Towards an integrated tectonic model for the interaction between the Bambuí basin and the adjoining orogenic belts: Evidences from the detrital zircon record of syn-orogenic units
Tài liệu tham khảo
Allen, 1986, Foreland basins: an introduction, vol. 8, 3
Alkmim, 2017, The paleoproterozoic mineiro belt and the quadrilátero ferrífero, 71
Alkmim, 2006, Kinematic evolution of the Araçuaí–West Congo orogen in Brazil and Africa: nutcracker tectonics during the neoproterozoic assembly of Gondwana, Precambrian Res., 149, 43, 10.1016/j.precamres.2006.06.007
Alkmim, 2017, The Araçuaí belt, 255
Babinski, 2012, Neoproterozoic glacial deposits from the Araçuaí orogen, Brazil: age, provenance and correlations with the São Francisco craton and West Congo belt, Gondwana Res., 21, 451, 10.1016/j.gr.2011.04.008
Babinski, 2007, Direct dating of the Sete Lagoas cap carbonate (Bambuí Group, Brazil) and implications for the Neoproterozoic glacial events, Terra Nova, 19, 401, 10.1111/j.1365-3121.2007.00764.x
Barbosa, 2017, The paleoproterozoic eastern Bahia orogenic domain, 57
Black, 2003, TEMORA 1: a new zircon standard for Phanerozoic U–Pb geochronology, Chem. Geol., 200, 155, 10.1016/S0009-2541(03)00165-7
Caetano-Filho, 2019, Sequence stratigraphy and chemostratigraphy of an Ediacaran-Cambrian foreland-related carbonate ramp (Bambuí Group, Brazil), Precambrian Res., 331, 105365, 10.1016/j.precamres.2019.105365
Castro, 2000, The sedimentology, stratigraphy and tectonic context of the São Francisco Supergroup at the southern boundary of the São Francisco craton, Brazil, Rev. Bras. Geociencias, 30, 345
Catuneanu, 2004, Retroarc foreland systems – evolution through time, J. Afr. Earth Sci., 38, 225, 10.1016/j.jafrearsci.2004.01.004
Cawood, 2012, Detrital zircon and tectonic record, Geology, 40, 875, 10.1130/G32945.1
Caxito, 2012, Marinoan glaciation in east central Brazil, Precambrian Res., 200–203, 38, 10.1016/j.precamres.2012.01.005
Chiavegatto, 1992, 196
Chievegatto, 1997, Conglomerados oligomíticos da Formação Três Marias na Serra do Gorutuba, norte de Minas Gerais, Anais do 9° Simpósio de Geologia de Minas Gerais, 14, 83
Chiavegatto, 2003, Estratigrafia do Grupo Bambuí nas regiões do norte de Minas Gerais: Uma nova unidade estratigráfica em um contexto de inversão de bacia, vol. 12, 24
Coelho, 2008, Estilos estruturais e evolução tectônica da porção mineira da bacia proterozoica do São Francisco, Rev. Bras. Geociencias, 38, 149, 10.25249/0375-7536.2008382S149165
Cordani, 2003, Tearing-up Rodinia: the neoproterozoic paleogeography of South American cratonic fragments, Terra. Nova, 15, 343, 10.1046/j.1365-3121.2003.00506.x
Costa, 2011, 134
Costa, 2018, The Ediacaran Salinas turbidites, Araçuaí Orogen, MG: tectonics and sedimentation interplay in a syn-orogenic basin, Braz. J. Genet., 48, 783, 10.1590/2317-4889201820180020
Costa, 1961, Roteiro para a excursão Belo Horizonte - brasília, vol. 15, 25
Covey, 1986, The evolution of foreland basins to steady state: evidence from the Western Taiwan foreland basin, vol. 8, 77
Cruz, 1992, Microfósseis do grupo Bambuí na região de Arcos, Minas Gerais, An Acad. Bras Ciências, 64, 420
DeCelles, 1996, Foreland basin systems, Basin Res., 8, 105, 10.1046/j.1365-2117.1996.01491.x
Deluca, 2019, Provenance of the ediacaran Salinas Formation (Araçuaí orogen, Brazil): clues from lithochemical data and zircon U-Pb (SHRIMP) ages of volcanic clasts, Braz. J. Genet., 49
Dardene, 1978, Síntese sobre a estratigrafia do Grupo Bambuí no Brasil Central, SBG, Congresso Brasileiro de Geologia, 30, 597
Dardene, 1981, Os grupos Paranoá e Bambuí na Faixa Dobrada Brasília, vol. 1, 140
Dias, 2011, O Grupo Ibiá (Faixa Brasília Meridional): evidências isotópicas Sm-Nd e U-Pb de bacia colisional tipo flysch, Geonomos, 19, 90
Evans, 2007, Age of metavolcanic rocks at thenorthern margin of the Namaqua–Natal Metamorphic Province in the KarasMountains, Namibia, defined by SHRIMP U–Pb dating of zircons, S. Afr. J. Geol., 110, 47, 10.2113/gssajg.110.1.47
Fairchild, 1996, Recent discoveriesof Proterozoic microfossils in south-central Brazil, Precambrian Res., 80, 125, 10.1016/S0301-9268(96)00009-5
Falci, 2018, Provenance shift from a continental margin to a syn-orogenic basin in the Neoproterozoic Araxá nappe system, southern Brasília belt, Brazil, Precambrian Res., 306, 209, 10.1016/j.precamres.2018.01.004
Fernandez-Alonso, 2012, The Mesoproterozoic Karagwe-Ankole Belt (formerly the NE Kibara Belt): the result of prolonged extensional intracratonic basin development punctuated by two short-lived far-field compressional events, Precambrian Res., 216– 219, 63, 10.1016/j.precamres.2012.06.007
Fontes, 1978
Frimmel, 2006, Provenance andchemostratigraphy of the neoproterozoic west congolian group in the DemocraticRepublic of Congo, J. Afr. Earth Sci., 46, 221, 10.1016/j.jafrearsci.2006.04.010
Germs, 1995, The Neoproterozoic of southwestern Africa, with emphasis on platform stratigraphy and paleontology, Precambrian Res., 73, 137, 10.1016/0301-9268(94)00075-3
Gomes, 1988, Contribuição à petrologia e à diagênese dos arenitos daFormação Três Marias, Bacia do São Francisco, MG, vol. 2
Gonçalves, 2016, Granites of the intracontinental termination of a magmatic arc: an example from the Ediacaran Araçuaí orogen, southeastern Brazil, Gondwana Res., 36, 439, 10.1016/j.gr.2015.07.015
Gradim, 2014, The hot back-arc zone of theAraçuaí orogen, Eastern Brazil:from sedimentation to granite generation, Braz. J. Genet., 44, 155, 10.5327/Z2317-4889201400010012
Granot, 2015, The cretaceous opening of the south Atlantic ocean, Earth Planet Sci. Lett., 414, 156, 10.1016/j.epsl.2015.01.015
Guacaneme, 2015, 131
Guadagnin, 2015, Detrital zircon record of the paleoproterozoic to mesoproterozoic cratonic basins in the São Francisco craton, J. S. Am. Earth Sci., 60, 104, 10.1016/j.jsames.2015.02.007
Hanson, 1988, Reconnaissance geochronology, tectonothermal evolution, and regional significance of the middle Proterozoic Choma-Kalomo Block, Southern Zambia, Precambrian Res., 42, 39, 10.1016/0301-9268(88)90009-5
Heilbron, 2017, Sao Francisco craton: tectonic genealogy of a miniature continent, 326, 10.1007/978-3-319-01715-0_17
Houseman, 2007, Intra-orogenic extension driven by gravitational instability:Carpathian-Pannonian orogeny, Geology, 35, 1135, 10.1130/G23993A.1
Iglesias, 2008, Estratigrafia do Grupo Bambuí na serra do Jaíba, norte de Minas Gerais, Geonomos, 16, 21
Jackson, 2004, The application of laser ablation-inductively coupled plasma-mass spectrometry to in situ U–Pb zircon geochronology, Chem. Geol., 211, 47, 10.1016/j.chemgeo.2004.06.017
Kuchenbecker, 2011, 91
Kuchenbecker, 2014, 175
Kuchenbecker, 2013, Proveniência e análise sedimentar da porção basal do Grupo Bambuí em Arcos (MG), Geologia USP, 13, 4
Kuchenbecker, 2015, Detrital zircon age patterns and provenance assessment for pre-glacial to post-glacial successions of the Neoproterozoic Macaúbas Group, Araçuaí orogen, Brazil, Precambrian Res., 266, 12, 10.1016/j.precamres.2015.04.016
Kuchenbecker, 2015, Age constraints for deposition and sedimentary provenance of Espinhaço supergroup and Bambuí group in eastern São Francisco craton, Geonomos, 23, 14
Kuchenbecker, 2016, Chemostratigraphy of the lower Bambuí group, southwestern São Francisco craton, Brazil: insights on Gondwana paleoenvironments, Braz. J. Genet., 46, 145, 10.1590/2317-488920160030285
Kuchenbecker, 2016, A Formação Gorutuba: sedimentação litorâneaa continental na margem leste da Bacia Bambuí (MG), Geologia USP16, 67
Lima, 2002, A Formação Salinas na área-tipo,NE de Minas Gerais: Uma proposta de revisão da estratigrafiada Faixa Araçuaí com base em evidências sedimentares,metamórficas e idades U-Pb SHRIMP, Rev. Bras. Geociencias, 32, 491, 10.25249/0375-7536.2002324491500
Ludwig, 2001, 55
Magalhães, 2019
Martins, 2007, Análise estratigráfica das sequências neoproterozoicas da Bacia do São Francisco, Rev. Bras. Geociencias, 37, 156, 10.25249/0375-7536.200737S4156167
Martins-Neto, 2009, Sequence stratigraphic framework of Proterozoic successions in eastern Brazil, Mar. Petrol. Geol., 26, 163, 10.1016/j.marpetgeo.2007.10.001
Martins-Neto, 2001, Estratigrafia e evolução tectônica das bacias neoproterozoicas do paleocontinente São Francisco e suas margens: registro da quebra de Rodínia e colagem de Gondwana, 31
Martins-Neto, 2001, Tectono-sedimentary evolution of sedimentary basins from Late Paleoproterozoic to Late Neoproterozoic in the São Francisco craton and Araçuaí fold belt, eastern Brazil, Sediment. Geol., 141–142, 343, 10.1016/S0037-0738(01)00082-3
Moecher, 2006, Differential zircon fertility of sourceterranes and natural bias in the detrital zircon record: implications for sedimentaryprovenance analysis, Earth Planet Sci. Lett., 247, 252, 10.1016/j.epsl.2006.04.035
Moreira, 2020, A Cambrian age for the upper Bambuí Group, Brazil, supported by the first U-Pb dating of volcaniclastic bed, J. S. Am. Earth Sci., 99, 102503, 10.1016/j.jsames.2020.102503
Nobre-Lopes, 2000, Microfitólitos associados a construçõesestromatolíticas do grupo Bambuí, proterozoico superior, região de Arcos - mg, Rev. Bras. Geociencias, 30, 589, 10.25249/0375-7536.2000304589592
Ortu, 1990
Paula-Santos, 2018, Sedimentary provenance of the São Francisco basin in its southern sector, SE Brazil. Brazilian, J. Geol.
Paula-Santos, 2017, Tracking connection and restriction of West Gondwana São Francisco basin through isotope chemostratigraphy, Gondwana Res., 42, 280, 10.1016/j.gr.2016.10.012
Paula-Santos, 2015, New evidence of an Ediacaran age for the Bambuí Group in southern São Francisco craton (eastern Brazil) from zircon U–Pb data and isotope chemostratigraphy, Gondwana Res., 28, 702, 10.1016/j.gr.2014.07.012
Paula-Santos, 2012, Abordagem quimioestratigráfica (C,O) e geocronológica da Formação Sete Lagoas na região de Vespasiano, MG: uma unidade cambriana?
Paula-Santos, 2020, Rare earth elements in the terminal Ediacaran Bambuí Group carbonate rocks (Brazil): evidence for high seawater alkalinity during rise of early animals, Precambrian Res., 336, 105506, 10.1016/j.precamres.2019.105506
Peixoto, 2015, A suture–related accretionary wedge formed in the Neoproterozoic Araçuaí orogen (SE Brazil) duringWestern Gondwanaland assembly, Gondwana Res., 27, 878, 10.1016/j.gr.2013.11.010
Pimentel, 2012, Idades dos grupos Araxá e Bambuí: implicações para a evolução da Faixa Brasília
Pedrosa-Soares, 2011, How many rifting events preceded the development of the Araçuaí-West Congo orogen?, Geonomos, 19, 244
Pedrosa-Soares, 2001, The Araçuaí–West Congo orogen in Brazil: an overview of a confined orogen formed during Gondwanland assembly, Precambrian Res., 110, 307, 10.1016/S0301-9268(01)00174-7
Pedrosa-Soares, 2007, Orógeno Araçuaí: síntese do conhecimento 30 anos após Almeida 1977, Geonomos, 15, 1
Pedrosa-Soares, 2008, Similarities and differences between the Brazilian and african counterparts of the neoproterozoic Araçuaí-West Congo orogen, vol. 294, 153
Pedrosa-Soares, 2011, The Neoproterozoic Macaúbas Group (Araçuaí orogen, SE Brazil) with emphasis on the diamictite formations, vol. 36, 523
Pettersson, 2007, Ion-probe dating of1.2 Ga collision and crustal architecture in the Namaqua-Natal Province of southernAfrica, Precambrian Res., 158, 79, 10.1016/j.precamres.2007.04.006
Reis, 2011, 156p
Reis, 2015, Anatomy of a basin-controlled foreland fold-thrust belt curve: the Três Marias salient, São Francisco basin, Brazil, Mar. Petrol. Geol., 66, 711, 10.1016/j.marpetgeo.2015.07.013
Reis, 2016, Mixed carbonate-siliciclastic sedimentation in forebulge grabens: an example from the Ediacaran Bambuí Group, São Francisco basin, Brazil, Sediment. Geol., 339, 83, 10.1016/j.sedgeo.2016.04.004
Reis, 2016, The São Francisco basin, 117
Reis, 2017, Ediacaran forebulge grabens of the southern São Francisco basin, Se Brazil: craton interior dynamics during West Gondwana assembly, Precambrian Res., 302, 150, 10.1016/j.precamres.2017.09.023
Rodrigues, 2008
Rossi, 2020, Stratigraphic, isotopic, and geochronological record of a superposed proforeland basin in the eastern São Francisco craton during west Gondwana amalgamation, J. S. Am. Earth Sci., 97, 102406, 10.1016/j.jsames.2019.102406
Ricci Lucchi, 1984, Influence of transport processes and basin geometry on sand composition, vol. 148, 19
Ring, 1999, Deformed A-type granites in northern Malawi, east-central Africa: pre- or syntectonic, Journal Geological Society of London, 156, 695, 10.1144/gsjgs.156.4.0695
Robert, 2009, Basins in a context of plate collision, vol. 3, 299
Rodrigues, 2010, Age, provenance and tectonic setting of the Canastra and Ibiá Groups (Brasília Belt, Brazil): Implications for the age of a Neoproterozoic glacial event in central Brazil, J. South Am. Earth Sci., 29, 512, 10.1016/j.jsames.2009.08.008
Rosa, 2007, Neoproterozoic anorogenic magmatism in the Southern Bahia Alkaline Province of NE Brazil: U–Pb and Pb–Pb ages of the blue sodalite syenites, Lithos, 97, 88, 10.1016/j.lithos.2006.12.011
Santos, 2009, A FormaçãoSalinas, Orógeno Araçuaí, MG: história deformacional esignificado tectônico, Rev. Bras. Geociencias, 39, 81, 10.25249/0375-7536.200939181100
Seer, 2013, Within plate, arc, and collisionalNeoproterozoic granitic magmatism inthe Araxá Group, Southern Brasília belt,Minas Gerais, Brazil, Braz. J. Genet., 43, 333, 10.5327/Z2317-48892013000200010
Seer, 1989, Roteiro Geológico para a região de Lagoa Formosa-Chumbo-Carmo do Paranaíba, MG, SBG-Núcleo Minas Gerais, 58
Sinclair, 1997, Flysch to molasse transition in peripheral foreland basins:The role of the passive margin versus slab breakoff, Geology, 25, 1123, 10.1130/0091-7613(1997)025<1123:FTMTIP>2.3.CO;2
Suriano, 2014, Sedimentation model of piggyback basins: cenozoic examples of san juan precordillera, Argentina, Geological Society of London Special Publications, 399, 221, 10.1144/SP399.17
Tack, 1994, Kibaran A-type granitoids and mafic rocks generated by two mantle sources in a late orogenic setting (Burundi), Precambrian Res., 68, 323, 10.1016/0301-9268(94)90036-1
Tack, 2010, The 1375 Ma “Kibaran Event” in Central Africa: prominent emplacement of bimodal magmatism under extensional regime, Precambrian Res., 180, 63, 10.1016/j.precamres.2010.02.022
Tedeschi, 2016, The Ediacaran Rio Doce magmatic arc revisited (Araçuaí-Ribeira orogenic system, SE Brazil), J. S. Am. Earth Sci., 68, 167, 10.1016/j.jsames.2015.11.011
Teixeira, 2017, Nature and evolution of the archean crust of the São Francisco craton, 29
Uhlein, 2011, A Formação Lagoa Formosa, Grupo Bambuí (MG): sistema deposicional de leque submarino em bacia de ante-país, Geonomos, 19, 163
Uhlein, 2010, Ocorrência de icnofósseis ediacaranos (Skolithos?) na Formação Salinas, Grupo Macaúbas, Minas Gerais, Brasil
Uhlein, 2012, Estratigrafia e sedimentologia da Formação Carrancas, Grupo Bambuí, nas regiões de Belo Horizonte e Pitangui, MG, Geonomos, 20, 79
Uhlein, 2016, The Carrancas Formation, Bambuí Group: a record of pre-Marinoan sedimentation on the southern São Francisco craton, Brazil, J. S. Am. Earth Sci., 71, 1, 10.1016/j.jsames.2016.06.009
Uhlein, 2017, Early to late Ediacaran conglomeratic wedges from a complete foreland basin cycle in the southwest São Francisco Craton, Bambuí Group, Brazil, Precambrian Res., 299, 101, 10.1016/j.precamres.2017.07.020
Valeriano, 2017, The southern Brasília belt, 189
Valeriano, 2008, Tectonic evolution of the Brasília belt, central Brazil, and early assembly of Gondwana, vol. 294, 197
Warren, 2014, The puzzle assembled: Ediacaran guide fossil Cloudina reveals an oldproto-Gondwana seaway, Geology, 42, 391, 10.1130/G35304.1
Willett, 1999, Orogeny and orography: the effects of erosion on the structure of mountain belts, J. Geophys. Res., 104, 957
Whittington, 2001, Collapse and melting in a confined orogenic belt: preliminary results from the Neoproterozoic Araçuaí belt of eastern Brazil, 1181
