一、专著
[1]韩润生, 陈进, 黄智龙, 马德云, 薛传东, 李元, 邹海俊, 李勃, 胡煜昭, 马更生, 黄德镛, 王学琨. 《构造成矿动力学及隐伏矿定位预测——以云南会泽超大型铅锌(银、锗)矿床为例》. 科学出版社, 2006.
[2]王登红, 应汉龙, 梁华英, 黄智龙, 骆耀南. 《西南三江地区新生代大陆动力学过程与大规模成矿》. 地质出版社, 2006.
[3]陈丰. 《20世纪科学技术革命和地球科学精览》. 贵州科技出版社, 2006.
[4]王中刚, 朱笑青, 毕华, 王元龙, 吴柏青, 邹天人, 赵振华, 桂训唐. 《中国新疆花岗岩》. 地质出版社(北京), 2006.
[5]毛景文, 胡瑞忠, 陈毓川, 王义天, 等著. 《大规模成矿作用及大型矿集区(上、下册)》. 地质出版社, 2006, 1030页.
[6]涂光炽, 等.《地学思想史》. 地质出版社, 2007.
[7]金中国, 等.《黔西北地区铅锌矿控矿因素、成矿规律与找矿预测》. 冶金工业出版社, 2008.
[8]胡瑞忠, 等. 中国至2050年: 科学技术与中国的未来. 科学出版社.
[9]胡瑞忠,刘建明,翟明国.Mineral Resources Science in China: A Roadmap to 2050.科学出版社,2010.
二、SCI论文
[1]Chen Y J, Pirajno F, Qi J P. Origin of gold metallogeny and sources of ore-formong fluids, Jiaodong Province, eastern China. International Geology Review, 2005, 47: 530-549.
[2]Zhong H, Hu R Z, Wilson A H, Zhu W G. Review of the link between the Hongge layered intrusion and Emeishan flood basalts, Southwest China. International Geology Review, 2005, 47(9): 971-985.
[3]Huang W Q, Liu S R. PL Spectra and quantum confinement analysis of Ge nanostructure in rapia oxidation of SiGe substrate. Modern Physics Letters B, 2005, 19(30): 1767-1774.
[4]Qi L, Zhou M F, Malpas J, Sun M. Determination of rare earth elements and Y in ultramafic rocks by ICP-MS after preconcentration using Fe(OH)3 And Mg(OH)2 coprecipitation. Geostandards and Geoanalytical Research, 2005, 29: 131-141.
[5]Li D X, Gao Z M, Zhu Y X, Yu Y M, Wang H. Photochemical reaction of Tl in aqueous solution and its environmental significance. Geochemical Journal, 2005, 39: 113-119.
[6]Chen Y J, Pirajno F, Sui Y H. Geology and D-O-C isotopes systematics of the Tieluping silver deposit, Henan, China: Implications for ore genesis. Acta Geologica Sinica, 2005, 79(1): 106-119.
[7]Xie G Q, Hu R Z, Mao J W, Li R L, Cao J J, Jiang G H, Qi L. Geological and geochemical characterics of early cretaceous mafic dikes in northern Jiangxi Province, SE China and their geodynamic implications. Acta Geologica Sinica, 2005, 79(2): 201-210.
[8]Chen L, Yi H S, Hu R Z, Zhong H, ZouY R. Organic geochemistry of the early Jurassic oil shale from the Shuanghu area in northern Tibet and the early Toarcian oceanic anoxic event. Acta Geologica Sinica, 2005, 79(3): 392-397.
[9]谢桂青, 毛景文, 胡瑞忠, 李瑞玲, 曹建劲. 赣中早第三纪镁铁质岩石的地质地球化学及其地质意义. 岩石学报, 2005, 21(1): 77-90.
[10]毕献武, 胡瑞忠, 彭建堂, 吴开兴, 苏文超, 战新志. 姚安和马厂箐富碱侵入岩体的地球化学特征. 岩石学报, 2005, 21(1): 113-124.
[11]刘燊, 胡瑞忠, 赵军红, 冯彩霞, 钟宏, 曹建劲, 史丹妮. 胶北晚中生代煌斑岩的岩石地球化学特征及其成因研究. 岩石学报, 2005, 21(3): 947-958.
[12]张静, 燕光谱, 叶霖, 李国平, 李忠烈, 王志光. 河南内乡县银洞沟银多金属矿床碳-氢-氧同位素地球化学. 岩石学报, 2005, 21(5): 1359-1364.
[13]Yang Y M, Tu G Z, Hu R Z, Shi X F. Sm-Nd isotopic geochronology of the Yinachang Fe-Cu-REE deposit at Wuding, Yunnan Province and its genetic significance. Chinese Science Bulletin, 2005, 50(18): 2090-2096.
[14]Fu Y Z, Peng J T, Qu W J, Hu R Z, Shi X F, Du A D. Os isotopic compositions of a cobalt-rich ferromanganese crust profile in central Pacific. Chinese Science Bulletin, 2005, 50(18): 2106-2112.
[15]Qi H W, Hu R Z, Qi L. Experimental study on the interaction between peat, lignite and germanium-bearing solution at low temperature. Science in China (D), 2005, 48(9): 1411-1417.
[16]黄伟其, 刘世荣. 激光照射下的低温氧化生成的锗的纳米结构及其特性. 物理学报, 2005, 54(2): 972-976.
[17]Li Z L, Hu R Z, Peng J T, Bi X W. Helium and sulfur isotopic geochemistry of Furong tin deposit in Hunan Province. Geochimica et Cosmochimica Acta, 2005, Suppl: A88.
[18]Shao S X, Zheng B S. Biocheochemistry of Se in Hexi Corridor, northwestern China. Geochimica et Cosmochimica Acta, 2005, Suppl: A802.
[19]Ye L. Origin of mineralizing fluid of Niujiaotang Cd-rich zinc deposit, Duyun, Guizhou, China. Geochimica et Cosmochimica Acta, 2005, Suppl: A851.
[20]Han R S, Liu X F, Ma D Y, Ma G S, Tong Z C. Fault tectono geochemistry and prognosis of concealed ores in the Tongchang Cu-Au polymetallic orefield, Shaanxi, China. Geochemica et Cosmochimica Acta, 2005, Suppl: A883.
[21]Zhou M F, Zhao J H, Qi L, Su W C, Hu R Z. Zircon U-Pb geochronology and elemental and Sr-Nd isotope geochemistry of Permian mafic rocks in the Funing area, SW China. Contributions to Mineralogy and Petrology, 2006, 151: 1-19.
[22]Song X Y, Zhou M F, Keays R R, Cao Z.M, Sun M, Qi L. Geochemistry of the Emeishan flood basalts at Yangliuping, Sichuan, SW China: Implications for sulfide segregation. Contributions to Mineralogy and Petrology, 2006, 152: 53-74.
[23]Zhong H, Zhu W G. Geochronology of layered mafic intrusions from the Pan-Xi area in the Emeishan large igneous province, SW China. Mineralium Deposita, 2006, 41: 599-606.
[24]Peng J T, Zhou M F, Hu R Z, Shen N P, Yuan S D, Bi X W, Du A D, Qu W J. Precise molybdenite Re-Os and mica Ar-Ar dating of the Mesozoic Yaoganxian tungsten deposit, central Nanling district, South China. Mineralium Deposita, 2006, 41: 661-669.
[25]Wen H J, Carignan J, Qiu Y Z, Liu S R. Selenium speciation in Kerogen from two Chinese selenium deposits: Environmental implications. Environmental Science & Technology, 2006, 40: 1126-1132.
[26]Zhu W G, Zhong H, Deng H L, Wilson A H, Liu B G, Li C Y, Qin Y. SHRIMP zircon U-Pb age, geochemistry, and Nd-Sr isotopis of the Gaojiacun mafic-ultramafic intrusive complex, Southwest China. International Geology Review, 2006, 48: 650-668.
[27]Xie G Q, Hu R Z, Mao J W, Pirajno F, Li R L, Cao J J, Jiang G H, Zhao J H. K-Ar dating, geochemical and Sr-Nd-Pb isotopic systematics of late Mesozoic mafic rocks, southern Jiangxi Province, Southeast China: Petrogenesis and tectonic implications. International Geology Reviews, 2006, 48: 1023-1051.
[28]Song X Y, Zhou M F, Wang C Y, Qi L, Zhang C J. Role of crustal contamination in formation of the Jinchuan intrusion and its world-class Ni-Cu-(PGE) sulfide deposit, Northwest China. International Geology Review, 2006, 48: 1113-1132.
[29]Li Z L, Hu R Z, Peng J T, Bi X W. Helium isotope geochemistry of ore-forming fluids from Furong tin orefield in Hunan Province, China. Resource Geology, 2006, 56(1): 9-15.
[30]Zhang Q, Zhu X Q, He Y L, Jiang J J, Wang D P. Indium enrichment in the Meng'entaolegai Ag-Pb-Zn deposit, Inner Mongolia, China. Resource Geology, 2006, 56(3): 337-346.
[31]Huang Z L, Yan Z F, Xu C, Zhang Z L, Liu C Q. Mineralization by mantle fluids in the Miaoniuping REE deposit, Sichuan Province, China. Journal of Geochemical Exploration, 2006, 89: 165-169.
[32]Li X B, Huang Z L, Li W B, Zhang Z L, Yan Z F. Sulfur isotopic compositions of the Huize super-large Pb-Zn deposit, Yunnan Province, China: Implications for the source of sulfur in the ore-forming fluids. Journal of Geochemical Exploration, 2006, 89: 227-230.
[33]Zhu X Q, Zhang Q, He Y L, Zhu C H, Huang Y. Hydrothermal source rocks of the Meng'entaolegai Ag-Pb-Zn deposit in the granite batholith, Inner Mongolia, China: Constrained by isotopic geochemistry. Geochemical Journal, 2006, 40(3): 265-275.
[34]Liu S, Zou H B, Hu R Z, Zhao J H, Feng C X. Mesozoic mafic dikes from the Shandong peninsula, North China craton: Petrogenesis and tectonic implications. Geochemical Journal, 2006, 40: 181-195.
[35]Xie G Q, Mao J W, Hu R Z, Piraino F, Li R L, Cao J J. K-Ar dating, geochemical and Sr-Nd-Pb isotopic systematics of Paleocene mafic rocks in central Jiangxi, SE China: Evidence for lithosphere replacement. Geochemical Journal, 2006, 40(5): 485-500.
[36]Huang W Q, Liu S R. Self-assembled germanium nano-structures by laser-assisted oxidation. Chinese Physics, 2006, 15(2): 389-393.
[37]Zhong H, Zhu W G, Qi L, Zhou M F, Song X Y, Zhang Y. Platinum-group element (PGE) geochemistry of the Emeishan basalts in the Pan-Xi area, SW China. Chinese Science Bulletin, 2006, 51(7): 845-854.
[38]Zhu X Q, Zhang Q, He Y L, Zhu C H. Lead isotopic composition and lead source of the Huogeqi Cu-Pb-Zn deposit, Inner Moungolia, China. Acta Geologica Sinica, 2006, 80(4): 528-539.
[39]Lu H B,Zhang Y X,Zhang Q L,Xiao J F. Earthquake-reated tectonic deformation of soft-sediments and its constraints on basin tectonic evolution. Acta Geologica Sinica, 2006, 80(5): 724-732.
[40]Zhu X Q, Wang Z G. Advances in geochemical research on nanometer materials. Progress in Natural Science, 2006, 16(4): 331-337.
[41]Chen L, Yi H S, Zhong H, Hu R Z, Yin J R, Yang J K. The calcareous nannofossil record and its geological significance in the Jurassic black shales from the Qiangtang basin, northern Tibetan plateau. Progress in Natural Science, 2006, 16(Special Issue): 264-273.
[42]刘世荣, 黄伟其, 秦朝建. 氧化硅层中的锗纳米晶体团簇量子点. 物理学报, 2006, 55(5): 2488-2491.
[43]方维萱, 高珍权, 贾润幸, 黄转盈, 刘正桃, 李丰收, 徐国瑞. 东疆雅西371-西北坡铜金矿化带下石炭统火山岩地球化学特征与成矿背景. 岩石学报, 2006, 22(1): 215-224.
[44]管涛, 黄智龙, 许成, 张振亮, 严再飞, 陈觅. 云南白马寨镍矿区煌斑岩40Ar-39Ar定年和地球化学研究. 岩石学报, 2006, 22(4): 873-883.
[45]刘玉平, 叶霖, 李朝阳, 宋彪, 李铁胜, 郭利果, 皮道会. 滇东南发现新元古代岩浆岩:SHRIMP锆石U-Pb年代学和岩石地球化学证据. 岩石学报, 2006, 22(4): 916-926.
[46]郭利果, 刘玉平, 徐伟, 张兴春, 秦克章, 李铁胜, 石玉若. SHRIMP锆石年代学对西藏玉龙斑岩铜矿成矿年龄的制约. 岩石学报, 2006, 22(4): 1009-1016.
[47]陈兰, 钟宏, 胡瑞忠, 肖加飞, 邹艳荣. 黔北早寒武世缺氧事件:生物标志化合物及有机碳同位素特征. 岩石学报, 2006, 22(9): 2413-2423.
[48]李文博, 黄智龙, 张冠. 云南会泽铅锌矿田成矿物质来源: Pb、S、C、H、O、Sr同位素制约. 岩石学报, 2006, 22(10): 2567-2580.
[49]朱笑青, 王中刚, 王元龙, 毕华. 新疆后造山碱性花岗岩的地质特征. 岩石学报, 2006, 22(12): 2945-2956.
[50]Bi X W, Hu R Z, Peng J T, Liu L, Wu K X, Su W C. Geochemical characteristics of the Yao'an and machangqing Alkaline-rich intrusions in the Ailaoshan-Jinshajiang belt, western Yunnan, China. Geochimica et Cosmochimica Acta, 2006, 70(18), Suppl: A49.
[51]Carignan J, Wen H J. Scaling NIST SRM 3149 for Se isotope analysis and isotopic variations of natural samples. Geochimica et Cosmochimica Acta, 2006, 70(18), Suppl: A83.
[52]Cui Y L, Huang Z L. Study on the geochemistry of meta-volcanic rocks from the Longbohe Cu deposit, Yunnan Province, China. Geochimica et Cosmochimica Acta, 2006, 70(18), Suppl: A121.
[53]Hu R Z, Qi H W, Bi X W, Su W C, Peng J T. Geology and geochemistry of the Lincang superlarge germanium deposit hosted in coal seams, Yunnan, China. Geochimica et Cosmochimica Acta, 2006, 70(18), Suppl: A269.
[54]Liu Y, Tang M. Iron isotopic fractionations between species in solution - From ab initio quantum chemistry calculations. Geochimica et Cosmochimica Acta, 2006, 70(18), Suppl: A367.
[55]Han R S, Xue C D, Hu Y Z, Huang Z L. Enrichment features and significances of Ag and dispersed elements in the Huize carbonate-hosted Zn-Pb-(Ag-Ge) district, Yunnan, China. Geochimica et Cosmochimica Acta, 2006, 70(18), Suppl: A544.
[56]Shang L B, Hu R Z, Fan W L. An experimental study on the solubility of copper bichloride in water vapor. Geochimica et Cosmochimica Acta, 2006, 70(18), Suppl: A575.
[57]Zhong H, Zhu W G, Chu Z Y, He D F, Song X Y. SHRIMP U-Pb zircon geochronology, geochemistry, and Nd-Sr isotopic study of contrasting granites in the Emeishan large igneous province, SW China. Chemical Geology, 2007, 236: 112-133.
[58]Carignan J, Wen H J. Scaling NIST SRM 3149 for Se isotope analysis and isotopic variations of natural samples. Chemical Geology, 2007, 242: 347-350.
[59]Xu L, Lin Y T, Shen W J, Qi L, Xie L W, Ouyang, Z Y. Platinum-group elements of the Meishan Permian-Triassic boundary section: Evidence for flood basaltic volcanism. Chemical Geology, 2007, 246: 55-64.
[60]Tao Y, Li C S, Hu R Z, Ripley E M, Du A D, Zhong H. Petrogenesis of the Pt-Pd mineralized Jinbaoshan ultramafic intrusion in the Permian Emeishan large igneous province, SW China. Contributions to Mineralogy and Petrology, 2007, 153: 321-337.
[61]Wen H J, Carignan J. Reviews on atmospheric selenium: Emissions, speciation and fate. Atmospheric Environment, 2007, 41: 7151-7165.
[62]Xu C, Campbell I H, Allen C M, Huang Z L, Qi L, Zhang H, Zhang C S. Flat rare earth element patterns as an indicator of cumulate processes in the Lesser Qinling carbonatites, China. Lithos, 2007, 95: 267-278.
[63]Li Z L, Hu R Z, Yang J S, Peng J T, Li X M, Bi X W. He, Pb and S isotopic constraints on the relationship between the A-type Qitianling granite and the Furong tin deposit, Hunan Province, China. Lithos, 2007, 97: 161-173.
[64]Zhu W G, Zhong H, Li X H, Liu B G, Deng H L, Qin Y. 40Ar-39Ar age, geochemistry and Sr-Nd-Pb isotopes of the Neoproterozoic Lengshuiqing Cu-Ni sulfide-bearing mafic-ultramafic complex, SW China. Precmbrian Research, 2007, 155: 98-124.
[65]Qi H W, Hu R Z, Zhang Q. Concentration and distribution of trace elements in lignite from the Shengli coalfield, Inner Mongolia, China: Implications on origin of the associated Wulantuga germanium deposit. International Journal of Coal Geology, 2007, 71: 129-152.
[66]Qi H W, Hu R Z, Zhang Q. REE geochemistry of the Cretaceous lignite from Wulantuga germanium deposit, Inner Mongolia, northeastern China. International Journal of Coal Geology, 2007, 71: 329-344.
[67]Li W B, Huang Z L, Yin M D. Dating of the giant Huize Zn-Pb ore field of Yunnan Province, Southwest China: Constraints from the Sm-Nd system in hydrothermal calcite. Resource Geology, 2007, 57(1): 90-97.
[68]Li W B, Huang Z L, Yin M D. Isotope geochemistry of the Huize Zn-Pb ore field, Yunnan Province, southwestern China: Implication for the sources of ore fluid and metals. Geochemical Journal, 2007, 41: 65-81.
[69]Qi L, Zhou M F, Wang C Y, Sun M. Evaluation of a technique for determining Re and PGEs in geological samples by ICP-MS coupled with a modified Carius tube digestion. Geochemical Journal, 2007, 41: 407-414.
[70]Peng L M, Huo H, Liu Y, Grey C P. 17O magic angle spinning NMR studies of BrØnsted acid sites in zeolites HY and HZSM-5. Journal of the American Chemical Society, 2007, 129: 335-346.
[71]Zhao J H, Hu R Z, Zhou M F, Liu S. Elemental and Sr-Nd-Pb isotopic geochemistry of Mesozoic mafic intrusions in southern Fujian Province, SE China: Implications for lithosphereic mantle evolution. Geological Magazine, 2007, 144(6): 937-952.
[72]Xu C, Huang Z L, Qi L, Fu P Q, Liu C Q, Li E D, Guan T. Geochemistry of Cretaceous granites from Mianning in the Panxi region, Sichuan Province, southwestern China: Implications for their generation. Journal of Asian Earth Sciences, 2007, 29: 737-750.
[73]Gu X X, Schulzc O, Vavtar F, Liu J M, Zheng M H, Fu S H. Rare earth element geochemistry of the Woxi W-Sb-Au deposit, Hunan Province, South China. Ore Geology Reviews, 2007, 31: 319-336.
[74]Han R S, Liu C Q, Huang Z L, Chen J, Ma D Y, Lei L, Ma G S. Geological features and origin of the Huize carbonate-hosted Zn-Pb-(Ag) district, Yunnan, South China. Ore Geology Reviews, 2007, 31: 360-383.
[75]Zhu B Q, Hu Y G, Zhang Z W, Cui X J, Dai T M, Chen G H, Peng J H, Sun Y G, Liu D H, Chang X Y. Geochemistry and geochronology of native copper mineralization related to the Emeishan flood basalts, Yunnan Province, China. Ore Geology Reviews, 2007, 32: 366-380.
[76]Chen D F, Liu Q, Zhang Z W, Cathles Ⅲ L M, Roberts H H. Biogenic fabrics in seep carbonates from an active gas vent site in Green Canyon Block 238, Gulf of Mexico. Marine and Petroleum Geology, 2007, 24: 313-320.
[77]Yu Y M, Zhu Y X, Gao Z M, Gammons C H, Li D X. Rates of arsenopyrite oxidation by oxygen and Fe(Ⅲ) at pH 1.8-12.6 and 15-45℃. Environmental Science and Technology, 2007, 41: 6460-6464.
[78]Shang L B, Bi X W, Hu R Z, Fan W L. An experimental study on the solubility of copper bichloride in water vapor. Chinese Science Bulletin, 2007, 52(3): 395-400.
[79]Wen H J, Carignan J, Hu R Z, Fan H F, Chang B, Yang G S. Large selenium isotopic variations and its implication in the Yutangba Se deposit, Hubei Province, China. Chinese Science Bulletin, 2007, 52(17): 2443-2447.
[80]Zhang Z, Zhang B G, Hu J, Yao L B, Tian Y F. A Preliminary discussion on the bio-metallogenesis of Tl deposits in the low-temperature minerogenetic province of southwestern China. Science in China (D), 2007, 50(3): 359-370.
[81]Yuan S D, Peng J T, Shen N P, Hu R Z, Dai T M. 40Ar-39Ar age isotopic dating of the Xianghualing Sn-polymetallic orefield in southern Hunan, China and its geological implications. Acta Geologica Sinica, 2007, 81(2): 278-286.
[82]Li W B, Huang Z L, Qi L. REE geochemistry of sulfides from the Huize Zn-Pb ore field, Yunnan Province: Implication for the sources or ore-forming metals. Acta Geologica Sinca, 2007, 81(3): 442-449.
[83]Zhang Q, Zhu X Q, He Y L, Zhu C H. In, Sn, Pb and Zn contents and their relationships in ore-forming fluids from some In-rich and In-poor deposits in China. Acta Geologica Sinica,2007, 81(3): 450-462.
[84]Huang Z L, Xu C, McCaig A, Liu C Q, Wu J, Xu D R, Li W B, Guan T, Xiao H Y. REE geochemistry of fluorite from the Maoniuping REE deposit, Sichuan Province, China: Implications for the source of ore-forming fluids. Acta Geological Sinica, 2007, 81(4): 622-636.
[85]Huang W Q, Liu S R, Xu L, Wu K Y, Qin C J, Cai S H. Low-dimensional structures formed by irradiation of laser. Chinese Physics, 2007, 16(3): 725-729.
[86]Qin C J, Qiu Y Z, Zhuo G F, Wang Z Gg, Zhang T R, Xiao G W. Fluid inclusion study of carbonatite dykes/veins and ore-hosted dolostone at the Bayan Obo ore deposit. 岩石学报, 2007, 23(1): 161-168.
[87]张贵山, 温汉捷, 胡瑞忠, 裘愉卓, 许成. 闽东南基性岩脉成因及动力学背景研究:Sr-Nd同位素、元素地球化学. 岩石学报, 2007, 23(4): 793-804.
[88]刘玉平, 李正祥, 李惠民, 郭利果, 徐伟, 叶霖, 李朝阳, 皮道会. 都龙锡锌矿床锡石和锆石U-Pb年代学:滇东南白垩纪大规模花岗岩成岩-成矿事件. 岩石学报, 2007, 23(5): 967-976.
[89]陈衍景, 倪培, 范宏瑞, Pirajno F, 赖勇, 苏文超, 张辉. 不同类型热液金矿系统的流体包裹体特征. 岩石学报, 2007, 23(9): 2085-2108.
[90]王巧云, 胡瑞忠, 彭建堂, 毕献武, 武丽艳, 刘华, 苏本勋. 湖南瑶岗仙钨矿床流体包裹体特征及其意义. 岩石学报, 2007, 23(9): 2263-2273.
[91]顾雪祥, 李葆华, 徐仕海, 付绍洪, 董树义. 贵州石头寨二叠系古油藏油气成藏期分析:流体包裹体与Sm-Nd同位素制约. 岩石学报, 2007, 23(9): 2279-2286.
[92]李士彬, 宋谢炎, 胡瑞忠, 陈列锰, 聂晓勇. 甘肃金川II号岩体岩相学特征及分离结晶过程探讨. 岩石学报, 2007, 23(10): 2553-2560.
[93]李鸿莉, 毕献武. 芙蓉锡矿田骑田岭花岗岩黑云母矿物化学及其对锡成矿的指示意义. 岩石学报, 2007, 23(10): 2605-2614.
[94]陶琰, 胡瑞忠, 漆亮, 罗泰义. 四川力马河镁铁-超镁铁质岩体的地球化学特征及成岩成矿分析. 岩石学报, 2007, 23(11): 2785-2800.
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[203]Weiguang Zhu, Xianhua Li, Hong Zhong, Xuance Wang, Defeng He, Zhongjie Bai, Feng Liu.The Tongde picritic dykes in the Western Yangtze Block: evidence for ca. 800-Ma mantle plume magmatism in South China during the breakup of Rodinia.The Journal of Geology, 2010,118: 509-522.
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[205]Xiaofeng Li, Chunzeng Wang, Renmin Hua, Xinglin Wei.Fluid origin and structural enhancement during mineralization of the Jinshan orogenic gold deposit, South China.Mineralium Deposita, 2010,45: 583-597.
[206]Huang Zhiong, Li Xiaobiao, Zhou Meifu, Li Wenbo, Jin Zhongguo.REE and C-O Isotopic Geochemistry of Calcites from the World-class Huize Pb-Zn Deposits, Yunnan, China: Implications for the Ore Genesis.Acta Geologica Sinica, 2010,84(3): 597-613.\
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