, 丁正云, 陈泉霖, 邓瑞锦, 林晓炎, 李阳, 杜欣. 闽西南地区煤成石墨的控制因素与成矿区带划分[J]. 煤炭学报, 2020, 45(8): 2865-2871. DOI: 10.13225/j.cnki.jccs.2019.0690
WANG Lu, CAO Daiyong, DING Zhengyun, CHEN Quanlin, DENG Ruijin, LIN Xiaoyan, LI Yang, DU Xin. Controlling factors and metallogenic belts of coal-based graphite in the South-western Fujian Province[J]. Journal of China Coal Society, 2020, 45(8): 2865-2871. DOI: 10.13225/j.cnki.jccs.2019.0690
Citation: WANG Lu, CAO Daiyong, DING Zhengyun, CHEN Quanlin, DENG Ruijin, LIN Xiaoyan, LI Yang, DU Xin. Controlling factors and metallogenic belts of coal-based graphite in the South-western Fujian Province[J]. Journal of China Coal Society, 2020, 45(8): 2865-2871. DOI: 10.13225/j.cnki.jccs.2019.0690

闽西南地区煤成石墨的控制因素与成矿区带划分

Controlling factors and metallogenic belts of coal-based graphite in the South-western Fujian Province

  • 摘要: 石墨为国家战略性矿产资源,煤成石墨是由煤层变质而成的一种隐晶质石墨。闽西南地区位于环太平洋构造-岩浆活动带,具有良好的煤成石墨成矿地质条件。通过对闽西南地区不同演化程度的煤-煤成石墨微观结构特征的研究,认为煤向石墨演化中芳香碳层间距的逐渐减小和结构缺陷逐渐消亡的两个过程并非呈线性变化,由此以碳层间距d002和拉曼参数R2将其划分为煤成石墨(Ⅰ类)、煤成半石墨(Ⅱ1和Ⅱ2类)、石墨化无烟煤(Ⅲ类)和高变质无烟煤(Ⅳ类)4种类型,并提出了划分煤成石墨类型的模板。煤成石墨的形成和分布受到岩浆-构造活动的制约,由燕山期大规模的岩浆侵入活动为煤的石墨化提供热能,政和—大埔断裂带和永安—晋江断裂带成为煤成石墨的主要控矿断裂,一系列推覆、滑覆等断裂和褶皱构造与岩浆热作用构成了封闭式、半开放-半封闭式和开放式的成矿构造-热环境条件,由此造就了闽西南地区煤成石墨成矿和分布的差异性。依据不同类型煤成石墨的分布,结合煤成石墨成矿的控制因素,划分出了闽西南地区大田—漳平(I1)和永安—安溪(I2)两条煤成石墨成矿区带,其中包括可坑—乌坑成矿亚区(Ⅱ1)、永安—大田成矿亚区(Ⅱ2)、长凹成矿亚区(Ⅱ3)、安溪成矿亚区(Ⅱ4)4个煤成石墨成矿亚区。

     

    Abstract: Graphite is recognized as one of national strategic mineral resources. Coal-based graphite,a kind of microcrystalline graphite,is formed by the metamorphism of coal seams. The South-western Fujian Province locating at the circum Pacific magmatic-tectonic activity belt has favorable metallogenic conditions for coal-based graphite. Based on the study of microstructural characteristics of meta-anthracite and coal-based graphite from southwestern Fujian,the decrease of aromatic interlayer spacing and the elimination of structural defects do not change linearly during the evolution from coal to graphite. Thus,two indices of interlayer spacing d002 and Raman parameter R2 were proposed to classify different rank meta-anthracite and coal-based graphite into four types:meta-anthracite (Ⅳ),graphitized anthracite(Ⅲ),coal-based semi-graphite (Ⅱ1 and Ⅱ2 ) and coal-based graphite (I). The classification template of coal-based graphite was also presented. The formation and distribution of coal-based graphite was restricted to tectonic and igneous activities. Yanshanian intrusions provided thermal energy for graphitization,and the Zhenghe-dapu fault and Yongan-jinjiang fault were two major ore controlling faults. A series of nappe,gliding faults and folds combined with magma intrusion,providing tectonic-thermal conditions as open type,semi-open and semi-closed type and closed type for graphitization and causing the divergence of distribution and types of coal-based graphite. On the basis of the distribution of different types of coal-based graphite and influencing factors,Datian-Zhangping (Ⅰ1 ) and Yongan-Anxi (Ⅰ2 )metallogenic belts of coal-based graphite were divided in the south-western Fujian Province,including Kekeng-Wukeng(Ⅱ1 ),Yongan-Datian (Ⅱ2 ),Changao (Ⅱ3 ) and Anxi (Ⅱ4 ) metallogenic sub-zones.

     

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