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Gold Science and Technology ›› 2016, Vol. 24 ›› Issue (4): 39-46.doi: 10.11872/j.issn.1005-2518.2016.04.039

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Geological Geochemical Characteristics and Genesis of Wangjiaping Gold Deposit

LIU Xinwei,WANG Chao,HAN  Lu,XUE Yushan,XUE Lei,ZHU Lei   

  1. Xi’an Northwest Research Institute of Nonferrous Metals Co.,Ltd.,Xi’an   710054,Shaanxi,China
  • Received:2016-04-24 Revised:2016-06-16 Online:2016-08-28 Published:2016-11-17

Abstract:

Wangjiaping gold deposit is hosted in carbonate formation of upper Devonian Xinghongpu Group,and ore bodies are occur as lenticular,controled by secondary tensional fault around the main fault.Wall rock alterations include pyritization,silicification,orpiment,realgar,carbonization and iron carbonate and so on.In the mining area,Au and Hg,Sb and As are low temperature elements,which have linear correlation.The total amount of rare elements in ores is 94.71×10-6 to 141.03×10-6,average is 117.3×10-6,(La/Sm)N changes in the range from 3.86 to 4.52,which are different from the wall rocks.This shows that the source of ore-forming materials is not wall rocks,but probably come from the deep magma and underlying rock column.Hydrogen and oxygen isotopic characteristics show that the source of the water mainly originated from are magmatic and rain water.The range of δ34S is from -1.51‰ to 12.8‰,the average value is 6.54‰,sulfur may originated from mixture of magmatic hydrothermal and sour formation.The range of major metallogenic temperature is from 90 ℃to 140 ℃,the mineralizing fluid is medium salinity and low density fluid,and average value of metallogenic pressure is 133 MPa.The genetic type of the deposit belongs to medium and shallow low temperature hydrothermal type deposit.

Key words: geological characteristics, geochemical characteristics, deposit genesis, Wangjiaping gold deposit, Shaanxi Province

CLC Number: 

  • P618.51

[1]王伟涛,肖丽,周铁锁,等.南秦岭夏家店卡林型金矿床构造特征与成矿关系[J].西北地质,2004,37(3):61-66.
[2]马光,刘继顺,宫丽,等.秦岭地区卡林型金矿地质特征[J].黄金地质,2004,25(3):8-12.
[3]胡西顺,刘新伟,汪超,等.陕西省山阳县王家坪金矿的发现及其地质意义[J].矿床地质,2012,31(增):741-742.
[4]陈衍景.秦岭印支期构造背景及岩浆活动及成矿作用[J].中国地质,2010,37(4):854-856.
[5]王瑞廷,李剑斌,任涛,等.柞水—山阳多金属矿集区成矿条件及找矿潜力分析[J].中国地质,2008,35(6):1291-1298.
[6]朱多录,张旺定,邓海军,等.秦岭地区礼县—山阳断裂对       金矿控制的初步探讨[J].黄金,2004,25(11):9-12.
[7]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.
[8]陈德潜,陈刚.实川稀土元素地球化学[M].北京:冶金出版社,1990:1-268.
[9]刘斌,朱思林,沈昆.流体包裹体热力学参数计算软件及算例[M].北京:地质出版社,2000:1-252.     
[10]吕古贤,刘瑞珣,王方正,等.关于成岩成矿深度构造校正测算的理论基础、方法和实例[J].地质科学,2003,38(4):546-563.
[11]原莲肖,任涛,李英,等.陕西山阳县夏家店金矿物质组分和成矿流体特征及成矿物质来源探讨[J].地质与勘探,2007,43(5):68-73.
[12]胡西顺,原莲肖,朱红周,等.陕西龙头沟金矿床的地质地球化学特征及成因探讨[J].黄金科学技术,2010,18(2):1-5.
[13]张理刚.稳定同位素在地质科学中的应用——金属活化热液成矿作用及找矿[M].西安:陕西科学技术出版社,1985:152-186.
[14]郑永飞,陈江峰.稳定同位素地球化学[M].北京:科学出版社,2000:1-316.
[15]陈振胜.试论混合水热液成因矿床[J].地质与勘探,1992(9):22-26.
[16]Pirajno F.Hydrothermal Processes and Mineral Systems[M].Netherlands:Springer,2009:965-974.
[17]Emsbo P,Hofstra Albert H,Lauha E A.Origin of highgrade gold ore,source of ore fluid components,and genesis of the meikle and neighboring carlin-type  deposite,Northern Carlin Trend,Nevada[J].Economic Geology,2003,98(1):1069-1106.
[18]陈毓川,李兆鼐,毋瑞身,等.中国金矿床及其成矿规律[M].北京:地质出版社,2001:182-237.
[19]写熹.黔西南贞丰水银洞卡林型金矿床垂直分带规律研究[D].成都:成都理工大学,2012.
[20]张永忠,李蘅,刘悟辉,等.广西高龙微细浸染型金矿床同位素地球化学研究 [J].地球学报,2008,29(6):697-702.
[21]韩雪.贵州烂泥沟卡林型金矿床地质地球化学特征及成因探讨[D].成都:成都理工大学,2012.
[22]胡西顺.陕西柞山地区钠长石碳酸盐角砾岩的成因及形成机制[J].有色金属矿产与勘查,1998,7(6):356-362.
[23]胡西顺.陕西柞山地区钠长石碳酸盐角砾岩的成因探讨[J].矿床地质,1998,17(增):619-622.
[24]陕西省地矿局第十三地质队.板岩镇—中村幅1∶5万区域矿产调查报告[R].商洛:陕西省地矿局第十三地质队,1989.
[25]卢秋霞,刘显凡,苏文超.微细浸染型金矿深源矿质和流体地球化学示踪研究[J].地质资源,2000,9(2):97-104.
[26]刘显凡,苏文超,朱赖民.滇黔桂微细浸染型金矿深源流体成矿机理探讨[J].地质与勘探,1999,35(1):14-19.
[27]吴发富.中秦岭山阳—柞水地区岩浆岩及其成矿构造环境研究[D].北京:中国地质科学院,2013.
[28]胡西顺,李领军.陕西秦岭地区原生金矿类型的划分及金矿的若干问题讨论[J].黄金科学技术,2001,9(1):1-10.

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