Abstract:The distribution of magmatic Ni-Cu deposits related with mafic-ultramafic magma of mantle sources is imbalance in the Earth owing to different deep mantle dynamics mechanism. Especially the imbalance distribution of Ni-Cu deposits in China, most of them were located mainly in interplate or the margin of plates. In order to understand formation characteristics of magmatic Ni-Cu sulfide deposits in China and definite the prospecting direction of magmatic Ni-Cu deposits, the typical magmatic Ni-Cu sulfide deposits were analyzed comprehensively and found that these deposits formed basicly in the late New Proterozoic, late Early Paleozoic and late Late Paleozoic. And all of them grew unexceptionally in the interplate or the margin of plate and it’s the result of multi-stages magmatic emplacement after immiscibling magma. This paper gives a systematic study of deep process of magmatic Ni-Cu sulfide deposits and useful ore-formation information of geology, geophysics, geochemistry and remote sensing. Combining with newly prospecting progress on ore-search breakthrough, the result shows that Northwestern China is a very important ore-forming potential area for magmatic Ni-Cu sulfide deposits and the margin of stable craton is still a main prospecting direction for magmatic Ni-Cu sulfide deposits.
[1] 张照伟,李文渊,郭周平,等.青海省阿什贡含镍矿镁铁-超镁铁岩体形成时代及其对成矿机制的启示[J].地球学报,2014,35(1):59-66. [2] 张照伟,李文渊,王亚磊,等.南祁连化隆地区下什堂含铜镍矿基性-超基性岩体成因研究:锆石年代学、地球化学和Sr-Nd同位素约束[J].岩石学报,2015,31(9):2539-2548. [3] 李文渊,董福辰,张照伟,等.西北地区矿产资源成矿远景与找矿部署研究主要进展及成果[J].中国地质调查,2015,2(1):18-24. [4] 李文渊,牛耀龄,张照伟,等.新疆北部晚古生代大规模岩浆成矿的地球动力学背景和战略找矿远景[J].地学前缘,2012,19(4):41-50. [5] 汤中立,焦建刚,闫海卿,等.小岩体成(大)矿理论体系[J].中国工程科学,2015,17(2):4-18. [6] 张照伟,李文渊,张江伟,等.新疆北部岩浆铜镍硫化物矿床地质分布特点与成矿背景探讨[J].西北地质,2015,48(3):335-354. [7] 张照伟,李文渊,张江伟,等.新疆北部晚古生代大规模岩浆作用与成矿耦合关系研究主要进展及成果[J].中国地质调查,2015,2(6):20-25. [8] Zhou M F,Lesher C M,Yang Z X,et al.Geochemistry and petrogenesis of 270 Ma Ni- Cu-(PGE) sulfide-bearing mafic intrusions in the Huangshan district,Eastern Xinjiang,Northwest China: implications for the tectonic evolution of the Central Asian orogenic belt[J].Chemical Geology,2004,209(3/4): 233-257. [9] 秦克章,丁奎首,许英霞,等.东天山图拉尔根、白石泉铜镍钴矿床钴、镍赋存状态及原岩含矿性研究[J].矿床地质,2007,26(1):1-14. [10] 张照伟,李文渊,高永宝.祁连—龙首山元古宙大火成岩省与金川型铜镍矿关系探讨[J].中国地质调查,2014,1(1):14-18. [11] 宋谢炎,张成江,胡瑞忠,等.峨眉火成岩省岩浆矿床成矿作用与地幔柱动力学过程的耦合关系[J].矿物岩石,2005,25(4):35-44. [12] Zhang Z W,Li C S,Wang Y L,et al.Olivine chemistry and sulfur isotopes of the newly-discovered Xiarihamu magmatic Ni-Cu sulfide ore deposit in the eastern Kunlunorogenic belt,Qinghai-Tibet plateau[J].Acta Geologica Sinica,2014,88(s2):340-341. [13] Li C S,Zhang Z W,Li W Y,et al.Geochronology,petrology and Hf-S isotope geochemistry of the newly-discovered Xiarihamu magmatic Ni-Cu sulfide deposit in the Qinghai-Tibet plateau,western China[J].Lithos,2015,216-217:224-240. [14] 张照伟,王亚磊,钱兵,等.青海省化隆地区镁铁-超镁铁质侵入岩含矿特点与成矿规律[J].中国地质,2015,42(3):724-736. [15] 钱兵,张照伟,张志炳,等.柴达木盆地西北缘牛鼻子梁镁铁-超镁铁质岩体年代学及其地质意义[J].中国地质,2015,42(3):482-493. [16] 吕林素.吉林红旗岭岩浆型铜镍硫化物矿床成矿背景与成矿机制[D].北京:中国地质大学(北京),2011. [17] 王亚磊,张照伟,张铭杰,等.新疆坡北镁铁-超镁铁质岩体地球动力学背景探讨[J].岩石矿物学杂志,2013,32(5):693-707. [18] 王亚磊,张照伟,尤敏鑫,等.东天山白鑫滩铜镍矿锆石U-Pb年代学、地球化学特征及对Ni-Cu找矿的启示[J].中国地质,2015,42(3):452-467. [19] 李文渊,张照伟,陈博.小岩体成大矿的理论与找矿实践意义——以西北地区岩浆铜镍硫化物矿床为例[J].中国工程科学,2015,17(2):29-34. [20] 汤中立.中国镁铁、超镁铁岩浆矿床成矿系列的聚集与演化[J].地学前缘,2004,11(1):113-119. [21] 姜常义,夏明哲,钱壮志,等.新疆喀拉通克镁铁质岩体群的岩石成因研究[J].岩石学报,2009,25(4):749-764. [22] 钱壮志,王建中,姜常义,等.喀拉通克铜镍矿床铂族元素地球化学特征及其成矿作用意义[J].岩石学报,2009,25(4):832-844. [23] Naldrett A J.World-class Ni-Cu-PGE deposits:Key factors in their genesis[J].Mineralium Deposita,1999,34(3):227-240. [24] 宋谢炎,肖家飞,朱丹,等.岩浆通道系统与岩浆硫化物成矿研究新进展[J].地学前缘,2010,17(1):153-163. [25] 王焰.云南二叠纪白马寨铜镍硫化物矿床的成因:地壳混染与矿化的关系[J].矿物岩石地球化学通报,2008,27(4):332-343. [26] 张照伟,李文渊,钱兵,等.东昆仑夏日哈木岩浆铜镍硫化物矿床成矿时代的厘定及其找矿意义[J].中国地质,2015,42(3):438-451. [27] Li C S,Naldrett A J.Melting reactions of gneissic inclusions with enclosing magma at Voisey’s Bay,Labrador,Canada:Implications with respect to ore genesis[J].Economic Geology,2000,95(4):801-814.