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    滇东地区深层次Pt-Cu-Au矿化异常定量提取与评价

    黄静宁 赵鹏大

    黄静宁, 赵鹏大, 2009. 滇东地区深层次Pt-Cu-Au矿化异常定量提取与评价. 地球科学, 34(2): 365-374.
    引用本文: 黄静宁, 赵鹏大, 2009. 滇东地区深层次Pt-Cu-Au矿化异常定量提取与评价. 地球科学, 34(2): 365-374.
    HUANG Jing-ning, ZHAO Peng-da, 2009. Quantitative Extraction and Estimation of Conceal Mineralization Anomalies of Pt-Cu-Au in Eastern Yunnan Province. Earth Science, 34(2): 365-374.
    Citation: HUANG Jing-ning, ZHAO Peng-da, 2009. Quantitative Extraction and Estimation of Conceal Mineralization Anomalies of Pt-Cu-Au in Eastern Yunnan Province. Earth Science, 34(2): 365-374.

    滇东地区深层次Pt-Cu-Au矿化异常定量提取与评价

    基金项目: 

    国家高技术研究发展计划863项目 2006AA06Z113

    国家自然科学基金项目 40772197

    国家科技支撑计划项目 2006BAB01A03

    详细信息
      作者简介:

      黄静宁(1982-), 女, 在读博士研究生, 矿产普查与勘探专业.E-mail: hjn82@126.com

    • 中图分类号: P628

    Quantitative Extraction and Estimation of Conceal Mineralization Anomalies of Pt-Cu-Au in Eastern Yunnan Province

    • 摘要:

      滇东地区是我国Cu-Au-PGE重要的成矿远景区.采用因子分析、地质统计学和多重分形S-A滤波等方法对滇东地区复杂地质背景下的不同层次的Pt-Cu-Au矿化异常进行定量提取与评价.结果表明: (1) 因子分析结果揭示滇东地区存在3种元素组合①Cu-Pd-Co-Pt-V-Cr-Ni、②Sb-As-U-Mo、③Pb-Ag-Zn-W-Sn-As-Au, 它们分别代表了位于扬子地块的二叠纪峨嵋山玄武岩、位于华南褶皱系含碳质的沉积建造和以有色金属矿化为代表的热液矿化元素组合特征; (2) 变差函数分析表明Pt、Cu、Au含量在NE向(9°~18.6°) 上变化最连续, 元素含量变化的最大变程范围约95km; 泛克里格法揭示了Pt、Cu、Au含量在区域上变化具有明显的裂控-岩控特征; (3) 多重分形滤波法则细致地刻画了滇东地区与矿化有关的局部异常特征, 有效地提取了Pt、Cu、Au隐蔽矿化异常信息, 其结果可作为圈定Pt-Cu-Au找矿靶区的重要依据; (4) 不同的数学方法可用以解决不同层次的地质成矿问题, 因子分析和地质统计学等线性方法可研究区域成矿地质背景、揭示成矿元素及其元素组合在区域上的空间变化特征, 而S-A滤波等非线性方法能够有效提取深层次局部矿化异常信息.

       

    • 图    滇东地质矿产简图

      Fig.  .  Simplified geological map of eastern Yunnan Province

      图    F1、F2、F3因子得分图

      Fig.  .  Factor score maps of F1, F2 and F3

      F1=Cu-Pd-Co-Pt-V-Cr-Ni; F2=Sb-As-U-Mo; F3=Pb-Ag-Zn-W-Sn-As-Au

      图    泛克立格法获取的Pt、Cu、Au区域地球化学异常

      Fig.  .  The regional Pt, Cu, Au anomalies obtained by universal Kriging

      a.Pt (10-9); b.Cu (10-6); c.Au (10-9)

      图    S-A法获取的Pt、Cu、Au异常

      Fig.  .  Local Pt, Cu, Au anomalies obtained by S-A method

      表    因子正交旋转载荷

      Table  .   Orthogonal rotation factor loadings

      表    Pt、Cu、Au统计参数

      Table  .   Statistical parameters of Pt, Cu and Au

      表    拟合半变差函数参数

      Table  .   Fitting semi-variogram parameters of Pt, Cu and Au

    • [1] Agnew, P. D., 2004. Applications of geochemistry in targeting with emphasis on large stream and lake sediment data complications. SEG Conference, Sydney, 2004.
      [2] Chen, Y. Q., Chen, J. G., Wang, X. Q., et al., 2008. Quantitatively integrated assessment techniques for mineral resources based on GIS. Geological Publishing House, Beijing (in Chinese).
      [3] Chen, Y. Q., Huang, J. N., Zhang, S. Y., 2007. Application of multi-fractal filtering in geochemistry data decomposing—A case study fromthe south region of "Sanjiangore-forming belt", south-western China. In: Milkereit, B., ed., Proceedings of Fifth Decennial International Conference on Mineral Exploration, Exploration07, Volume Two, Toronto, 985-988.
      [4] Chen, Y. Q., Xia, Q. L., Liu, H. G., 2003. Geochemical characteristics of Pt-Pd-Cu ore-bearing formations in eastern Yunnan and analysis of their ore potentiality. China Geology, 30 (3): 225-234 (in Chinese with English abstract).
      [5] Chen, Y. Q., Zhang, S. Y., Xia, Q. L., et al., 2006. Application of multi-fractal filtering to extraction of geochemical anomalies from multi-geochemical backgrounds: A case study of the southern section of "Sanjiangore-forming zone", south western China. Earth Science—Journal of China University of Geosciences, 31 (6): 861-866 (in Chinese with English abstract).
      [6] Cheng, H. X., Xie, X. J., Yan, G. S., et al., 1998. Platinum and palladium abundances in floodplain sediment and their geochemical provinces. Geochimica, 27 (2): 101-107 (in Chinese with English abstract).
      [7] Cheng, Q. M., 1999. Spatial and scaling modeling for geochemical anomaly separation. Journal of Geochemica Exploration, 65 (3): 175-194. doi: 10.1016/S0375-6742(99)00028-X
      [8] Cheng, Q. M., 2001. Selection of multifractal scaling breaks and separation of geochemical and geophysical anomalies. Journal of China University of Geosciences, 12 (1): 54-59.
      [9] Cheng, Q. M., 2004. Anew model for quantifying anisotropic scale invariance and for decomposition of mixing patterns. Mathematical Geology, 36 (3): 345-360. doi: 10.1023/B:MATG.0000028441.62108.8a
      [10] Cheng, Q. M., 2006a. Singularity-generalized self-similarity-fractal spectrum (3S) models. Earth Science—Journal of China University of Geosciences, 31 (3): 337-348 (in Chinese with English abstract).
      [11] Cheng, Q. M., 2006b. Multifractal modelling and spectrum analysis: Methods and applications to gamma ray spectrometer data from south western Nova Scotia, Canada. Science in China (Series D), 49 (3): 283-294. doi: 10.1007/s11430-006-0283-y
      [12] Cheng, Q. M., Agterberg, F. P., Ballantyne, S. B., 1994. These paration of geochemical anomalies from background by fractal methods. Journal of Geochemical Exploration, 51 (2): 109-130. doi: 10.1016/0375-6742(94)90013-2
      [13] Cheng, Q. M., Xu, Y. G., Grunsky, E., 2000. Integrated spatial and spectrum analysis for geochemical anomaly separation. Natural Resources Research, 9 (1): 43-51. doi: 10.1023/A:1010109829861
      [14] Chork, C. Y., Mazzucchelli, R. H., 1989. Spatial filtering oexploration geochemical data using EDA and robust statistics. Journal of Geochemical Exploration, 34 (3) 221-243. doi: 10.1016/0375-6742(89)90114-3
      [15] Coveney, R. M. Jr., Chen, N. S., 1991. Ni-Mo-PGE-Au-richores in Chinese black shales and speculations on possible analogues in the United States. Mineralium Deposita, 26 (2): 83-88. doi: 10.1007/BF00195253
      [16] Davis, J. C., 1973. Statistical data analysis in geology. John Wiley & Sons.
      [17] Fan, D. L., Zhang, T., Ye, J., et al., 2000. Supper-large de-posits related to black shale. In: Tu, G. Z., ed., Supper-large deposits in China (Ⅰ). Science Press, Beijing, 204-218 (in Chinese).
      [18] Fan, D. L., Zhang, T., Ye, J., et al., 2004. Black rock series and it's mineral deposits in China. Science Press, Beijing, 76-135 (in Chinese).
      [19] Gao, Z. M., Li, H. Y., Yang, Z. S., et al., 2002. Mineralization and mineral exploration of the major types of gold deposits in area cross Yunnan and Guizhou provinces. Geological Publishing House, Beijing (in Chinese).
      [20] Gong, L., He, Y. T., Chen, T. Y., et al., 1996. Proterozoic rift copper deposits in Dongchuan, Yunnan Province. Geological Publishing House, Beijing (in Chinese).
      [21] Hu, G. D., 1990. Research on regional geochemical mathematical model. China University of Geosciences Press, Wuhan (in Chinese).
      [22] Liu, J. D., Zhang, C. J., Li, Y. G., et al., 2007. Mineralization system of metallic deposit in Panxi region. Geological Publishing House, Beijing (in Chinese).
      [23] Tao, Y., Hu, R. Z., Wang, X. Z., et al., 2006. The Cu-Ni-PGE mineralizationin the Emeishan large igneous province—Geochemical study on some typical deposits. Bulletin of Mineralogy, Petrology and Geochemistry, 25 (3): 236-244.
      [24] Wang, D. H., Luo, Y. N., Qu, W. J., et al., 2007. Geology, geochemistry and exploration of PGE deposits in SWChina. Geological Publishing House, Beijing (in Chi-nese).
      [25] Wang, M., Sun, X. M., 2007. Geology, geochemistry and genesis of PGE-ploy metallic deposits in the black rock series, southern China. Geological Publishing House, Beijing (in Chinese).
      [26] Wang, R. D., Hu, G. D., 1988. Linear geostatistics. Geological Publishing House, Beijing (in Chinese).
      [27] Wang, S. C., Chen, Y. L., Xia, L. X., 2000. Theory and method of integrated prognosis of mineral resources. Science Press, Beijing (in Chinese).
      [28] Xia, Q. L., Chen, Y. Q., Zhao, P. D., 2003. Platinum and palladium geochemical exploration and evaluation in eastern Yunnan. Geological Bulletin of China, 22 (9): 704-707 (in Chinese with English abstract).
      [29] Xie, X. J., Cheng, H. X., 2001. Global geochemical mapping and its implementation in the Asia-Pacific region. Applied Geochemistry, 16 (11-12): 1309-1321. doi: 10.1016/S0883-2927(01)00051-8
      [30] Xie, X. J., Liu, D. W., Xiang, Y. C., et al., 2004. Geochemical blocks for predicting large ore deposits—Concept and methodology. Journal of Geochemical Exploration, 84 (2): 77-91. doi: 10.1016/j.gexplo.2004.03.004
      [31] Xiong, D. X., Sun, X. M., Shi, G. Y., 2007. Geochemistry and metallogenic model of Ailaoshan Cenozoic orogenic gold belt in Yunnan Province, China. Geological Publishing House, Beijing (in Chinese).
      [32] Yan, M. C., Chi, Q. H., 2005. The chemical compositions of the continental crust and rocks in the eastern part of China. Science Press, Beijing, 64-66.
      [33] Yang, Q. S., 2001. Metallogenetic characteristics and prospecting in the black rock series of East Yunnan and the neighbourhood. Yunnan Geology, 20 (1): 59-72 (inChinese).
      [34] Zhang, B. R., 1989. Theory and method of ore-belt geochemical research. Geological Publishing House, Beijing (inChinese).
      [35] Zhang, C. J., Li, X. L., 1998. Geochemical characteristics of platinum group elements in Emeishan basalts. Acta Petrologica Sinca, 14 (3): 299-304 (in Chinese with English abstract).
      [36] Zhang, H., Gao, Z. M., Ma, D. Y., et al., 2003. The genesis of the Gejiu tin deposit—A review. Geology-Geochemistry, 31 (3): 70-75 (in Chinese with English abstract).
      [37] Zhang, R. D., 2001. Spatial variability theory and its application. Science Press, Beijing (in Chinese).
      [38] Zhang, Y. F., Xu, D. Q., Shi, Q. Q., et al., 1993. Regionalmineral deposits summarize of Yunnan Province (Vol. 1). Yunnan Geology and Mineral Institute, Kunming (inChinese).
      [39] Zhao, P. D., 1995. Mathematical geology: Review and prospect. In: Wang, H. Z., ed., The review of the development of China geological sciences—The festschrift of Professor Sun Y. Z. . China University of Geosciences Press, Wuhan (in Chinese).
      [40] Zhao, P. D., 2004. Quantitative methods and application of geosciences. Geological Publishing House, Beijing (inChinese).
      [41] Zhao, P. D., Chen, Y. Q., Liu, J. P., et al., 1999. Theory and practice of geoanomaly in mineral exploration. China University of Geosciences Press, Wuhan (in Chinese).
      [42] Zhu, B. Q., Chang, X. Y., Qiu, H. N., et al., 2000. TheMeso-Proterozoic character of the south western of Yangtze block in center Yunnan and the occurrence possibility of super-large deposits In: Tu, G. Z., ed., China super-large deposits (Ⅰ). Science Press, Beijing (in Chi-nese).
      [43] 陈永清, 陈建国, 汪新庆, 等, 2008. 基于GIS矿产资源综合评价技术. 北京: 地质出版社.
      [44] 陈永清, 夏庆霖, 刘红光, 2003. 滇东Pt-Pd-Cu含矿建造地球化学特征及其含矿性分析. 中国地质, 30 (3): 225-234. doi: 10.3969/j.issn.1000-3657.2003.03.001
      [45] 陈永清, 张生元, 夏庆霖, 等, 2006. 应用多重分形滤波技术提取致矿地球化学异常: 以西南"三江"南段Cu、Zn致矿异常提取为例. 地球科学——中国地质大学学报, 31 (6): 861-866. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX200606016.htm
      [46] 成杭新, 谢学锦, 严光生, 等, 1998. 中国泛滥平原沉积物中铂、钯丰度值及其地球化学省的初步研究. 地球化学, 27 (2): 101-107. doi: 10.3321/j.issn:0379-1726.1998.02.001
      [47] 成秋明, 2006a. 非线性成矿预测理论: 多重分形奇异性-广义自相似性-分形谱系模型与方法. 地球科学——中国地质大学学报, 31 (3): 337-348. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX200603008.htm
      [48] 范德廉, 张涛, 叶杰, 等, 2000. 与黑色页岩有关的超大型矿床. 见: 涂光炽编, 中国超大型矿床(Ⅰ). 北京: 科学出版社, 204-218.
      [49] 范德廉, 张涛, 叶杰, 等, 2004. 中国的黑色岩系及其有关矿床. 北京: 科学出版社.
      [50] 高振敏, 李红阳, 杨竹森, 等, 2002. 滇黔地区主要类型金矿的成矿与找矿. 北京: 地质出版社.
      [51] 龚琳, 何毅特, 陈天佑, 等, 1996. 云南东川元古宙裂谷型铜矿. 北京: 地质出版社.
      [52] 胡光道, 1990. 区域地球化学数学模型研究. 武汉: 中国地质大学出版社.
      [53] 刘家铎, 张成江, 李佑国, 等, 2007. 攀西地区金属成矿系统. 北京: 地质出版社.
      [54] 陶琰, 胡瑞忠, 王兴阵, 等, 2006. 峨嵋山大火成岩省Cu-Ni-PGE成矿作用几个典型矿床岩石地球化学特征的分析. 矿物岩石地球化学通报, 25 (3): 236-244. doi: 10.3969/j.issn.1007-2802.2006.03.004
      [55] 王登红, 骆耀南, 屈文俊, 等, 2007. 中国西南铂族元素矿床地质、地球化学与找矿. 北京: 地质出版社.
      [56] 王敏, 孙晓明, 2007. 华南黑色岩系铂多金属矿床地质地球化学及成因. 北京: 地质出版社.
      [57] 王仁铎, 胡光道, 1988. 线性地质统计学. 北京: 地质出版社.
      [58] 王世称, 陈永良, 夏立显, 2000. 综合信息矿产预测理论与方法. 北京: 科学出版社.
      [59] 夏庆霖, 陈永清, 赵鹏大, 2003. 滇东铂钯地球化学勘查及异常评价. 地质通报, 22 (9): 704-707. doi: 10.3969/j.issn.1671-2552.2003.09.013
      [60] 熊德信, 孙晓明, 石贵勇, 2007. 云南哀牢山喜马拉雅期造山型金矿带矿床地球化学及成矿模式. 北京: 地质出版社.
      [61] 杨勤生, 2001. 云南东部及邻区黑色岩系内的矿(化) 特征与找矿设想. 云南地质, 20 (1): 59-72. https://www.cnki.com.cn/Article/CJFDTOTAL-YNZD202104011.htm
      [62] 张本仁, 1989. 成矿带地球化学研究的理论构想和方法. 北京: 地质出版社.
      [63] 张成江, 李晓林, 1998. 峨嵋山玄武岩的铂族元素地球化学特征. 岩石学报, 14 (3): 299-304.
      [64] 张欢, 高振敏, 马德云, 等, 2003. 云南个旧锡矿床成因研究综述. 地质地球化学, 31 (3): 70-75. https://www.cnki.com.cn/Article/CJFDTOTAL-DZDQ200303013.htm
      [65] 张仁铎, 2001. 空间变异理论及应用. 北京: 科学出版社.
      [66] 张翼飞, 徐道谦, 史清琴, 等, 1993. 云南省区域矿产总结(上册). 昆明: 云南省地质矿产局.
      [67] 赵鹏大, 1995. 数学地质: 回顾与展望. 中国地质学科发展的回顾——孙云铸教授百年诞辰纪念文集. 见: 王鸿祯主编. 武汉: 中国地质大学出版社, 174-178.
      [68] 赵鹏大, 2004. 定量地学方法及应用. 北京: 地质出版社.
      [69] 赵鹏大, 陈永清, 刘吉平, 等, 1999. 地质异常成矿预测理论与实践. 武汉: 中国地质大学出版社.
      [70] 朱炳泉, 常向阳, 邱华宁, 等, 2000. 扬子地块西南缘滇中元古宇特征及赋存超大型矿床的可能性. 见: 涂光炽编, 中国超大型矿床(Ⅰ). 北京: 科学出版社.
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