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Characteristics and origins of secondary chloritic minerals in the Tertiary basaltic rocks from Taiwan.Ho, You-Hua 26 July 2010 (has links)
Chlorite and corrensite are very common secondary minerals in very low-grade metamorphic or hydrothermally altered mafic rocks. Corrensite, although defined as a 1:1 regularly mixed-layered chlorite/smectite or chlorite/vermiculite, has been considered as a unique mineral phase and might thus be a potential index mineral for evaluating very low metamorphic grade. Many lenticular basaltic rocks, which are intercalated with unmetamorphosed to low-grade metamorphosed Tertiary sedimentary rocks, occur sporadically in the Western foothills and the Central Range in Taiwan. The lenticular basaltic rocks in the Western foothills (diagenetic zone) and the western flank of the Central Range (anchizone to epizone) were subjected to different degrees of hydrothermal alteration and/or metamorphism. However, only few occurrences of corrensite in these basaltic rocks were reported. In the present study, the occurrences and mixed-layering features of corrensite and coexisting chloritic minerals in the basaltic rocks were characterized by utilizing optical microscopy, X-ray diffraction, scanning electron microscopy with energy dispersive spectrometry, and transmission electron microscopy (TEM). The results showed that most of these basaltic rocks contain abundant chloritic minerals occurring as replacements of mafic minerals or interstitial glass, or as vein- or vesicle-filling materials. The chloritic minerals include smectite, corrensite, chlorite, mixed-layered chlorite/smectite, or mixed-layered chlorite/corrensite. The compositions of chlorite, corrensite, and smectite are distinctive in terms of their Si/Al ratios, interlayer cations, and total cation numbers. Corrensite, chlorite, and mixed-layered chlorite/corrensite are common secondary mineral assemblages in the anchizone basaltic rocks, whereas only discrete chlorite occur in the epizone. The basaltic rocks in the diagenetic zone contain different assemblages, such as smectite only, chlorite + smectite + mixed-layered chlorite/smectite + mixed-layered chlorite/corrensite, or chlorite + corrensite + mixed-layered chlorite/corrensite. These different assemblages of chloritic minerals and other secondary mineral assemblages might reflect different stages of hydrothermal alteration. Corrensite was positively identified with TEM lattice-fringe imaging in the diagenetic rocks collected from Nangang, Poneikeng, Shanzijiao, Nanshihjiao, Hsiungkong, Shihsiouping, Fusing, and Northern Shihmen Reservoir areas, and in the studied anchizone rocks from Junghua, Kaopo and Baolai areas. The disappearance of corrensite clearly marks the boundary between the anchizone and epizone basaltic rocks. Corrensite, as a chemically and structurally unique mineral phase, is therefore a potential index mineral in very low-grade metamorphic rocks.
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Paleomagnetizmus a magnetomineralogie hornin Českého masívu a tethydní oblasti / Paleomagnetism and magnetomineralogy of rocks from the Bohemian Massif and Tethyan RealmSchnabl, Petr January 2012 (has links)
Mgr. Petr Schnabl - Dissertation Paleomagnetism and magnetomineralogy of rocks from the Bohemian Massif and Tethyan Realm Abstract The thesis deals with paleomagnetic and rock magnetic properties of Silurian/Devonian and Jurassic/Cretaceous limestones, Paleogene/Neogene basaltic rocks and altered Silurian basalts. The main goal is to determine the history of the Earths' magnetic field from the Silurian to the present. Two lithostratigraphic formations are defined in the Jičín volcanic field on the basis of volcanology, paleomagnetism and radiometric dating. The Trosky Formation (24.6?/18.3 - 15.7 Ma) is composed of several Strombolian-type volcanoes, while the Kozákov Formation (5.2 - 4.6 Ma) is represented by effusive products with a crater vent of a single giant volcano. One Pliocene (4.3-3.3 Ma) and two Pleistocene phases (2.6 -2.1 Ma and 1.8 - 1.1 Ma) of volcanic activity Magnetostratigraphy is a very important tool for the definition of the J/K boundary. The boundary between the Crassicolaria and Calpionella zones is present within geopolarity zone M19n. The boundary between the ammonite zones Jacobi and Durangites also lies close to this point. Paleomagnetic directions of Silurian and Devonian rocks in the Bohemian Massif are very difficult to interpret and have been studied as a challenging problem...
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\"Comportamento de terras raras e outros elementos-traço em soleiras e derrames da região norte-nordeste da província magmática do Paraná\" / Rare earth and other trace element behaviour in sills and flows from north-northeast region of Paraná Magmatic ProvinceRocha Júnior, Eduardo Reis Viana 15 May 2006 (has links)
Foram determinadas as concentrações de terras raras (La, Ce, Nd, Sm, Eu, Tb, Yb e Lu) e outros elementos-traço (Cs, Rb, Ba, U, Th, Ta, Hf, Co e Sc) em 51 amostras representativas de derrames e soleiras das regiões norte e nordeste da Província Magmática do Paraná, que ocorrem no norte do estado de São Paulo e no sul de Minas Gerais. O método utilizado para estas determinações foi a técnica de ativação com nêutrons térmicos e epitérmicos, seguida de espectrometria gama de alta resolução, que forneceu resultados com elevados níveis de precisão e de exatidão (geralmente com valores inferiores a 10%), conforme atestado pelas concentrações determinadas no material geológico de referência JB-1. Os dados obtidos foram analisados conjuntamente com determinações de elementos maiores, menores e dos traços Sr, Y, Zr, Nb, Cr e Ni, realizadas por fluorescência de raios ? X. As rochas investigadas são quimicamente representadas por basaltos toleíticos, andesi-basaltos toleíticos e lati-basaltos, enquanto as mais evoluídas (MgO < 3%), que ocorrem de modo muito subordinado, são representadas por latitos e lati-andesitos, além de um riodacito. As rochas básicas (SiO2 < 55% e/ou MgO > 3%) são caracterizadas por apresentarem conteúdos de TiO2 maiores que 3%, sendo que grande maioria possui fortes semelhanças com os magmas-tipo Pitanga, embora tenham sido encontrados alguns derrames, localizados no norte do estado de São Paulo, geoquimicamente semelhantes aos magmas-tipo Urubici (típicos do sul da província). Rochas básicas com concentrações de TiO2 entre 2% e 3% foram também raramente encontradas, as quais representam equivalentes intrusivos de derrames Paranapanema. As rochas mais evoluídas só foram encontradas em soleiras e possuem características geoquímicas que indicam diferenciação a partir de magmas do tipo Pitanga. O comportamento de elementos maiores, menores e traços nas rochas intrusivas e extrusivas do tipo Pitanga, incluindo as mais diferenciadas, é compatível com um processo de evolução por cristalização fracionada envolvendo plagioclásios, clinopiroxênios e titano-magnetitas. A comparação entre derrames e soleiras do tipo Pitanga indica a atuação significativa de processos de diferenciação in situ nas rochas intrusivas, que causaram uma maior variabilidade composicional (soleiras: MgO entre 2,3% e 6,4%; derrames: MgO entre 3,2% e 5,5%). As rochas mais diferenciadas são também caracterizadas por anomalias positivas de európio, que sugerem o acúmulo de plagioclásio devido a esse processo de fracionamento. Os dados obtidos também reforçam que não houve participação significativa de componentes astenosféricos do tipo N-MORB, E-MORB e OIB na gênese das rochas básicas investigadas, as quais possuem grande similaridade geoquímica com os basaltos da Cadeia Rio Grande (sítio 516F) e Cadeia Walvis (sítio 525A), especialmente com os desta última, indicando o envolvimento do componente mantélico EMI. / It is presented the determination of rare earth (La, Ce, Nd, Sm, Eu, Tb, Yb and Lu) and other trace (Cs, Rb, Ba, U, Th, Ta, Hf, Co and Sc) element concentrations in 51 representative samples of flows and sills from northern and northeastern Paraná Magmatic Province, particularly those located at north of São Paulo State and south of Minas Gerais. The employed analytical method to those determinations was thermal and epithermal neutron activation analysis, followed by high resolution gamma ray spectrometry, which provided high precision and accuracy results (in general better than 10%), as verified by determinations in the international geological reference material JB-1. The obtained results were integrated with major, minor and trace (Sr, Y, Zr, Nb, Cr and Ni) elements determined by X-ray fluorescence. The investigated rocks are mainly represented by tholeiitic basalts, tholeiitic andesi-basalts and lati-basalts, with subordinate relatively evolved (MgO < 3wt%) lithotypes, which are represented by latites and lati-andesites, besides one rhyodacite. The basic rocks (SiO2 < 55% and/or MgO > 3%) are characterized by presenting TiO2 contents higher than 3wt%, very similar to Pitanga magma-type, although some flows, located at northern São Paulo State, geochemically similar to Urubici magma-type (typical of southern Paraná) were also found. Basic rocks having TiO2 contents between 2 and 3 wt% were rarely encountered and represent intrusive equivalents of Paranapanema flows. The more evolved rocks were just found in sills and have geochemical characteristics that indicate differentiation from Pitanga magma-types. Major, minor and trace element behaviour of intrusive and extrusive rocks of Pitanga type, including those differentiated ones, is compatible with evolution by fractional crystallization of plagioclases, clinopyroxenes and titanium magnetites. The comparison between flows and sills of Pitanga type indicates the significant role of in situ differentiation in the genesis intrusive rocks, causing its larger compositional variability (sills: MgO between 2.3 and 6.4wt%; flows: MgO between 3.2 and 5.5wt%). The most evolved rocks are also characterized by positive europium anomalies, which suggest plagioclase accumulation caused by such fractionation process. The obtained data also corroborate the lack of significant participation of N-MORB, E-MORB and OIB asthenospheric mantle components in the genesis of basic rocks, which present very close geochemical similarity with Rio Grande Rise (site 516F) and Walvis Ridge (site 525A) basalts, particularly with the last ones, indicating the involvement of EMI mantle component.
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\"Comportamento de terras raras e outros elementos-traço em soleiras e derrames da região norte-nordeste da província magmática do Paraná\" / Rare earth and other trace element behaviour in sills and flows from north-northeast region of Paraná Magmatic ProvinceEduardo Reis Viana Rocha Júnior 15 May 2006 (has links)
Foram determinadas as concentrações de terras raras (La, Ce, Nd, Sm, Eu, Tb, Yb e Lu) e outros elementos-traço (Cs, Rb, Ba, U, Th, Ta, Hf, Co e Sc) em 51 amostras representativas de derrames e soleiras das regiões norte e nordeste da Província Magmática do Paraná, que ocorrem no norte do estado de São Paulo e no sul de Minas Gerais. O método utilizado para estas determinações foi a técnica de ativação com nêutrons térmicos e epitérmicos, seguida de espectrometria gama de alta resolução, que forneceu resultados com elevados níveis de precisão e de exatidão (geralmente com valores inferiores a 10%), conforme atestado pelas concentrações determinadas no material geológico de referência JB-1. Os dados obtidos foram analisados conjuntamente com determinações de elementos maiores, menores e dos traços Sr, Y, Zr, Nb, Cr e Ni, realizadas por fluorescência de raios ? X. As rochas investigadas são quimicamente representadas por basaltos toleíticos, andesi-basaltos toleíticos e lati-basaltos, enquanto as mais evoluídas (MgO < 3%), que ocorrem de modo muito subordinado, são representadas por latitos e lati-andesitos, além de um riodacito. As rochas básicas (SiO2 < 55% e/ou MgO > 3%) são caracterizadas por apresentarem conteúdos de TiO2 maiores que 3%, sendo que grande maioria possui fortes semelhanças com os magmas-tipo Pitanga, embora tenham sido encontrados alguns derrames, localizados no norte do estado de São Paulo, geoquimicamente semelhantes aos magmas-tipo Urubici (típicos do sul da província). Rochas básicas com concentrações de TiO2 entre 2% e 3% foram também raramente encontradas, as quais representam equivalentes intrusivos de derrames Paranapanema. As rochas mais evoluídas só foram encontradas em soleiras e possuem características geoquímicas que indicam diferenciação a partir de magmas do tipo Pitanga. O comportamento de elementos maiores, menores e traços nas rochas intrusivas e extrusivas do tipo Pitanga, incluindo as mais diferenciadas, é compatível com um processo de evolução por cristalização fracionada envolvendo plagioclásios, clinopiroxênios e titano-magnetitas. A comparação entre derrames e soleiras do tipo Pitanga indica a atuação significativa de processos de diferenciação in situ nas rochas intrusivas, que causaram uma maior variabilidade composicional (soleiras: MgO entre 2,3% e 6,4%; derrames: MgO entre 3,2% e 5,5%). As rochas mais diferenciadas são também caracterizadas por anomalias positivas de európio, que sugerem o acúmulo de plagioclásio devido a esse processo de fracionamento. Os dados obtidos também reforçam que não houve participação significativa de componentes astenosféricos do tipo N-MORB, E-MORB e OIB na gênese das rochas básicas investigadas, as quais possuem grande similaridade geoquímica com os basaltos da Cadeia Rio Grande (sítio 516F) e Cadeia Walvis (sítio 525A), especialmente com os desta última, indicando o envolvimento do componente mantélico EMI. / It is presented the determination of rare earth (La, Ce, Nd, Sm, Eu, Tb, Yb and Lu) and other trace (Cs, Rb, Ba, U, Th, Ta, Hf, Co and Sc) element concentrations in 51 representative samples of flows and sills from northern and northeastern Paraná Magmatic Province, particularly those located at north of São Paulo State and south of Minas Gerais. The employed analytical method to those determinations was thermal and epithermal neutron activation analysis, followed by high resolution gamma ray spectrometry, which provided high precision and accuracy results (in general better than 10%), as verified by determinations in the international geological reference material JB-1. The obtained results were integrated with major, minor and trace (Sr, Y, Zr, Nb, Cr and Ni) elements determined by X-ray fluorescence. The investigated rocks are mainly represented by tholeiitic basalts, tholeiitic andesi-basalts and lati-basalts, with subordinate relatively evolved (MgO < 3wt%) lithotypes, which are represented by latites and lati-andesites, besides one rhyodacite. The basic rocks (SiO2 < 55% and/or MgO > 3%) are characterized by presenting TiO2 contents higher than 3wt%, very similar to Pitanga magma-type, although some flows, located at northern São Paulo State, geochemically similar to Urubici magma-type (typical of southern Paraná) were also found. Basic rocks having TiO2 contents between 2 and 3 wt% were rarely encountered and represent intrusive equivalents of Paranapanema flows. The more evolved rocks were just found in sills and have geochemical characteristics that indicate differentiation from Pitanga magma-types. Major, minor and trace element behaviour of intrusive and extrusive rocks of Pitanga type, including those differentiated ones, is compatible with evolution by fractional crystallization of plagioclases, clinopyroxenes and titanium magnetites. The comparison between flows and sills of Pitanga type indicates the significant role of in situ differentiation in the genesis intrusive rocks, causing its larger compositional variability (sills: MgO between 2.3 and 6.4wt%; flows: MgO between 3.2 and 5.5wt%). The most evolved rocks are also characterized by positive europium anomalies, which suggest plagioclase accumulation caused by such fractionation process. The obtained data also corroborate the lack of significant participation of N-MORB, E-MORB and OIB asthenospheric mantle components in the genesis of basic rocks, which present very close geochemical similarity with Rio Grande Rise (site 516F) and Walvis Ridge (site 525A) basalts, particularly with the last ones, indicating the involvement of EMI mantle component.
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