The Poopó polymetallic epithermal deposit, Bolivia: mineralogy, genetic constraints, and distribution of critical elements

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dc.contributor.authorTorres, Belénca
dc.contributor.authorMelgarejo, Joan Carlesca
dc.contributor.authorTorró, Lisardca
dc.contributor.authorCamprubí, Antonica
dc.contributor.authorCastillo-Oliver, Montgarrica
dc.contributor.authorArtiaga, Davidca
dc.contributor.authorCampeny, Marcca
dc.contributor.authorTauler, Esperançaca
dc.contributor.authorJiménez-Franco, Abigailca
dc.contributor.authorAlfonso, Puraca
dc.contributor.authorArce-Burgoaca
dc.contributor.otherConsorci del Museu de Ciències Naturals de Barcelonaca
dc.coverage.spatialBolíviaca
dc.coverage.spatialBolíviaen
dc.coverage.spatialBolíviaes
dc.date.accessioned2020-12-16T15:02:44Z-
dc.date.available2020-12-16T15:02:44Z-
dc.date.issued2019-07-31-
dc.identifierhttp://hdl.handle.net/2072/362205-
dc.identifier.citationMinerals 2019, 9(8), 472ca
dc.identifier.urihttp://hdl.handle.net/11703/120661-
dc.description.abstractThe tin-rich polymetallic epithermal deposit of Poopó, of plausible Late Miocene age, is part of the Bolivian Tin Belt. As an epithermal low sulfidation mineralisation, it represents a typological end-member within the “family” of Bolivian tin deposits. The emplacement of the mineralisation was controlled by the regional fault zone that constitutes the geological border between the Bolivian Altiplano and the Eastern Andes Cordillera. In addition to Sn and Ag, its economic interest resides in its potential in critical elements as In, Ga and Ge. This paper provides the first systematic characterisation of the complex mineralogy and mineral chemistry of the Poopó deposit with the twofold aim of identifying the mineral carriers of critical elements and endeavouring to ascertain plausible metallogenic processes for the formation of this deposit, by means of a multi-methodological approach. The poor development of hydrothermal alteration assemblage, the abundance of sulphosalts and the replacement of löllingite and pyrrhotite by arsenopyrite and pyrite, respectively, indicate that this deposit is ascribed to the low-sulphidation subtype of epithermal deposits, with excursions into higher states of sulphidation. Additionally, the occurrence of pyrophyllite and topaz has been interpreted as the result of discrete pulses of high-sulphidation magmatic fluids. The δ34SVCDT range in sulphides (−5.9 to −2.8‰) is compatible either with: (i) hybrid sulphur sources (i.e., magmatic and sedimentary or metasedimentary); or (ii) a sole magmatic source involving magmas that derived from partial melting of sedimentary rocks or underwent crustal assimilation. In their overall contents in critical elements (In, Ga and Ge), the key minerals in the Poopó deposit, based on their abundance in the deposit and compositions, are rhodostannite, franckeite, cassiterite, stannite and, less importantly, teallite, sphalerite and jamesonite. Keywords: critical elements; indium; gallium; germanium; tin; silver; low sulphidation; epithermal; Bolivian Tin Beltca
dc.description.abstractThe tin-rich polymetallic epithermal deposit of Poopó, of plausible Late Miocene age, is part of the Bolivian Tin Belt. As an epithermal low sulfidation mineralisation, it represents a typological end-member within the “family” of Bolivian tin deposits. The emplacement of the mineralisation was controlled by the regional fault zone that constitutes the geological border between the Bolivian Altiplano and the Eastern Andes Cordillera. In addition to Sn and Ag, its economic interest resides in its potential in critical elements as In, Ga and Ge. This paper provides the first systematic characterisation of the complex mineralogy and mineral chemistry of the Poopó deposit with the twofold aim of identifying the mineral carriers of critical elements and endeavouring to ascertain plausible metallogenic processes for the formation of this deposit, by means of a multi-methodological approach. The poor development of hydrothermal alteration assemblage, the abundance of sulphosalts and the replacement of löllingite and pyrrhotite by arsenopyrite and pyrite, respectively, indicate that this deposit is ascribed to the low-sulphidation subtype of epithermal deposits, with excursions into higher states of sulphidation. Additionally, the occurrence of pyrophyllite and topaz has been interpreted as the result of discrete pulses of high-sulphidation magmatic fluids. The δ34SVCDT range in sulphides (−5.9 to −2.8‰) is compatible either with: (i) hybrid sulphur sources (i.e., magmatic and sedimentary or metasedimentary); or (ii) a sole magmatic source involving magmas that derived from partial melting of sedimentary rocks or underwent crustal assimilation. In their overall contents in critical elements (In, Ga and Ge), the key minerals in the Poopó deposit, based on their abundance in the deposit and compositions, are rhodostannite, franckeite, cassiterite, stannite and, less importantly, teallite, sphalerite and jamesonite. Keywords: critical elements; indium; gallium; germanium; tin; silver; low sulphidation; epithermal; Bolivian Tin Belten
dc.description.abstractThe tin-rich polymetallic epithermal deposit of Poopó, of plausible Late Miocene age, is part of the Bolivian Tin Belt. As an epithermal low sulfidation mineralisation, it represents a typological end-member within the “family” of Bolivian tin deposits. The emplacement of the mineralisation was controlled by the regional fault zone that constitutes the geological border between the Bolivian Altiplano and the Eastern Andes Cordillera. In addition to Sn and Ag, its economic interest resides in its potential in critical elements as In, Ga and Ge. This paper provides the first systematic characterisation of the complex mineralogy and mineral chemistry of the Poopó deposit with the twofold aim of identifying the mineral carriers of critical elements and endeavouring to ascertain plausible metallogenic processes for the formation of this deposit, by means of a multi-methodological approach. The poor development of hydrothermal alteration assemblage, the abundance of sulphosalts and the replacement of löllingite and pyrrhotite by arsenopyrite and pyrite, respectively, indicate that this deposit is ascribed to the low-sulphidation subtype of epithermal deposits, with excursions into higher states of sulphidation. Additionally, the occurrence of pyrophyllite and topaz has been interpreted as the result of discrete pulses of high-sulphidation magmatic fluids. The δ34SVCDT range in sulphides (−5.9 to −2.8‰) is compatible either with: (i) hybrid sulphur sources (i.e., magmatic and sedimentary or metasedimentary); or (ii) a sole magmatic source involving magmas that derived from partial melting of sedimentary rocks or underwent crustal assimilation. In their overall contents in critical elements (In, Ga and Ge), the key minerals in the Poopó deposit, based on their abundance in the deposit and compositions, are rhodostannite, franckeite, cassiterite, stannite and, less importantly, teallite, sphalerite and jamesonite. Keywords: critical elements; indium; gallium; germanium; tin; silver; low sulphidation; epithermal; Bolivian Tin Beltes
dc.format.extent25 p.ca
dc.languageengca
dc.rightsCC-BYca
dc.subjectIndi (Metall)ca
dc.subjectGal·lica
dc.subjectGermanica
dc.subjectPrimeres matèriesca
dc.subjectJaciments mineralsca
dc.subjectEstanyca
dc.subjectIndiumen
dc.subjectGaliumen
dc.subjectGermaniumen
dc.subjectRaw materialsen
dc.subjectMineral depositsen
dc.subjectTinen
dc.subjectIndio (Metal)es
dc.subjectGalioes
dc.subjectGermanioes
dc.subjectMaterias primases
dc.subjectYacimientos mineraleses
dc.subjectEstañoes
dc.titleThe Poopó polymetallic epithermal deposit, Bolivia: mineralogy, genetic constraints, and distribution of critical elementsca
dc.typetextca
dc.provenanceRecercat (Dipòsit de la Recerca de Catalunya)ca
dc.subject.categoryCiència i tecnologiaca
dc.subject.formaarticlesca
dc.identifier.entitatconsorcisca
metadadalocal.dependencia8008920-
dc.type.driverinfo:eu-repo/semantics/articleca
dc.type.driverinfo:eu-repo/semantics/publishedVersionca
Appears in Collections:Mineralogia / Articles

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