2018 Vol. 45, No. S2
Article Contents

REN Jingwu, DU Guichao, WANG Jinbao, YANG Yanxu, YE Lei, YU Zichang, LIU Zhiqiang, LIU Zengren. 2018. Resource Dataset for West Yemaquan Gold Ore Deposit, Kumul, Xinjiang[J]. Geology in China, 45(S2): 62-74. doi: 10.12029/gc2018Z208
Citation: REN Jingwu, DU Guichao, WANG Jinbao, YANG Yanxu, YE Lei, YU Zichang, LIU Zhiqiang, LIU Zengren. 2018. Resource Dataset for West Yemaquan Gold Ore Deposit, Kumul, Xinjiang[J]. Geology in China, 45(S2): 62-74. doi: 10.12029/gc2018Z208

Resource Dataset for West Yemaquan Gold Ore Deposit, Kumul, Xinjiang

    Fund Project: Jointly funded by CGS project "Mineral Survey at West Yemaquan, Kumul, Xinjiang" (1212011140054) and the fund project of Xinjiang Autonomous Region "General Survey of Gold Ore in West Yemaquan, Kumul, Xinjiang" (T13-3-XJ30)
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  • Author Bio: REN Jingwu, male, born in 1985, an engineering master and engineer, now engages in geological mineral survey; E-mail: 371662737@qq.com
  • Corresponding author: DU Guichao, male, born in 1983, PhD and associate professor, engages in research in sedimentology and reservoir geology; E-mail: duguichao@sina.com 
  • The Kangguertage ductile shear zone in western China is an important gold ore-controlling belt, where important deposits such as Kangguer, Matoutan and Shiyingtan are found. The West Yemaquan gold ore deposit, typical of the ductile shear zone ore-controlling type, is situated along the eastern shear zone extension-the Kushui-Yamansu ductile shear zone. A new dataset created from estimation of resources in the West Yemaquan gold ore deposit uses the geological ore block method, utilizing data on coordinates of mineral prospecting sites and results obtained from the analytic testing of samples collected during field geological survey in sites within the West Yemaquan Goldfield. All samples for the dataset were tested by national testing centers owning Level-A certificate. The qualified rates from both internal and external inspection are over 90%, indicating that the data are credible and provide important referential implications for the estimation of surrounding deposits of the same kind.

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  • 白瑞和. 2010.固体矿产资源储量计算方法的探讨[J].中国非金属矿工业导刊, 6:59-61

    Google Scholar

    曹建洲, 赵远由, 谢环宇. 2015.地质块段法在固体矿产资源储量估算的应用探讨[J].矿产勘查, 6(4):144-148

    Google Scholar

    董连慧, 冯京, 刘德权, 唐延龄, 屈迅, 王克卓, 杨在峰. 2010.新疆成矿单元划分方案研究[J].新疆地质, 28(1):1-15 doi: 10.3969/j.issn.1000-8845.2010.01.001

    CrossRef Google Scholar

    国土资源部储量司. 2000.矿产资源储量计算方法汇编[M].北京:地质出版社.

    Google Scholar

    郭慧锦. 2010.块段法与地质统计相结合的矿产储量计算方法研究——以武夷山上西坑钼矿床为例[D].北京: 中国地质大学.

    Google Scholar

    韩春明, 毛景文, 杨建民, 王志良, 崔彬. 2002.东天山晚古生代内生金属矿床类型和成矿作用的动力学演化规律[J].地质学报, 76(2):222-234 doi: 10.3321/j.issn:0001-5717.2002.02.010

    CrossRef Google Scholar

    刘焕贵, 赖华福. 2017.江西省崇义聂都瓦窑坑白钨矿区资源储量数据集[J].中国地质, 44(S1):96-104

    Google Scholar

    任经武, 刘增仁.新疆东天山野马泉西发现中型金矿床[J/OL].中国地质调查成果快讯, 2017, 3(14): 5-8. http://www.drc.cgs.gov.cn/maga/cgkx/201708/t20170821_437889.html.

    Google Scholar

    肖玉华, 吴干华. 2010.固体矿产地质勘查资源/储量估算的几种方法[J].西部探矿工程, 24(5):117-118

    Google Scholar

    张鹏川, 褚小东, 曾建平, 刘建兵. 2017.传统资源量估算方法在第三类矿产中的应用与对比研究:以宁夏某建筑用石灰岩矿山为例[J].中国矿业, 26(9):33-37

    Google Scholar

    Bai Ruihe. 2010. Discussion on calculation method of solid mineral resources reserve[J]. China Nonmetallic Minerals Industry, 6:59-61(in Chinese)

    Google Scholar

    Cao Jianzhou, Zhao Yuanyou, Xie Huanyu. 2015. Application of geological block method in the solid mineral reserve estimation[J]. Mineral Exploration, 6(4):144-148(in Chinese with English abstract)

    Google Scholar

    Dong Lianhui, Feng Jing, Liu Dequan, Tang Yanling, Qu Xun, Wang Kezhuo, Yang Zaifeng. 2010. Research for classification of metallogenic unit of Xinjiang[J]. Xinjiang Geology, 28(1):1-15(in Chinese with English abstract)

    Google Scholar

    Department of Reserves, Ministry of Land and Resources. 2000. Compilation of calculation methods for mineral resources reserves[M]. Beijing: Geological Publishing House(in Chinese).

    Google Scholar

    Guo Huijin. 2010. Research on block method and geostatistical combined calculation of mineral reserves-the case of molybdenum deposit on Wu Yishan Shangxikeng[D]. Beijing: China University of Geosciences(in Chinese with English abstract).

    Google Scholar

    Han Chunming, Mao Jingwen, Yang Jianming, Wang Zhiliang, Cui Bin. 2002. Types of late palaeozoic metal deposits and related geodynamical evolution in the east Tianshan[J]. Acta Geologica Sinica, 76(2):222-234(in Chinese with English abstract) doi: 10.3321/j.issn:0001-5717.2002.02.010

    CrossRef Google Scholar

    Liu Huangui, Lai Huafu. 2017. The Resource Reserves Dataset of the Wayaokeng Scheelite Mining Area, Niedu, Chongyi, Jiangxi Province[J]. Geology in China, 44(S1):118-127 (in Chinese and English)

    Google Scholar

    Ren Jingwu, Liu Zengren. 2017. Medium scale Gold Deposit Found in West Yemaquan, East Tianshan, Xinjiang[J/OL]. News Flash on CGS Results, 3(14): 5−8. http://www.drc.cgs.gov.cn/maga/cgkx/201708/t20170821_437889.html (in Chinese).

    Google Scholar

    Xiao Yuhua, Wu Ganhua. 2010. Several methods for estimating the resources/reserves of solid mineral geological exploration[J]. West-China Exploratin Engineering, 24(5):117-118(in Chinese)

    Google Scholar

    Zhang Pengchuan, Chu Xiaodong, Zeng Jianping, Liu Jianbing. 2017. The application and comparison research of traditional resources estimation on the third kinds of minerals:a case study of limestone mine used in construction in Ningxia[J]. China Mining Magazine, 26(9):33-37(in Chinese with English abstract)

    Google Scholar

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