墨西哥西马德雷山脉中-新生代构造、岩浆演化及成矿特征

姚春彦, 姚仲友, 李汉武, 郭维民, 刘君安. 墨西哥西马德雷山脉中-新生代构造、岩浆演化及成矿特征[J]. 地质通报, 2017, 36(12): 2124-2133.
引用本文: 姚春彦, 姚仲友, 李汉武, 郭维民, 刘君安. 墨西哥西马德雷山脉中-新生代构造、岩浆演化及成矿特征[J]. 地质通报, 2017, 36(12): 2124-2133.
YAO Chunyan, YAO Zhongyou, LI Hanwu, GUO Weimin, LIU Jun'an. The tectonics, magmatic evolution and metallogenic characteristics in Mexican Sierra Madre Occidental during the Mesozoic-Cenozoic period[J]. Geological Bulletin of China, 2017, 36(12): 2124-2133.
Citation: YAO Chunyan, YAO Zhongyou, LI Hanwu, GUO Weimin, LIU Jun'an. The tectonics, magmatic evolution and metallogenic characteristics in Mexican Sierra Madre Occidental during the Mesozoic-Cenozoic period[J]. Geological Bulletin of China, 2017, 36(12): 2124-2133.

墨西哥西马德雷山脉中-新生代构造、岩浆演化及成矿特征

  • 基金项目:
    中国地质调查局项目《海上丝绸之路大洋洲和南美洲矿产资源潜力评价》(编号:DD20160110)
详细信息
  • 中图分类号: P534.5;P534.6;P588.1

The tectonics, magmatic evolution and metallogenic characteristics in Mexican Sierra Madre Occidental during the Mesozoic-Cenozoic period

  • 墨西哥西马德雷山脉是白垩纪-新生代岩浆活动和构造运动形成的。中新生代岩浆活动可以分为5个主要阶段:侏罗纪-早白垩世、晚白垩世-古新世、始新世-渐新世、中新世早期和中新世中期-现代。这些岩浆活动和构造运动与法拉隆(Farallon)板块向北美大陆俯冲和加利福尼亚湾打开相关。墨西哥中新生代的成矿作用与东太平洋板块边缘连续的俯冲过程密切相关,矿床类型多样,包括VMS(与火山相关的块状硫化物)型、斑岩型、IOCG(铁氧化物铜金)型、矽卡岩型等。

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  • 图 1  西马德雷山脉位置[2]

    Figure 1. 

    图 2  墨西哥的大地构造单元

    Figure 2. 

    图 3  墨西哥西马德雷构造分区[2, 11]

    Figure 3. 

    图 4  西马德雷中新生代火山岩分布[2]

    Figure 4. 

  • [1]

    Bryan S E, Ferrari L.Large igneous provinces and silicic large igneous provinces:Progredd in our understanding over the last 25 years[J]. Geological Society of America Bulletin, 2013, 125:1053-1078. doi: 10.1130/B30820.1

    [2]

    Ferrrari L, Valencia-Moreno M, Bryan S.Magmatism and tectonics of the Sierra Madre Occidental and its relation with the evolution of the western margin of North America[J]. Geological Society of America Bulletin, 2007, Special Paper 422:1-39. https://pubs.geoscienceworld.org/books/book/581/chapter/3803576

    [3]

    Aguirre-Diaz G J, Labarthe-Hemandez G.Fissure ignimbrites:Fissure-source origin for voluminous ignimbrites of the Sierra Madre Occidental and its relationship with Basin and Range faulting[J]. Geology, 2003, 31:773-776. doi: 10.1130/G19665.1

    [4]

    Moran-Zenteno D J, Tolson G, Martiny B, et al.ertiary arc-magmatism of the Sierra Madre del Sur, Mexico, and its transition to the volcanic activity of the Trans-Mexican Volcanic Belt[J]. Journal of South American Earth Sciences, 1999, 12:513-535. doi: 10.1016/S0895-9811(99)00036-X

    [5]

    王素平, 王绘清, 吕晓东, 等.墨西哥地质、矿产及矿业经济概况[J].安徽地质, 2012, 22:273-280. doi: 10.3969/j.issn.1005-6157.2012.04.009

    [6]

    McDowell F W, Keizer R P.Timing of mid-Tertiary volcanism in the Sierra Madre Occidental between Durango City and Mazatlán, Mexico[J]. Geological Society of America Bulletin, 1977, 88:1479-1487. doi: 10.1130/0016-7606(1977)88<1479:TOMVIT>2.0.CO;2

    [7]

    Cameron K L, Nimz G J, Kuentz D, et al.Southern Cordilleran basaltic andesite suite, southern Chihuahua, Mexico; a link between Tertiary continental arc and flood basalt magmatismin North America[J]. Journal of Geophysical Research, 1989, 94:7817-7840. doi: 10.1029/JB094iB06p07817

    [8]

    Dickinson W R, Lawton T F.Carboniferous to Cretaceous assembly and fragmentation of Mexico[J]. Geological Society of America Bulletin, 2001, 113:1142-1160. doi: 10.1130/0016-7606(2001)113<1142:CTCAAF>2.0.CO;2

    [9]

    Moore G, Marone C, Carmichael I S E, et al.Basaltic volcanism and extension near the intersection of the Sierra Madre volcanic province and the Mexican Volcanic Belt[J]. Geological Society of America Bulletin, 1994, 106:383-394. doi: 10.1130/0016-7606(1994)106<0383:BVAENT>2.3.CO;2

    [10]

    Aguirre-Díaz G J, McDowell F W.The volcanic section at Nazas, Durango, Mexico, and the possibility of widespread Eocene volcanism within the Sierra Madre Occidental[J]. Journal of Geophysical Research, 1991, 96:13373-13388. doi: 10.1029/91JB00245

    [11]

    Henry C D, Aranda-Gómez J J.Plate interactions control middlelate Miocene proto-Gulf and Basin and Range extension in the southern Basin and Range[J]. Tectonophysics, 2000, 318:1-26. doi: 10.1016/S0040-1951(99)00304-2

    [12]

    Horner J T, Enríquez E.Epithermal precious metal mineralization in a strike-slip corridor:The San Dimas district, Durango, Mexico[J]. Economic Geology and the Bulletin of the Society of Economic Geologists, 1999, 94:1375-1380. doi: 10.2113/gsecongeo.94.8.1375

    [13]

    Barra F, Ruiz J, Valencia V A, et al.Laramide porphyry Cu-Mo mineralization in northern Mexico:Age constraints from Re-Os geochronology in molybdenites[J]. Economic Geology and the Bulletin of the Society of Economic Geologists, 2005, 100:1605-1616. doi: 10.2113/gsecongeo.100.8.1605

    [14]

    Megaw P K M.Geology and geochemistry of the Santa Eulalia mining district, Chihuahua, Mexico[M]. University of Arizona, Tucson, 1990:463.

    [15]

    McDowell F W, Mauger R L.K-Ar and U-Pb zircon chronology of Late Cretaceous and Tertiary magmatism in central Chihuahua State, Mexico[J]. Geological Society of America Bulletin, 1994, 106:118-132. doi: 10.1130/0016-7606(1994)106<0118:KAAUPZ>2.3.CO;2

    [16]

    McDowell F W, Clabaugh S E.Ignimbrites of the Sierra Madre Occidental and their relation to the tectonic history of western Mexico[C]//Chapin C E, Elston W E.Ash-Flow Tuffs:Geological Society of America Special Paper, 1979, 180:113-124.

    [17]

    Nourse J A, Anderson T H, Silver LT.Tertiary metamorphic core complexes in Sonora, northwestern Mexico[J]. Tectonics, 1994, 13:1161-1182. doi: 10.1029/93TC03324

    [18]

    Vega-Granillo R, Calmus T.Mazatán metamorphic core complex (Sonora, Mexico):Structures along the detachment fault and its exhumation evolution[J]. Journal of South American Earth Sciences, 2003, 16:193-204. doi: 10.1016/S0895-9811(03)00066-X

    [19]

    Gans P B, MacMillan I, Roldán-Quintana J.Late Miocene (ProtoGulf) extension and magmatism on the Sonoran margin[J]. EOS, Transactions AGU, 2003, 84(46):405. https://www.sciencedirect.com/science/article/pii/S0040195116301044

    [20]

    Paz-Moreno F, Demant A, Cochemé J J, et al.The Quaternary Moctezuma volcanic fi eld:A tholeiitic to alkali basaltic episode in the central Sonoran Basin and Range Province, Mexico[C]//Johnson S E, Paterson S R, Fletcher J M, et al.Tectonic Evolution of NorthwesternMéxico and the Southwestern USA:Geological Society of America Special Paper, 2003, 374:439-455.

    [21]

    Suter M.The historical seismicity of northeastern Sonora and northwestern Chihuahua, Mexico (28-32°N, 106-111°W)[J]. Journal of South American Earth Sciences, 2001, 14:521-532. doi: 10.1016/S0895-9811(01)00050-5

    [22]

    Aguirre-Díaz G J, McDowell F W.Nature and timing of faulting and syn-extensional magmatism in the southern Basin and Range, central-eastern Durango, Mexico[J]. Geological Society of America Bulletin, 1993, 105:1435-1444. doi: 10.1130/0016-7606(1993)105<1435:NATOFA>2.3.CO;2

    [23]

    Aranda-Gómez J J, Henry C D, Luhr J F, et al.Cenozoic volcanism and tectonics in NW Mexico-a transect across the Sierra Madre Occidental volcanic field and observations on extension related magmatism in the southern Basin and Range and Gulf of California tectonic Provinces[C]//Aguirre-Díaz G J, Aranda-Gómez J J, Carrasco-Núñez G, et al.Magmatism and Tectonics in the Central and Northwestern Mexico——A Selection of the 1997 IAVCEI General Assembly Excursions.Universidad Nacional Autónoma de México, Instituto de Geología, 1997:41.

    [24]

    Aranda-Gómez J J, Luhr J F, Housh T B, et al.Synextensional Pliocene-Pleistocene eruptive activity in the Camargo volcanic fi eld, Chihuahua, México[J]. Geological Society of America Bulletin, 2003, 115:298-313. doi: 10.1130/0016-7606(2003)115<0298:SPPEAI>2.0.CO;2

    [25]

    Lang B, Steinitz G, Sawkins F J, Simmons SF.K-Ar Age studies in the Fresnillo Silver District, Zacatecas, Mexico[J]. Economic Geology and the Bulletin of the Society of Economic Geologists, 1988, 83:1642-1646. doi: 10.2113/gsecongeo.83.8.1642

    [26]

    Nieto-Samaniego Á F, Ferrari L, Alaniz-Álvarez S A, et al.Variation of Cenozoic extension and volcanism across the southern Sierra Madre Occidental volcanic province, Mexico[J]. Geological Society of America Bulletin, 1999, 111:347-363. doi: 10.1130/0016-7606(1999)111<0347:VOCEAV>2.3.CO;2

    [27]

    Ferrari L, López-Martínez M, Rosas-Elguera J.Ignimbrite flareup and deformation in the southern Sierra Madre Occidental, western Mexico-implications for the late subduction history of the Farallon Plate[J]. Tectonics, 2002, 21:1029.

    [28]

    Ferrari L.Miocene shearing along the northern boundary of the Jalisco block and the opening of the southern Gulf of California[J]. Geology, 1995, 23:751-754. doi: 10.1130/0091-7613(1995)023<0751:MSATNB>2.3.CO;2

    [29]

    Magonthier M C.Distinctive rhyolite suites in the mid-Tertiary ignimbritic complex of the Sierra Madre Occidental, western Mexico[J]. Bulletin de la Société Géologique de France, 1988, 8(4):57-68. https://www.researchgate.net/publication/294431146_Geometallurgical_Modelling_Techniques_Applicable_to_Pre_feasibility_Projects_La_Colosa_Project_Case_of_Study

    [30]

    Tuta Z, Sutter J H, Kesler S E, et al.Geochronology of mercury, tin, and fl uorite mineralization in northern Mexico[J]. Economic Geology and the Bulletin of the Society of Economic Geologists, 1988, 83:1931-1942. doi: 10.2113/gsecongeo.83.8.1931

    [31]

    Ponce B, Clark K.The Zacatecas mining district——a Tertiary caldera complex associated with precious and base metal mineralization[J]. Economic Geology and the Bulletin of the Society of Economic Geologists, 1988, 83:1668-1682. doi: 10.2113/gsecongeo.83.8.1668

    [32]

    Webber K L, Fernández L A, Simmons W B.Geochemistry and mineralogy of the Eocene-Oligocene volcanic sequence, southern Sierra Madre Occidental, Juchipila, Zacatecas, Mexico[J]. Geofísica Internacional, 1994, 33:77-89. https://www.researchgate.net/publication/260079941_Geochemistry_and_Mineralogy_of_the_Eocene-Oligocene_Volcanic_Sequence_Southern_Sierra_Madre_Occidental_Juchipila_Mexico

    [33]

    Cochemé J J, Demant A.Geology of the Yécora area, northern Sierra Madre Occidental, Mexico[C]//Pérez-Segura E, Jacques-Ayala C.Studies of Sonoran Geology.Geological Society of America Special Paper, 1991, 254:81-94.

    [34]

    Wark D A, Kempter K A, McDowell F W.Evolution of waning, subduction-related magmatism, northern Sierra Madre Occidental, Mexico[J]. Geological Society of America Bulletin, 1990, 102:1555-1564. doi: 10.1130/0016-7606(1990)102<1555:EOWSRM>2.3.CO;2

    [35]

    Lanphere M A, Cameron K L, Cameron M.Sr isotopic geochemistry of voluminous rhyolitic ignimbrites and related rocks, Batopilas area, western Mexico[J]. Nature, 1980, 286:594-596. doi: 10.1038/286594a0

    [36]

    Clark K F, Damon P E, Shafi quillah M, et al.Sección geológicaestructural a través de la parte sur de la Sierra Madre Occidental, entre Fresnillo y la costa de Nayarit[J]. Asociación Ingenierosde Minas, Metalurgistas y Geólogos de México, Memoria Técnica, 1981, ⅩⅣ:69-99.

    [37]

    Scheubel F R, Clark K F, Porter E W.Geology, tectonic environment, structural controls in the San Martin de Bolaños District, Jalisco[J]. Economic Geology and the Bulletin of the Society of Economic Geologists, 1988, 8:1703-1720.

    [38]

    Gastil R G, Krummenacher D, Minch J.The record of Cenozoic volcanism around the Gulf of California[J]. Geological Society of America Bulletin, 1979, 90:839-857. doi: 10.1130/0016-7606(1979)90<839:TROCVA>2.0.CO;2

    [39]

    Damon P E, Nieto-Obregón J, Delgado-Argote L.Un plegamiento neogénico en Nayarit y Jalisco y evolución geomórfi ca del Río Grande de Santiago:Asociación Ingenieros de Minas[J]. Metalurgistas y Geólogos deMéxico, Memoria Técnica, 1979, ⅩⅡ:156-191. http://www.academia.edu/21271192/Magmatismo_y_tect%C3%B3nica_en_la_Sierra_Madre_Occidental_y_su_relaci%C3%B3n_con_la_evoluci%C3%B3n_de_la_margen_occidental_de_Norteam%C3%A9rica

    [40]

    Scheubel F R, Clark K F, Porter E W.Geology, tectonic environment, structural controls in the San Martin de Bolaños District, Jalisco[J]. Economic Geology and the Bulletin of the Society of Economic Geologists, 1988, 83:1703-1720. doi: 10.2113/gsecongeo.83.8.1703

    [41]

    Vidal-Solano J R, Paz-Moreno F A, Iriondo A, et al.Middle Miocene peralkaline ignimbrites in the Hermosillo region (Sonora, México):Geodynamic implications[J]. Compte Rendue Geosciences, 2005, 337:1421-1430. doi: 10.1016/j.crte.2005.08.007

    [42]

    Camprubí A.Tectonic and metallogneic history of Mexico[J]. Society of Economic Geologists, 2013, 17:201-243. https://www.researchgate.net/profile/Antoni_Camprubi2/publication/257457883_Tectonic_and_metallogenic_history_of_Mexico/links/55f1bb3b08aedecb6902091a.pdf

    [43]

    Centeno-García E, Busby C, Busby M, et al.Evolution of the Guerrero composite terrane along the Mexican margin, from extensional fringing arc to contractional continental arc[J]. Geological Society of America Bulletin, 2011, 123:1776-1797. doi: 10.1130/B30057.1

    [44]

    Ortiz-Hernández L E, Escamilla-Casas J C, Flores-Castro K, et al.Características geológicas y potencial metalogenético de los principales complejos ultramáficos-máficos de México[J]. Boletín de la Sociedad Geológica Mexicana, 2006, 57:161-181. https://www.researchgate.net/publication/285266339_Caracteristicas_geologicas_y_potencial_metalogenetico_de_los_principales_complejos_ultramaficos-maficos_de_Mexico

    [45]

    Valencia-Moreno M, Ochoa-Landín L, Noguez-Alcántara B, et al.Geological and metallogenetic characteristics of the porphyry cop-per deposits of México and their situation in the world context[J]. Geological Society of America Special Paper, 2007, 422:433-458. https://arizona.pure.elsevier.com/en/publications/geological-and-metallogenetic-characteristics-of-the-porphyry-cop

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收稿日期:  2017-03-20
修回日期:  2017-09-19
刊出日期:  2017-12-25

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