福建浦城地区萤石矿床围岩和矿石地球化学特征及成因
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P581;P611;P619.21+5

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中国地质调查局项目(WKZB1911BJM500360);中央级公益性科研院所基本科研业务费专项(KK2005);中化地质矿山总局化工地质科技项目(ZHDK202004)


Geochemistry characteristic and genesis of surrounding rock and ore in Pucheng fluorite deposits district, Fujian Province
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    摘要:

    福建浦城地区位于闽西北隆起带北部武夷成矿带,区内现有萤石矿(点)30余处,均产于北东向断裂带内。以浦城地区外洋、南山尖、黎处、龙头洋萤石矿和仁峰萤石矿化点为主要研究对象,对萤石和围岩二长花岗岩进行了地球化学分析。区内萤石矿呈块状、条带状、网脉状分布,主要可分为萤石型和石英-萤石型两种矿石。萤石稀土元素总量为12.22×10-6~154.44×10-6,Y含量为5.68×10-6~114.90×10-6,LREE/HREE值为1.10~4.67,(La/Yb)N值为0.85~5.04,δEu值为0.55~1.05,δCe值为0.73~0.95。二长花岗岩稀土元素总量为74.13×10-6~340.42×10-6,Y含量为15.37×10-6~90.49×10-6,LREE/HREE值为1.54~15.47,(La/Yb)N值为0.85~42.51,δEu值为0.10~0.72,δCe值为0.36~1.64。二长花岗岩属过铝质、高钾钙碱性Ⅰ型花岗岩,富集大离子亲石元素Rb和高场强元素U、Th,亏损高场强元素Zr,稀土元素配分曲线为平缓右倾型,产于板内构造环境,与萤石的矿化有密切关系。二长花岗岩中F含量较高,推测其为萤石矿中F元素的主要来源。区内萤石矿形成于热液低温还原环境中,研究区至少经历了两期次萤石成矿作用。

    Abstract:

    The Pucheng district is located in Wuyi metallogenic belt, which is in the northern part of the northwest Fujian uplift zone, consisting of more than 30 fluorite mines (mineralization spots). We take Waiyang fluorite mine, Nanshanjian fluorite mine, Lichu fluorite mine, Longtouyang fluorite mine and Renfeng mineralization spot as the main research examples in this study. The geochemical analysis of fluorite and monzonitic granite hosting rocks were carried out. The fluorite ore has massive, banded, vein-like structure. It mainly includes fluorite-type ore and quartz-fluorite type ore. The ΣREE content of fluorite ranges from 12.22×10-6 to 154.44×10-6, the Y content is between 5.68×10-6 and 114.90×10-6, the ratio of LREE/HREE in fluorite ranges from 1.10 to 4.67, (La/Yb)N ratio ranges from 0.85 to 5.04, δEu ratio ranges from 0.55 to 1.05, and δCe ratio ranges from 0.73 to 0.95. The ΣREE content of monzonitic granite ranges from 74.13×10-6 to 340.42×10-6, the Y content ranges from 15.37×10-6 to 90.49×10-6, LREE/HREE ratio in hosting rock ranges from 1.54 to 15.47, (La/Yb)N ratio ranges from 0.85 to 42.51, δEu ratio ranges from 0.10 to 0.72, and the δCe ratio ranges from 0.36 to 1.64. The monzonitic granite is peraluminous with high-potassium calc-alkaline characteristic, and is enriched in large ionic lithophilic elements (Rb) and high field strength elements (U and Th), and depleted in high field strength elements (Zr). The REE normalized pattern shows a gentle right curve, and plots into plate granite (WPA). I-type granite has a strong relationship with the fluorite mineralization. Monzonitic granite is enriched in F, which is the main source of fluorite mineralization. The fluorite in the study area was formed in a hydrothermally-generating low-temperature reduction environment. The fluorite deposit occurred in the NE trending fault zone, which also has undergone at least two phases of fluorite mineralization.

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朱利岗,金松,王春连,等, 2021. 福建浦城地区萤石矿床围岩和矿石地球化学特征及成因[J]. 岩石矿物学杂志, 40(5):923~938.
ZHU Li-gang, JIN Song, WANG Chun-lian, et al, 2021. Geochemistry characteristic and genesis of surrounding rock and ore in Pucheng fluorite deposits district, Fujian Province[J]. Acta Petrologica et Mineralogica, 40(5): 923~938.

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  • 收稿日期:2020-09-01
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  • 在线发布日期: 2021-09-16
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