Geological characteristics and exploration prospects of Yazhaqu gold deposit in Qinghai Province
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摘要: 为明确找矿方向,给区域同类型金矿勘查提供依据,总结了青海省牙扎曲金矿床的地质特征,分析了NW向次级断裂及韧性剪切带对金矿床的控制作用,并进一步探讨该金矿床的控矿因素、矿床成因及找矿方向。结果表明: 牙扎曲金矿床处于昆仑山口—玛多—甘德断裂与可可西里—金沙江断裂之间,发育NW向次级断裂及韧性剪切带,在破碎蚀变带与韧性剪切带内出露大量含金石英脉; 巴颜喀拉山群清水河组的砂岩和板岩中Au、Ag、Pb、W含量较高,为该矿床提供了物质来源; NW向次级断裂、韧性剪切带及含金石英脉是富集成矿的有利部位,发育与金矿化相关的矿化蚀变,说明该矿床是典型的构造蚀变岩型、石英脉型金矿床,区内NW向次级断裂及韧性剪切带可作为下一步找矿方向。Abstract: In order to ascertain the exploration prospects and provide reference for gold deposit survey with same type, the researchers in this paper summarized the geological characteristics of the Yazhaqu gold deposit, and investigated the controlling factors of NW-trending secondary faults and ductile shear zones on the gold deposit. And the ore-controlling factors, genesis and exploration prosrects of the Yazhaqu gold deposit are also discussed. The results show that the Yazhaqu gold deposit is located between the Kunlun Pass-Maduo-Gander fault and the Keke-xili-Jinshajiang fault, with well-developed NW-trending secondary faults and ductile shear zones. A large number of gold-bearing quartz veins are exposed in fractured alteration zones and ductile shear zones. The content of Au, Ag, Pb, and W of sandstone and slate is high in Qingshuihe Formation of Bayankalashan Group, which provides a material source for the deposit. The NW-trending secondary fault, ductile shear zone and gold-bearing quartz veins are favorable locations for enrichment and integration. The mineralization alteration related to gold mine is well developed, indicating that the deposit is typical tectonic altered rock type and quartz vein type. The NW-trending secondary fault and ductile shear zone in the area are the next prospecting direction.
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Key words:
- Yazhaqu /
- gold deposit /
- geological characteristic /
- ore-controlling factors /
- ore genesis /
- exploration prospects
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[1] 罗长海, 云启成, 乔建峰, 等. 青海省格尔木市藏金沟金矿地质特征及成矿远景分析[J]. 世界有色金属, 2017(8): 129-131.
[2] Luo C H, Yun Q C, Qiao J F, et al.Geological characteristics and metallogenic prospect of gold-gully gold deposits in Geermu Tibetan, Qinghai Province[J]. World Nonferr Met, 2017(8): 129-131.
[2] 水应东, 辛军强, 党文超, 等. 青海东大滩西余塔士沟地区金矿地质特征及找矿方向[J]. 中国锰业, 2020, 38(3): 28-32.
[4] Shui Y D, Xin J Q, Dang W C, et al.An analysis on the geolo-gical characteristics and prospecting direction of gold deposits in Xiyu Tashigou area, Dongdatan, Qinghai[J]. China Mangan Ind, 2020, 38(3): 28-32.
[3] 张以茀. 可可西里—巴颜喀拉三叠纪沉积盆地的划分及演化[J]. 青海地质, 1996, 5(1): 1-17.
[6] Zhang Y F.Division and evolution of the Hoh Xli-Bayan Har sedimentary basin[J]. Qinghai Geol, 1996, 5(1): 1-17.
[4] 刘增铁, 任家琪, 杨永征, 等. 青海金矿[M]. 北京: 地质出版社, 2005: 48-72.
[8] Liu Z T, Ren J Q, Yang Y Z, et al.Gold Deposits in Qinghai Province[M]. Beijing: Geological Publishing House, 2005: 48-72.
[5] 孙崇仁. 青海省岩石地层[M]. 武汉: 中国地质大学出版社, 1997: 183-194.
[10] Sun C R.Stratigraphy (Lithostratic) of Qinghai Province[M]. Wuhan: China University of Geosciences Press, 1997: 183-194.
[6] 宋忠宝, 杜玉良, 李智明, 等. 青海省矿产资源发育特征概述[J]. 地球科学与环境学报, 2009, 31(1): 30-33, 47.
[12] Song Z B, Du Y L, Li Z M, et al.Characteristics of mineral resources in Qinghai Province[J]. J Earth Sci Environ, 2009, 31(1): 30-33, 47.
[7] 赵伦本, 张本仁. 地球化学[M]. 北京: 地质出版社, 1988: 58-66.
[14] Zhao L B, Zhang B R.Geochemistry[M]. Beijing: Geological Publishing House, 1988: 58-66.
[8] 张雪亭, 杨生德, 杨占君. 青海省板块构造研究——1:100万青海省大地构造图说明书[M]. 北京: 地质出版社, 2007: 238-253.
[16] Zhang X T, Yang S D, Yang Z J.Study on the Plate Tectonic Framework of Qinghai: Instruction Book of 1:1 000 000 Qinghai Plate Tecto-nic Map[M]. Beijing: Geological Publishing House, 2007: 238-253.
[9] 韩英善, 李俊德, 王文, 等. 对大场金矿成因的新认识[J]. 高原地震, 2006, 18(3): 54-57, 49.
[18] Han Y S, Li J D, Wang W, et al.New cognizance of Dachang auriferous mineralization style[J]. Plateau Earthq Res, 2006, 18(3): 54-57, 49.
[10] 青海省核工业地质局. 青海省曲麻莱县牙扎曲地区三幅1:5万区域地质矿产调查报告[R].西宁: 青海省核工业地质局,2016: 306-312.
[20] The Nuclear Industrial Geology Bureau of Qinghai Province. Three 1:50 000 Regional Geological and Mineral Survey Reports in Yazhaqu Area, Qumalai County, Qinghai Province[R]. Xining: The Nuclear Industrial Geology Bureau of Qinghai Province, 2016: 306-312.
[11] 袁见齐, 朱上庆, 翟裕生. 矿床学[M]. 北京: 地质出版社, 1979: 20-22.
[22] Yuan J Q, Zhu S Q, Zhai Y S.Mineral Depositology[M]. Beijing: Geological Publishing House, 1979: 20-22.
[12] 黎彤. 地壳元素丰度的若干统计特征[J]. 地质与勘探, 1992, 28(10): 1-7.
[24] Li T.The statistical characteristics of the abundance of chemical elements in the earth's crust[J]. Geol Prospect, 1992, 28(10): 1-7.
[13] 刘江峰, 王利文, 刘会文, 等. 青海省曲麻莱县牙扎曲金矿床地质特征及成矿条件分析[J]. 西北地质, 2016, 49(4): 179-188.
[26] Liu J F, Wang L W, Liu H W, et al.Geological features and metallogenic conditions of the Yazha gold deposit in Qinghai County, Qumalai Province[J]. Northwest Geol, 2016, 49(4): 179-188.
[14] 刘增铁, 任家琪, 杨永征, 等. 青海金矿[M]. 北京: 地质出版社, 2005: 163-175.
[28] Liu Z T, Ren J Q, Yang Y Z, et al.Gold Deposits in Qinghai Pro-vince[M]. Beijing: Geological Publishing House, 2005: 163-175.
[15] 周琳雄, 尹建华, 王勇, 等. 东昆仑山中段布尔汗布达山地区断裂特征及昆中断裂带南界讨论[J]. 中国地质调查, 2021, 8(5): 74-83.
[30] Zhou L X, Yin J H, Wang Y, et al.Characteristics of the faults in Buerhanbuda Mountain area and discussion of the southern boundary of Kunzhong fault zone[J]. Geol Surv China, 2021, 8(5): 74-83.
[16] 袁万明, 莫宣学, 王世成, 等. 东昆仑金成矿作用与区域构造演化的关系[J]. 地质与勘探, 2003, 39(3): 5-8.
[32] Yuan W M, Mo X X, Wang S C, et al.The relationship between gold mineralization and regional tectonic evolution in the eastern Kunlun mountains[J]. Geol Prospect, 2003, 39(3): 5-8.
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