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1.
The Triassic of the Levantine region consists of four sedimentary cycles: I. Scythian — Lower Anisian; II. Early Upper Anisian; III. Late Upper Anisian — Carnian; IV. Late Carnian — Norian.Regional biofacial affinities point to the existance of a western Tethyan Werfen facies (cycle I), a sephardic biofacies (cycles II and III) and a rather alpinotype platform facies (cycle IV). A correlation across the Jordan Rift Valley is suggested, primarily based on bio- and lithostratigraphic evidence of the Permo-Triassic rocks. The stratigraphic implications of this correlation support the existance of a left lateral strike slip along the Jordan Rift Valley.
Zusammenfassung Die Trias im Levant ist in vier Sedimentationszyklen gegliedert: I. Skythian — Unteres Anisian; II. Oberes Anisian; III. Oberes Anisian — Karnian; IV. Oberes Karman — Norian.Die regionalen Faziesbeziehungen deuten auf das Vorhandensein einer Westtethyalen Werfener Fazies (Zyklus I), einer West- und Südtethyalen Sephardischen Fazies (Zyklen II und III) und einer eher alpinotypischen Plattformfazies (Zyklus IV).Eine Korrelation der permisehen und untertriadischen Gesteine auf beiden Seiten des Jordantales wird vorgeschlagen. Die stratigraphischen Folgerungen dieser Korrelation unterstützen die Existenz einer linken Transversalverschiebung entlang des Jordantal Rifts.

Résumé Le Trias du Levant comprend quatre cycles sédimentaires: I. Scythien-Anisien inférieur; II. Anisien supérieur; III. Anisien supérieur — Carnien; IV. Carnien supérieur — Norien.La succession des biofaciès débute par le faciès Werfénien, qui englobait pratiquement la Téthys occidentale éotriasique toute entière (cycle I). Dans le courant du Mésotrias, le faciès Sépharade s'étend aux marges méridionales et occidentales de la Téthys (cycles II et III), tandis qu'un faciès de plateforme d'affinité plutôt alpine représente le Trias terminal (cycle IV).Une corrélation des séries Permo-Eotriasiques du Néguev et de Transjordanie est proposée. Les implications stratigraphiques de cette corrélation appuient l'existence d'un coulissage sénestre tout au long du Rift de la vallée du Jourdain.

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2.
This paper deals with barite from stratiform, karst, and vein deposits hosted within Lower Paleozoic rocks of the Iglesiente-Sulcis mining district in southwestern Sardinia. For comparison sulfates from mine waters are studied. Stratiform barite displays 34S=28.8–32.1, 18O=12.7–15.6, and 87Sr/86Sr=0.7087, in keeping with an essentially Cambrian marine origin of both sulfate and strontium. Epigenetic barite from post-Hercynian karst and vein deposits is indistinguishable for both sulfur and oxygen isotopes with 34S=15.3–26.4 and 18O=6.6–12.5; 87Sr/86Sr ratios vary 0.7094–0.7140. These results and the microthermometric and salinity data from fluid inclusions concur in suggesting that barite formed at the site of mineralization by oxidation of reduced sulfur from Cambrian-Ordovician sulfide ores in warm, sometimes hot solutions consisting of dilute water and saline brine with different 18O values. The relative proportion of the two types of water may have largely varied within a given deposit during the mineralization. In the karst barite Sr was essentially provided by carbonate host rocks, whereas both carbonate and Lower Paleozoic shale host rocks should have been important sources for Sr of the vein barite. Finally, 34S data of dissolved sulfate provide further support for the mixed seawater-meteoric water composition of mine waters from the Iglesiente area.  相似文献   

3.
The isotopic composition of oxygen and carbon was studied in accessory carbonates and quartz separated from salts in Upper Devonian halogenous formations of the Pripyat Trough (Belorus). It is established that isotopic characteristics vary in a wide range. Values of 18O vary in the following range (SMOW): from 18.2 to 29.2 in calcites, from 15.7 to 32.5 in dolomites, and from 17.4 to 27.2 in quartz. Values of 13C range from –13.4 to 1.4 in calcites and from –11.1 to 1.7 in dolomites (PDB). Results obtained indicate highly variable isotope-geochemical conditions of sedimentation and early diagenesis during the formation of evaporitic sediments. Accessory minerals were repeatedly formed in a wide temperature range and probably at various stages of the lithogenesis.  相似文献   

4.
The Mount Lofty Ranges comprises interlayered marbles, metapsammites, and metapelites that underwent regional metamorphism during the Delamarian Orogeny at 470–515 Ma. Peak metamorphic conditions increased from lowermost biotite grade (350–400°C) to migmatite grade (700°C) over 50–55 km parallel to the lithological strike of the rocks. With increasing metamorphic grade, 18O values of normal metapelites decrease from 14–16 to as low as 9.0, while 18O values of calcite in normal marbles decrease from 22–24 to as low as 13.2 These isotopic changes are far greater than can be accounted for by devolatilisation, implying widespread fluid-rock interaction. Contact metamorphism appears not to have affected the terrain, suggesting that fluid flow occurred during regional metamorphism. Down-temperature fluid flow from synmetamorphic granite plutons (18O=8.4–8.6) that occur at the highest metamorphic grades is unlikely to explain the resetting of oxygen isotopes because: (a) there is a paucity of skarns at granite-metasediment contacts; (b) the marbles generally do not contain low-XCO2 mineral assemblages; (c) there is insufficient granite to provide the required volumes of water; (d) the marbles and metapelites retain a several permil difference in 18O values, even at high metamorphic grades. The oxygen isotope resetting may be accounted for by along-strike up-temperature fluid flow during regional metamorphism with time-integrated fluid fluxes of up to 5x109 moles/m2 (105 m3/m2). If fluid flow occurred over 105–106 years, estimated intrinsic permeabilities are 10-20 to 10-16m2. Variations in 18O at individual outcrops suggest that time-integrated fluid fluxes and intrinsic permeabilities may locally have varied by at least an order of magnitude. A general increase in XCO2 values of marble assemblages with metamorphic grade is also consistent with the up-temperature fluid-flow model. Fluids in the metapelites may have been derived from these rocks by devolatilisation at low metamorphic grades; however, fluids in the marbles were probably derived in part from the surrounding siliceous rocks. The marble-metapelite boundaries preserve steep gradients in both 18O and XCO2 values, suggesting that across-strike fluid fluxes were much lower than those parallel to strike. Up-temperature fluid flow may also have formed orthoamphibole rocks and caused melting of the metapelites at high grades.This paper is a contribution to IGCP Project 304 Lower Crustal Processes  相似文献   

5.
Stibnite mineralisation in the antimony province of New England can be divided into Central type ores (veins of stibnite + quartz ± berthierite) and Peripheral type ores of stibnite + quartz + native antimony ± berthierite. The Central stibnites have 34SCDT values of –5±2 (1) which may represent equilibrium precipitation from mantle sulfur at about 200°C. Peripheral stibnites have 34S values between 0 and –25, with a large group at 0±2. They represent precipitation from a limited supply of mantle sulfur and the acquisition of sedimentary sulfur. We consider that the different ore types were produced from distinct ore solutions derived from two immiscible melts. These originated in the deep mantle, were mobilised by tectonic activity and supplied the antimony and most of the sulfur to the ores.  相似文献   

6.
Dalradian metamorphic rocks, Lower Ordovician meta-igneous rocks (MGS) and Caledonian granites of the Connemara complex in SW Connemara all show intense retrograde alteration. Alteration primarily involves sericitization and saussuritization of plagioclase, the alteration of biotite and hornblende to chlorite and the formation of secondary epidote. The alteration is associated with sealed microcracks in all rocks and planes of secondary fluid inclusions in quartz where it occurs, and was the result of a phase of fluid influx into these rocks. In hand specimen K-feldspar becomes progressively reddened with increasing alteration. Mineralogical alteration in the MGS and Caledonian granites took place at temperatures 275±15°C and in the MGS Pfluid is estimated to be 1.5 kbar during alteration. The °D values of alteration phases are:-18 to-29 (fluid inclusions),-47 to-61 (chlorites) and-11 to-31 (epidotes). Chlorite 18O values are +0.2 to +4.3, while 18O values for quartz-K-feldspar pairs show both positively sloped (MGS) and highly unusual negatively sloped (Caledonian granites) arrays, diverging from the normal magmatic field on a - plot. The stable isotope data show that the fluid that caused retrogression continued to be present in most rocks until temperatures fell to 200–140°C. The retrograde fluid had D -20 to-30 in all lithologies, but the fluid 18O varied both spatially and temporally within the range-4 to +7. The fO2 of the fluid that deposited the epidotes in the MGS varied with its 18O value, with the most 18O-depleted fluid being the most oxidizing. The D values, together with low (<0) 18O values for the retrograde fluid in some lithologies indicate that this fluid was of meteoric origin. This meteoric fluid was probably responsible for the alteration in all lithologies during a single phase of fluid infiltration. The variation in retrograde fluid 18O values is attributed to the effects of variable oxygen isotope shifting of this meteoric fluid by fluid-rock interaction. Infiltration of meteoric fluid into this area was most likely accomplished by convection of pore fluids around the heat anomaly of the Galway granite soon after intrusion at 400 Ma. However convective circulation of meteoric water and mineralogical alteration could possible have occurred considerably later.  相似文献   

7.
Sulfur isotope ratios have been determined in 27 selected volcanic rocks from Iceland together with their whole rock chemistry. The 34S of analyzed basalts ranges from –2.0 to +0.4 with an average value of –0.8 Tholeiitic and alkaline rocks exhibit little difference in 34S values but the intermediate and acid rocks analyzed have higher 34S values up to +4.2 It is suggested that the overall variation in sulfur isotope composition of the basalts is caused by degassing. The small range of the 34S values and its similarity to other oceanic and continental basalts, suggest that the depleted mantle is homogeneous in its sulfur isotope composition. The 34S of the depleted mantle is estimated to be within the range for undegassed oceanic basalts, –0.5 to +1.0  相似文献   

8.
Zusmmenfassung Die Ergebnisse der Schwefelisotopenanalysen von sechs Sulfid- und vier Sulfatmineralproben von Bleiberg/Kreuth (Österreich) variieren von –6,9 bis –25,9 34S in den Sulfiden und von +14,8 bis +18,9 34S in den Sulfaten. Die große Variationsbreite der Schwefelisotopen und die Bevorzugung des leichten Schwefels deutet vermutlich auf bakterielle Prozesse der Sulfidfällung. Die Sulfatschwefel fallen in den Bereich der Schwefelisotopenzusammensetzung des mesozoischen (postskytischen) Meerwassers.
Determination of the sulfur isotopic composition in some sulfide and sulfate minerals of the lead zinc deposit, Bleiberg/Kreuth, Carinthia
Summary Results of sulfur isotope analyses on 6 sulfides and 4 sulfates from Bleiberg/Kreuth (Austria) range from –6.9 to –25.9 34S (in sulfides) and from +14.8 to +18.9 34S (in sulfates). A large range of sulfide sulfur isotope fractionation with appreciable light sulfur probably indicates a bacterial sulfur source in sulfide precipiation. The sulfate sulfur plots in the range of Mesozoic (post-Skytian) seawater sulfur isotopic composition.
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9.
Zusammenfassung Zuerst wird eine gedrängte Übersicht über die Stratigraphie der basko-kantabrischen Kreidegeosynklinale und die Tektonik ihres baskischen, strukturell noch zu den Pyrenäen gehörigen Anteils gegeben. Dann werden gewisse, den klastischen Kreide-Schichtfolgen im allgemeinen fremde, sauber klassierte Grobpsammite und Geröllfacien als Spuren lokaler Ausgleichsströmungen an Untergrundsunebenheiten gedeutet. Diese ordnen sich, zusammen mit Mächtigkeitsminima insbesondere des Albien, und mit Diskordanzen in Albien und Cenoman auf Nordnordwest- bis Nord-streichenden Zonen an. Parallel dazu verlaufen Bruchstrukturen innerhalb der Kreide, die den Gang der posteozänen Pyrenäenfaltung örtlich beeinflußten und von dieser, so beherrschend und tiefgreifend sie hier im übrigen scheinen mag, nur unvollkommen überprägt wurden. Auf eine ältere Strukturierung des voralpidischen Untergrundes wird geschlossen. Tatsächlich ergab ein zu Vergleichszwecken angestelltes Literaturstudium in dem ostwärts anschließenden Gebiet der Westpyrenäen das Vorhandensein variscischer Achsen und Brüche gleicher Art und Orientierung.
Stratigraphy and tectonics of the Basco-Cantabrian cretaceous geosyncline (Northern Spain) are briefly resumed. Lithofacial and structural peculiarities in it are described. They suggest meridional faulting of the basement, similarly as described by others in the older rocks exposed in the Western Pyrenees.

Résumé Stratigraphie et tectonique du géosynclinal crétacé basco-cantabrique sont résumées brèvement. Des surélévements au fond de la mer aptienne-cénomanienne, conclus de certains faciès grossiers, d'épaisseurs-minimum et de discordances, s'élongeaient parallèles à des failles et des axes pré-pyrénéennes, disharmoniques, en direction Nord-nord-ouest ou Nord. Celles-ci ne sont retouchées qu'imparfaitement par le plissement post-éocène, entraînant et catégorique qu'il bien y paraisse. A l'Est de Tolosa, jusqu'à Pau, le sous-sol élevé du géosynclinal crétacé montre des axes et des failles méridionales, hercyniennes, tout-à-fait pareilles à celles qu'il me fallut admettre au-dessous du Crétacé basque pour y expliquer les particularités mentionnées ci-dessus.

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Erweitertes Manuskript eines Vortrages vor der Hauptversammlung der Geologischen Vereinigung in Wetzlar am 13. März 1961.  相似文献   

10.
New sulphur and sulphate-oxygen isotope measurements for the main discordant and stratiform lead-zinc-barite orebodies at Silvermines Co. Tipperary, allow reappraisal of previously offered differing interpretations (Graham, 1970; Greig et al., 1971) of the bearing of sulphur isotopes on the genesis of this important Irish deposit. The following aspects of the data are confirmed: barite 34 S-values range from 17–21, similar to lower Carboniferous seawater sulphate: stratiform sulphide lens pyrites have 34 S-values ranging from –13 to –36; vein sulphide 34 S-values range from –8 to 4; sulphide 34 S-values increase upwards and outwards respectively in the related discordant and stratiform G orebodies; galena-sphalerite isotope palaeotemperatures are not too consistent, ranging from 40 to 430°C (using the calibration of Czamanske and Rye (1974). New facts are as follows: barite 18O-values range from –13 to –17, stratiform barites ranging from 13 to 14.5; sulphides separated from a single stratiform ore lens hand specimen usually have 34 Ssl > 34 Sga > 34 Spy; the outward decrease in 34 S-values in the stratiform G orebody is confined to the first few hundred feet only; pyrite 34 S-values progressively increase downwards through one stratiform sulphide orebody; yet variations of 13 occur within a single colloform pyrite structure from another stratiform orebody. It is concluded that there were at least two sources of sulphur, seawater sulphate and deep-seated sulphur. The former was the dominant source of all sulphate and, via biogenic reduction, of the sulphur in the bulk of the stratiform sulphide. The latter was the source of the sulphur in the vein sulphides. There was minimal isotopic interaction between the cool seawater sulphate and the warm unwelling ore fluid sulphur species, even though the latter precipitated under near isotopic equilibrium conditions when the temperature dropped and/or the pH and Eh increased. The lack of isotopic equilibrium between pyrite and ore sulphides in the stratiform ore lenses may result from the latter having precipitated slightly later than the former because of solubility relationships. Overall the present isotopic evidence supports considerable geological evidence favoring a syngenetic origin for the stratiform Silvermines orebodies.  相似文献   

11.
Sulfur and carbon isotope data are presented of 15 granulite samples from the Furua Complex, southern Tanzania, in which scapolite is a primary and major rock-forming constituent (up to 30 vol%). From these data, the isotopic composition is deduced of the sulfate and carbonate group in the scapolite structure. Subsequently, the composition and origin is discussed of the volatile species that are present in the deep crustal environment in which these scapolites formed.The 34S-values show a narrow range from 0.3 to 3.6, consistent with a deep-seated (mantle) origin of the sulfur; the mean value of 1.9 is slightly higher than usually found in rocks of assumed mantle provenance. The results of the carbon isotope analyses are more difficult to interpret; they suggest that the granulites contain two different carbon components with different isotopic compositions. Firstly, one component, liberated by phosphoric acid at room temperature, has 13Cvalues between –3.8 and –11.2 and a mean value of –6.7. This carbon component is assumed to occur as finely dispersed, submicroscopic carbonate inclusions. The second carbon fraction is liberated by phosphoric acid treatment at temperatures between 200 and 400° C and has considerably lower 13Cvalues with a mean value of –14.1 This seems to represent the carbon isotope composition in the scapolite structure. Such low 13C-values do not agree with the generally accepted value of –7 for juvenile carbon, but they are comparable to those found in early, primary carbonic inclusions from various granulite regions. It is argued that these low 13C-values are typical for granulite-facies metamorphism and that they may characterize an important fluid phase of the lower crust.  相似文献   

12.
Summary The stable isotope geochemistry of native gold-bearing quartz veins contained within low-grade metasedimentary strata in the central Canadian Rocky Mountains, British Columbia is examined. The data augment previous geological and geochemical studies.Vein pyrite 34S values cluster between + 14.2 and + 16.3 (CDT). Coeval galenas exhibit 34S values between + 11.4 and 13.3. Pyrite-galena geothermometry reveals a mean temperature of mineralization of 300 ± 43°C. Comparison of 34S values for the vein pyrites, with values for pyrite porphyroblasts in country rocks suggests that vein sulfur was probably derived from the host rocks.18O(SMOW) values of host quartzites and pelites cluster between + 12.0 and + 13.5, and + 9.5 and + 10.5, respectively. Auriferous vein quartz exhibits 18O values between + 13.0 and + 15.0. Veins were likely deposited from fluids undergoing post-peak metamorphic cooling.Vein inclusion fluids exhibit values between –105 and –124 (SMOW). Combined O-H-isotope data are most compatible with a source fluid involving chemically- and isotopically-evolved meteoric waters.The critical role of H-isotope data in the evaluation of source fluids for such mesothermal gold lodes is stressed. The paucity of H-isotope data pertaining to the study of lode gold deposits in similar low-grade metasedimentary domains suggests that the involvement of meteoric waters may at times be overlooked.
Der Ursprung metamorphogener Gold-Ganglagerstätten: Bedeutung stabiler Isotopendaten aus den zentralen Rocky Mountains, Kanada
Zusammenfassung Die vorliegende Arbeit befaßt sich mit der Untersuchung der Geochemie stabiler Isotope goldführender Quarzgänge in schwach metamorphen Sedimenten der zentralen Rocky Mountains in Britisch Kolumbien, Kanada. Die Resultate ergänzen früher publizierte geologische und geochemische Daten.Die 34S-Werte von Gang-Pyrit liegen zwischen + 14.2 und + 16.3 (CDT); gleichzeitig gebildeter Bleiglanz hat 34S-Werte von + 11.4 bis + 13.3. Die Isotopengeothermo metrie des Pyrits und Bleiglanzes ergibt eine mittlere Mineralisationstemperatur von 300°C + 43° für diese beiden Minerale. Vergleiche der 8345-Werte des Gang-Pyrits mit denen von Pyrit-Porphyroblasten des Nebengesteins lassen für die Gang-Pyrite eine Herkunft des Schwefels aus dem Nebengestein als wahrscheinlich erscheinen.Die 18O-Werte von Quarziten und Peliten, die als Nebengesteine auftreten, streuen von + 12.0 bis + 13.5 (SMOW), beziehungweise von +9.5 bis + 10.5 Quarz goldführender Gänge hat 18O-Werte, die zwischen + 13.0 und + 15.0 (SMOW) liegen. Er wurde als Gangfüllung wahrscheinlich bei sinkenden Temperaturen aus post metamorphen wäßrigen Lösungen abgesetzt.Flüssigkeitseinschlüsse von Gangmineralien zeigen D-Werte von -105 bis -124 (SMOW). Die H-O-Isotope sind deshalb ein Hinweis dafür, daß als mineralisierende Lösungen isotopisch veränderte meteorische Wässer in Betracht zu ziehen sind. Bei der Deutung der Herkunft der mineralisierenden wäßrigen Lösungen von mesothermalen Goldgängen muß die Kenntnis der H-Isotope als kritisch betrachtet werden. Die Seltenheit mit der H-Isotopendaten dieses Lagerstättentyps in der Literatur diskutiert werden, dürfte ein wesentlicher Grund dafür sein, daß die Rolle meteorischer Wässer bei der Genese mesothermaler, in Metasedimenten liegender Goldgänge, vielfach übersehen wurde.


With 4 Figures  相似文献   

13.
Zusammenfassung Die üblichen Bodengefügeeinteilungen nach dem Grad der Aggregatbildung waren für die Anwendung an Marschböden unzureichend. Es wird ein Entwurf einer Mikrogefüge-Einteilung besprochen, die auf dem Gehalt an Matrix (Kornanteil < 6. geschätzt) wie auf ihrem Ausrichtungsgrad basiert. Der visuell beurteilte Ausrichtungsgrad der Matrix wird als sehr schwach, schwach, mäßig, stark und sehr stark eingestuft, der geschätzte Matrixgehalt in hoch ( > 40%), mittel (23–40%), gering (5–23%), und sehr gering (0–5%) unterteilt.  相似文献   

14.
The Myall Creek copper prospect is in unmetamorphosed carbonaceous dolosiltstone and sandstone at the base of the late Proterozoic (Adelaidean) Tapley Hill Formation. It contains disseminated, fine-grained chalcopyrite, zincian tennanite, bornite, chalcocite, pyrite, sphalerite and galena, and irregular to straight chalcopyrite-rich veinlets. Some ore minerals rim and/or partially replace pyrite or clastic grains. There is no evidence of hydrothermal activity. The 34SCDT values of pyrite and the other sulfides fall in the wide range –3.6 to +44.2. Dolomite in both mineralised and unmineralised samples has 13CPDB values concentrated around –3, and 18OSMOW values around +25. It is concluded that the mineralising fluids were near-neutral brines which leached metals from the basement and early Adelaidean rocks. They entered the Tapley Hill sediments at moderately low temperatures via permeable strata and faults. The metals were precipitated by biogenic H2S, and also fixed by reaction with iron sulfides and, possibly, organic matter. Continuing ascent of brines into the mineralised strata caused breakdown of detrital feldspars and Fe-Ti oxides, and some solution-remobilisation of early-formed sulfides.  相似文献   

15.
The alkaline rocks around Sivamalai are represented by syenites, nepheline syenites and basic alkaline rocks. The syenites are comprised of olivine-pyroxene, pyroxene, hornblende and biotite syenites and syenodiorites, pegmatite phases and quartz syenite. Nepheline syenites include pyroxene, hornblende and biotite bearing varieties. Syenites with pockets of garnet, magnetite or corundum occur in some places between the nepheline syenites and the country rocks represented dominantly by granitic gneisses. The basic alkaline rocks are represented by barkevikite melteigite and they occur as xenoliths amidst the nepheline syenites. The field mineralogical and petrochemical characteristics indicate the igneous nature of these rocks. The syenites and nepheline syenites are inferred to be evolved from pyroxene syenodiorite and barkevikite melteigite respectively. The irregular distribution of garnet and corundum is attributed to the metasomatism of the country rocks by the alkaline magma.
Zusammenfassung Die alkalischen Gesteine um Sivamalai umfassen Syenite, Nephelinsyenite und basische alkalische Gesteine. Die Syenite sind aus Olivin-Pyroxen, Pyroxen, Hornblende und der Biotitsyenit, Syenodiorit, Pegmatitphasen und Quarzsyenit zusammengesetzt. Die Nephelinsyenite schließen Varietäten mit Pyroxen, Hornblende und die Biotite ein. Syenite mit Granatlinsen, Magnetit oder Korund schalten sich an einigen, Stellen zwischen Nephelinsyenite und die weiter verbreiteten granitischen Gneise. Die basischen Alkaligesteine werden durch barkeviktischen Melteigit vertreten und finden sich als Xenolithe im Nephelinsyenit. Der mineralogische und petrochemische Feldbefund läßt auf eruptiven Charakter dieser Gesteine schließen. Es wird angenommen, daß die Syenite und Nephelinsyenite sich aus Pyroxensyenodiorit und Barkevikitmelteigit entwickelt haben. Die ungleichförmige Verteilung von Granat und Korund wird auf die Metasomatose der umgebenden Gesteine durch alkalisches Magma zurückgeführt.

Résumé Les roches alcalins autor de Sivamalai sont représentées par des syénites, des syénites éléolitiques et de roches alcalines basiques. Les syénites comprennent des syénites à péridot, pyroxene, hornblende et biotite, et des syénodiorites, des phases pegmatitiques et des syénites quartziféres. Les syénites éléolitiques comprennent des variétés à pyroxene, hornblende et biotite. Des syénites avec poches à grenat, magnétite ou corindon se rencontrent en quelques endroits entre les syénites éléolitiques et les roches encaissantes représentées principalement par gneiss granititiques. Les roches alcalines basiques sont représentées par des melteigites barkévictiques et se rencontrent en enclaves dans les syénites à néphéline. Les caractéristiques sur le terrain, minérologiques et pétrochimiques, indiquent le caractère igné de ces roches. Les syénites et les syénites éléolitiques sont considérées comme dérivant respectivement de syénodiorites pyroxéniques et de melteigites barkévictiques. La répartition irregulière du grenat et du corindon est attribuée à la métasomatose des roches encaissantes sous l'influence du magma alcalin.

Sivamulai , - . -, , - , -, -. - , . - - , . -. . , - - . .
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16.
The oxygen isotope geochemistry and chemical composition of clinopyroxene crystals from Alban Hills pyroclastic deposits constrain the petrological evolution of ultrapotassic Roman-type rocks. Volcanic eruptions in the 560–35 ka time interval produced thick pyroclastic deposits bearing clinopyroxene phenocrysts with recurrent chemical characteristics. Clinopyroxenes vary from Si–Mg-rich to Al–Fe-rich with no compositional break, indicating that they were derived from a continuous process of crystal fractionation. Based on the 18O and trace element data no primitive samples were recovered: monomineralic clinopyroxene cumulates set the oxygen isotope composition of primary magmas in the range of uncontaminated mantle rocks (5.5), but their REE composition resulted from extensive crystal fractionation. Departing from these mantle-like 18OCpx values the effects of crustal contamination of clinopyroxene O-isotope composition were identified and used to monitor chemical variations in the parental magma. 18O values in Si–Mg-rich clinopyroxene are slightly higher than typical mantle values (5.9–6.2), and the low REE contents are representative of early stages of magmatic differentiation. 18O values as high as 8.2 are associated with Al–Fe3+-rich clinopyroxene showing high REE contents. These 18O values are characteristic of crystals formed during the late magmatic stages of each main eruptive phase. Geochemical modelling of 18O values vs. trace element contents indicates that these ultrapotassic magmas were derived from fractional crystallization plus assimilation of limited amounts of carbonate wall rocks starting from a primary melt, and from interaction with CO2 derived from country rocks during crystal fractionation.  相似文献   

17.
The Bitterroot mylonite is a ductile-deformed amphibolitefacies mylonite (A-mylonite), abruptly capped by ductile- to brittle-deformed greenschist-facies mylonite (G-mylonite). The movement picture of the A-mylonite from its lineation and S-C-surfaces is strongly focused; the average orientation for the G-mylonite is similar but much more diffuse.Regional metamorphism, and intrusion of quartz diorite orthogneiss, granodiorite, and granite of the Idaho-Bitterroot batholith between 105 and less than 60 m.y. ago was followed by regional extension, formation of the A-mylonite, and rapid drop in temperature from about 700 °C to about 280 °C, at a time inferred to be about 57 to 53 m.y. ago. Pressure-relief melting of water-undersaturated rocks at deeper crustal levels, in response to the rapid decrease in pressure, may have produced the nearly dry magmas emplaced as very shallow plutons or erupted as the Challis rhyolitic volcanics 52 or 53 m.y. ago.The greenschist-facies mylonite/chloritic breccia formed during further cooling to about 100 °C, during listric normal faulting on the eastern flank of the Bitterroot dome about 40 m.y. ago.
Zusammenfassung Der Bitterroot-Mylonit ist ein duktil deformierter amphibolitfazieller Mylonit (A-Mylonit), der von einem duktil bis spröd deformierten grünschieferfaziellen Mylonit (G-Mylonit) scharf getrennt wird. Das Bewegungsbild des A-Mylonites ist anhand seiner Lineationen und seiner S-C-Gefüge stark ausgerichtet; die Durchschnittsorientierung für die G-Mylonite ist ähnlich, streut aber breiter. Der Regionalmetamorphose, den Intrusionen von Quarzdiorit, Orthogneis, Granodiorit und dem Granitbatholithen von Idaho-Bitterroot zwischen 105 und mindestens 60 Ma folgte eine regionale Dehnungsphase, dann die Bildung der A-Mylonite, danach ein rascher Temperaturabfall von ungefähr 700 °C auf ca. 280 °C, wahrscheinlich im Zeitraum vor 57 bis 53 Ma. Druckabhängiges Schmelzen wasseruntersättigter Gesteine in tieferen Krustenniveaus könnte als Reaktion auf den rapiden Druckabfall zur Bildung der nahezu trockenen Magmen geführt haben, die dann vor ca. 52 oder 53 Ma als sehr flachliegende Plutone intrudierten oder wie der Challis-Rhyolith eruptiert wurden.Der grünschieferfazielle Mylonit und die Chloritbrekzien bildeten sich während der weiteren Abkühlung bis auf ca. 100 °C mit der Entwicklung von listrisch geformten Abschiebungen auf der Ostflanke des Bitterroot-Domes vor ca. 40 Ma.

Résumé L'ensemble mylonitique de Bitterroot comporte une mylonite engendrée par déformation ductile dans le facies des amphibolites (mylonite A), en contact brusque avec une mylonite, ductile à cassante, appartenant au facies des schistes verts (mylonite G). L'image cinématique de la mylonite A est définie de manière très précise par sa linéation et la disposition des plans s et c; l'image de la mylonite G est semblabe, mais plus diffuse.Le métamorphisme régional et l'intrusion de méta-diorite quarzique, de granodiorite et de granite formant le batholite de l'Idaho-Bitterroot, entre 105 Ma et moins de 60 Ma, ont été suivis d'une extension régionale accompagnée de la formation de la mylonite A et d'une chute rapide de la température depuis 700 °C jusqu' à ±280 °C, probablement entre 57 et 53 Ma. La fusion de roches sous-saturées en eau, provoquée dans des niveaux crustaux plus profonds par la baisse rapide de la pression peut être à l'origine des magmas presque secs responsables de la mise en place de plutons peu profonds et d'éruptions comme celle des volcanites rhyolitiques de Challis il y a 52 ou 53 Ma.La mylonite de facies schistes verts et la brèche chloritique se sont formées au cours du refroidissement ultérieur, jusqu'à ±100 °C, à l'occasion de la production de failles normales listriques sur le flanc est du dôme de Bitterroot, il y a environ 40 Ma.

, Bitterroot (-), (G-), . - , Bitterroot, ; , G- , . , -, , Idaho-Bitterroot 105 60 : , — -, — 700 ° 280 °, , , 57 53 . , , , , 52–53 , , Challis. 100 °, Bitterroot 40 .
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18.
The geological structure of the island of Ios, Cyclades, Greece, is a dome consisting of an augengneiss core and a mantle of garnet-mica schists that together form the Basement which is overthrust by a marble-schist Series. This Series is mainly made up of meta-volcanics and metamorphosed sediments, presumably Mesozoic in age. It is a tectonically composed pile of marbles alternating with glaucophane schists, actinolite schists and chlorite schists. Petrological relations and isotope dating indicate the polymetamorphic character of Ios. Two Alpine metamorphic phases, M1 and M2, and relicts of a high grade metamorphic or magmatic phase (Mo), that only affected the Basement, are demonstrated. Radiometric ages obtained for the Basement confirm the interpretation that the Mo phase is Pre-Alpine. The M1 and M2 were dated at 43 Ma and 25 Ma respectively. The P-T conditions of metamorphism are estimated as 9–11 kb and 350 to 400° C for the M1 phase and 5–7 kb and 380–420° C for the M2 phase. The metamorphic history of the Cyclades is discussed and it is suggested that Pre-Alpine Basement occurs also on Sikinos and Naxos.
Zusammenfassung Die Kykladeninsel Ios besteht zur Hauptsache aus einem Gneisdom. Der Kern dieses Doms ist ein Augengneiskomplex, welcher von Granat-Muskovit-Schiefern umhüllt wird. Auf dieses Grundgebirge ist eine Marmor-Schiefer-Serie überschoben worden, eine tektonisch bedingte Wechselfolge von Metasedimenten und Metavulkaniten, wahrscheinlich mesozoischen Alters.Die petrologischen Gegebenheiten und Isotopendatierungen bezeugen Polymetamorphose. Es konnten zwei metamorphe Phasen alpidischen Alters nachgewiesen werden, M1 und M2, sowie die Spuren einer hochgradigen, metamorphen oder magmatischen Phase Mo, welche nur die Basis betroffen hat.Radiometrische Alterbestimmungen bestätigen die Deutung, daß das Grundgebirge voralpidisches Alter hat. Die Phasen M1 und M2 wurden datiert auf 43 Mj. und 25 Mj. Die Druck-Temperatur-Bedingungen der M1 und M2 wurden abgeschätzt auf 9–11 Kb und 350–400° C für die M1 und auf 5–7 Kb und 380–420° C im Falle der M2. Der metamorphe Werdegang der Kykladen wird diskutiert sowie die mutmaßliche Existenz eines vergleichbaren voralpidischen Grundgebirges auf den Nachbarinseln Sikinos und Naxos.

Résumé La structure géologique de l'île d'Ios (Cyclades, Grèce) est un dôme. Le noyau du dôme est un complexe d'augengneiss enveloppé par des schistes à grenat et mica. Ce noyau, qui constitue le socle, est chevauché par une série composée d'une succession tectonique de marbres et de schistes à glaucophane, de schistes à actinote et de schistes à chlorite. Les relations pétrologiques et les datations isotopiques indiquent le caractère polymétamorphique de l'île d'Ios. On y peut démontrer deux phases de métamorphisme alpin (M 1 et M 2) ainsi que des témoins d'une phase métamorphique ou magmatique antérieure qui n'a influencé que le socle. Les datations radiométriques obtenues pour le socle confirment l'âge préalpin de la phase M 0. Les phases M 1 et M 2 sont datées à 43 et 25 Ma respectivement. Les conditions du métamorphisme des phases M 1 et M 2 sont estimées respectivement à 9–11 kb avec 350–400° C, et 5–7 kb avec 380–420° C. L'histoire métamorphique des Cyclades est discutée ainsi que la présence probable d'un socle Préalpin comparable dans les îles voisines de Sikinos et de Naxos.

Kykladen los . — , , . , , - , , . (M1 M2) , ( m0), . , . M1 M2 - 43, 25 . M1 9–11 350–400° , 2 5–7 380–420° . . Kykladen - Sikinos Naxos.
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19.
Sulfur isotope analyses were made on 14 alunites from volcanic and sedimentary rocks widely different in chemistry and age from southern Tuscany and northern Latium, central Italy. The 34S values range from +0.7 to +9.6, and appear not to be related to the nature of the host rock. Geological and isotopic evidence suggests that all the alunites formed by supergenic oxidation of sulfides. Sulfides occurring with alunites in the volcanic rocks of Latium can be divided into an isotopically light group of probably magmatic origin (34S=–1.5 to +3.4) and a heavy one with 34S=+6.0 to +10.3, tentatively interpreted as deposited by hydrothermal fluids that leached sulfides of similar 34S/32S from the deep basement. Such an interpretation is consistent with recent studies indicating that in the perityrrhenian belt of Latium exists a continuation, at depth, of the Tuscan stratigraphic series, rich in sulfides with 34 from +6 to +12.  相似文献   

20.
Zusammenfassung Der komplizierte Decken- und Faltenbau im inneren Tuxertal wurde mit einer hier bislang nicht angewandten Arbeitsmethode zur Analyse interferierender Kleinfaltensysteme untersucht. Dabei wurden gebogene Kleinfaltenachsen imSchmidt'schen Netz nicht — wie sonst praktiziert — durch Punkte, sondern durch Kurven im SinneRamsays dargestellt. Aufgrund detaillierter Geländebeobachtungen und der Auswertung entsprechender Kurvendiagramme konnte eine relativstratigraphische Einstufung und konstruktive Rückformung von Falten in mehrphasig beanspruchten Gesteinen vorgenommen werden. Bisherige Korrelationen zwischen Achsenrichtungen und Achsenaltern müssen aufgegeben werden, weil während ein und derselben Deformationsphase geprägte Achsen aufgrund späterer Deformation beliebige Streichrichtungen aufweisen bzw. verschieden alte Achsen gleich orientiert sein können. — Die angewandte Arbeitsweise führte u. a. zur Entdeckung einer f2-Schlingentektonik im Tuxertal und ermöglichte eine besser als bisher begründete Abgrenzung zwischen Wolfendorndecke und Glocknerdecke im Tuxer-Joch-Gebiet.
The complicated nappe and fold structures in the inner Tuxer valley were examined with a new method, analyzing systems of interfering small-scale folds, which up to now has not been used in this area. Connected with this method curved fold axes in theSchmidt net were not depicted by points, as usual, but by curves in the meaning ofRamsay. Based upon detailed field observations and the evaluation of curve diagrams a relative stratigraphic classification and constructive rebound of folds in multiphase deformed rocks could be taken up. Previous correlations between directions and ages of axes must be abandoned, because axes formed during one and the same phase of deformation may show any striking because of later deformation, or axes of different ages may show the same orientation respectively. — The working method used, led to the discovery of a f2-vortex-tectonics in the Tuxer valley, thus making possible a delimitation between the Wolfendorn nappe and the Glockner nappe in the Tuxer Joch area that proved to be better founded than former attempts.

Résumé Le style compliqué des nappes et des plis dans la vallée inférieure de Tux (Tuxertal) a été analysé par une méthode de travail non appliquée jusqu'ici pour l'analyse de système de petits plis interférants. On a resprésenté des axes de petits plis incurvés sur un canevas de Schmidt par des courbes au sens de Ramsay, et non par des points comme cese fait d'habitude. A partir d'observations détaillées de terrain et de résultats issus des diagrammes de courbe il a été permis d'aborder l'intégration stratigraphique relative et une reconstitution des plis dans les roches ayant subi plusieurs phases de déformation. Les corrélations acceptées jusqu'aujourd'hui concernant la direction et l'âge des axes doivent être abandonnées pour deux raisons; les axes issus de la même phase de déformation peuvent montrer des sens de direction quelconques à la suite des déformations suivantes, ou bien des axes d'âge différents peuvent prendre la même orientation. La méthode de travail appliquée ici a permis la découverte d'un «Schlingentektonik» dans la vallée de Tux et a favorisé ainsi une meilleure limitation entre la nappe de Wolfendorn et la nappe du Glockner dans la région du Tuxerjoch.

. , , . , , . , , , , , . — f2 -.
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