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侯江龙, 王登红, 王成辉, 黄凡, 李建康, 陈振宇. 河北曲阳县中佐伟晶岩脉中电气石的类型和成岩成矿环境研究[J]. 岩矿测试, 2017, 36(5): 529-537. DOI: 10.15898/j.cnki.11-2131/td.201704130056
引用本文: 侯江龙, 王登红, 王成辉, 黄凡, 李建康, 陈振宇. 河北曲阳县中佐伟晶岩脉中电气石的类型和成岩成矿环境研究[J]. 岩矿测试, 2017, 36(5): 529-537. DOI: 10.15898/j.cnki.11-2131/td.201704130056
Jiang-long HOU, Deng-hong WANG, Cheng-hui WANG, Fan HUANG, Jian-kang LI, Zhen-yu CHEN. Study on the Types, and Metallogenic and Diagenetic Environment of Tourmaline from the Zhongzuo Pegmatite Veins in Quyang County, Hebei Province[J]. Rock and Mineral Analysis, 2017, 36(5): 529-537. DOI: 10.15898/j.cnki.11-2131/td.201704130056
Citation: Jiang-long HOU, Deng-hong WANG, Cheng-hui WANG, Fan HUANG, Jian-kang LI, Zhen-yu CHEN. Study on the Types, and Metallogenic and Diagenetic Environment of Tourmaline from the Zhongzuo Pegmatite Veins in Quyang County, Hebei Province[J]. Rock and Mineral Analysis, 2017, 36(5): 529-537. DOI: 10.15898/j.cnki.11-2131/td.201704130056

河北曲阳县中佐伟晶岩脉中电气石的类型和成岩成矿环境研究

Study on the Types, and Metallogenic and Diagenetic Environment of Tourmaline from the Zhongzuo Pegmatite Veins in Quyang County, Hebei Province

  • 摘要: 电气石在成岩、成矿作用中具有重要的示踪意义,利用电气石化学组成特征可有效指示其形成的成岩、成矿环境,也是一种有用的找矿标志。我国华南、西部等地区伟晶岩型稀有金属矿床找矿已取得较大进展,但华北地台区伟晶岩型稀有金属矿床尚未取得找矿突破,亟待开展系统而深入的地质找矿工作。河北曲阳县中佐伟晶岩脉中分布有大量的灰黑色自形电气石,适合开展系统的矿物学研究。本文在详细野外地质调查的基础上,系统采集研究样品,结合镜下鉴定,采用粉晶X射线衍射和电子探针相结合的研究方法,对河北曲阳县中佐伟晶岩脉中电气石的化学成分进行测试,以查明电气石的类型及其成岩、成矿环境。粉晶X射线衍射和电子探针分析结果均显示中佐伟晶岩脉中电气石属镁电气石(但接近于铁电气石),而电气石化学成分Ca-Fe-Mg三角图解显示电气石成岩环境为贫Ca变质泥质岩、变质砂屑岩和石英-电气石岩。电气石化学成分常与围岩岩石类型存在明显关联,认为中佐伟晶岩脉中的镁电气石是在较高温度(700~600℃,早期结晶的伟晶岩)条件下,岩浆熔体与高温流体和围岩发生同化混染的过程中形成的,围岩中Mg、Fe等物质成分为电气石的形成提供了必要的物质来源。中佐伟晶岩脉中电气石化学成分的系统研究,为我国地台区伟晶岩矿床的找矿提供了基础地质资料和找矿方向。

     

    Abstract: Tourmaline is an efficient tracer during diagenesis and metallogenesis. Chemical composition of tourmaline can not only be used to give information about environment of diagenesis and metallogenesis, but can also be useful in prospecting. Prospecting work of pegmatite-type rare metal deposits in Southern and Western China has seen a big breakthrough, however, there has been no obvious advance in prospecting in Northern China. Therefore, it is necessary to carry out systematical and detailed prospecting work. There are a lot of grey black idiomorphic tourmalines in pegmatite veins in Quyang County, Hebei Province, which makes it suitable for carrying out systematical mineralogy research. Samples based on detailed field work were systematically collected and are described in this paper. Microscopic identification, Powder X-ray Diffraction and Electron Microprobe were used to determine the chemical composition of tourmaline, in order to investigate the types, and diagenetic and metallogenic environment of tourmaline. Electronic Probe and Powder X-ray Diffraction show that tourmaline in Zhongzuo pegmatite belongs to dravite but is close to that of schorl. The Ca-Fe-Mg ternary diagram indicates that the diagenetic environment is poor Ca metamorphic pelite, metamorphic arenite and quartz-tourmaline rock. The chemical composition of tourmaline is closely related to the types of surrounding rock. The dravite in pegmatite veins was formed by assimilation blending between magmatic melt and surrounding rock at a temperature of 700-600℃ where Mg and Fe in surrounding rock provide the necessary sources for the formation of tourmaline. The systematical study of chemical composition of tourmaline in Zhongzuo pegmatite veins provides fundamental geological data and a prospecting direction for pegmatite-type deposits.

     

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