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  • 1
    ISSN: 1437-3262
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences
    Description / Table of Contents: Abstract The Saghro hills constitute the northern branch of the Panafrican mobile belt in the eastern part of the Moroccan Anti-Atlas. The Precambrian terranes are predominantly composed of volcaniclastic and volcanic series witnessing a mainly explosive volcanism, intruded by diorites and granites. Their age attribution is problematic, and has been reconsidered in the present study based on structural evidence and Rb/Sr data of quartzdiorites: penetratively deformed volcano-sedimentaries intruded by these plutons aged between 754 and 722 Ma are now considered as Lower Precambrian II. The Upper PII series have been reattributed, and only formations overlying a basal conglomerate and angular disconformity are considered PIII. Main schistosities are predominantly NE-SW, cut by conjugate sets of strike-slip shear zones. In the Saghro area NW-SE compression can explain the observed structures during this main Panafrican deformation phase, while fault kinematics and dike emplacement related to late deformation events indicate rather a NE-SW compression. The explosive volcanism of the Saghro area can be related to a volcanic arc, active during the subduction- and collision-related Panafrican deformations. This arc would be located on the upper plate in respect to the northward dipping subduction zone evidenced in Bou Azzer — El Graara inlier (Saquaque et al., 1989a).
    Abstract: Résumé Les boutonnières du Saghro constituent la branche nord de la zone panafricaine mobile dans la partie est de l'Anti-Atlas marocain. Les terrains précambriens sont essentiellement composés de séries volcano-clastiques et volcaniques témoignant d'un volcanisme à prédominance explosive, qui sont intrudées par des diorites et des granites. Leur attribution stratigraphique est problématique et fut reconsidérée comme PrécambrienII inférieur sur la base des données structurales et des datations Rb/Sr des diorites qaurtziques intrusives entre 754 et 722 Ma. En conséquence la série PII supérieur a été redéfinie, et uniquement des formations surmontant un conglomérat basai caractéristique ou une discordance angulaire sont considérés du PIII. La schistosité principale est NE-SW, recoupé par des systèmes de zones de cisaillement décrochantes conjuguées. Dans la région du Saghro, une compression NW-SE peut expliquer ces structures associées à la phase de déformation pan-africaine majeure, tandis que la cinématique des failles et l'emplacement de dykes liés aux déformations panafricaines tardives indiquent une compression NE-SW. Le volcanisme explosif du Saghro peut être lié à un arc, qui a été actif pendant les événements tectoniques liés à la subduction et la collision panafricaines. Cet arc sera localisé sur la plaque supérieure par rapport à une zone de subduction vers le nord retracée le long de l'accident majeur dans la boutonnière de Bou Azzer — El Graara (Saquaque et al., 1989).
    Notes: Zusammenfassung Der Saghro repräsentiert den nördlichen Zweig der panafrikanischen Kette im östlichen Teil des marokkanischen Anti-Atlas. Die präkambrischen Serien bestehen weitgehend aus vulkanischem und vulkano-detritischem Material, die Zeugnis einer vorwiegend explosiven Vulkantätigkeit sind. Diese Serien sind intrudiert von Dioriten und Graniten. Die Altersbestimmung dieser Serien ist problematisch, und ihre Einstufung ist in vorliegender Arbeit revidiert auf Grund struktureller Beobachtungen und Rb-Sr Alter der intrusiven Quarzdiorite von 754 bis 722 Ma. Damit gehören die penetrativ deformierten Serien dem unteren PII an und dem oberen PII werden die etwas deformierten Teile des ehemaligen unteren PIII zugeordnet. Nur diejenigen Formationen, die ein charkteristisches Basiskonglomerat oder eine Winkeldiskordanz überlagern, werden als PIII eingestuft. Die Hauptschieferung streicht NE-SW, und wird von einem System konjugierter Scherzonen durchschnitten. Im Saghro können alle Strukturen dieser panafrikanischen Hauptphase durch eine NW-SE gerichtete Einengung erklärt werden. Die Injektion von Gängen und die Kinematik entlang Störungen im späteren Stadium der panafrikanischen Deformation dagegen deutet auf eine NE-SW-Einengung. Der explosive Vulkanismus und die kalk-alkalinen Plutone des Saghro können durch einen Inselbogenmagmatismus im Zusammenhang mit der nordvergenten Subduktion entlang des »accident majeur« von Bou Azzer – El Graara erklärt werden (Saquaque et al., 1989). Seine Aktivität war gleichzeitig mit den die Subduktion und die Kollision begleitenden Deformationen.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Marine geophysical researches 10 (1988), S. 109-138 
    ISSN: 1573-0581
    Keywords: Seafloor spreading ; volcanism ; tectonic extension ; Mid-Atlantic Ridge
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences , Physics
    Notes: Abstract Submersible observations and photogeology document dramatic variations in the distribution of young volcanic rocks, faulting, fissuring, and hydrothermal activity along an 80 km-long segment of the Mid-Atlantic Ridge south of the Kane Transform (MARK Area). These variations define two spreading cells separated by a cell boundary zone or a small-offset transform zone. The northern spreading cell is characterized by a median ‘neovolcanic’ ridge which runs down the axis of the median valley floor for 40 km. This edifice is as much as 4 km wide and 600 m high and is composed of very lightly sedimented basalts inferred to be 〈 5000 years old. It is the largest single volcanic constructional feature discovered to date on the Mid-Atlantic Ridge. The active Snake Pit hydrothermal vent field is on the crest of this ridge and implies the presence of a magma chamber in the northern spreading cell. In contrast, the southern cell is characterized by small, individual volcanos similar in size to the central volcanos in the FAMOUS area. Two of the volcanos that were sampled appear to be composed of dominantly glassy basaltic rocks with very light sediment cover; whereas, other volcanos in this region appear to be older features. The boundary zone between the two spreading cells is intensely faulted and lacks young volcanic rocks. This area may also contain a small-offset ( 〈 8 km) transform zone. Magmatism in the northern cell has been episodic and tens of thousands of years have lapsed since the last major magmatic event there. In the southern cell, a more continuous style of volcanic accretion appears to be operative. The style of spreading in the southern cell may be much more typical for the Mid-Atlantic Ridge than that of the northern cell because the latter is adjacent to the 150 km-offset Kane Transform that may act as a thermal sink along the MAR. Such large transforms are not common on the MAR, therefore, lithosphere produced in a spreading cell influenced by a large transform may also be somewhat atypical.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Marine geophysical researches 10 (1988), S. 91-107 
    ISSN: 1573-0581
    Keywords: Hydrothermal vents ; Snake Pit ; Mid-Atlantic Ridge ; seafloor spreading
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences , Physics
    Notes: Abstract TheSnake Pit Hydrothermal Site lies on the axis of the Mid-Atlantic Ridge at 23°22′ N latitude, about 30 km south of the Kane Transform Intersection. Active ‘black smoker’ vents and a surrounding field of hydrothermal sediment occur at the crest of a laterally extensive neovolcanic ridge. It is one of the first active hydrothermal vent fields to be found on a slow-spreading ridge axis and despite significant differences in its geologic setting from those of the East Pacific Rise, has many similarities to its fast-spreading counterparts. Although preliminary reports have documented many interesting aspects of these vents and their surroundings, new data collected from the manned submersible ALVIN and the deep-towed ANGUS camera system define the regional tectonic setting as well as the local geologic environment of this fascinating area. The Snake Pit vents are located on a local peak of a volcanic constructional ridge at a depth of 3450 m, 700–800 m deeper than vents known from the East Pacific Rise, Galapagos, or Juan de Fuca spreading centers. The vent field is at least 600 m long and up to 200 m wide and is covered by a thick blanket of greenish to yellow-orange hydrothermal sediment. Both active and extinct vents are perched along the crests of steep-sided sulfide mounds that reach heights of over 40 m. High-temperature (350° C) fluids are vented from black smoker chimneys and low-temperature (226° C) fluids seep from sulphide domes and subordinate anhydrite constructions. Water temperatures, flow rates, fluid chemistries, and mineralization are strikingly similar to vents of faster spreading ridge crests; however, a somewhat distinct fauna inhabit the area.
    Type of Medium: Electronic Resource
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  • 4
    Electronic Resource
    Electronic Resource
    Springer
    Marine geophysical researches 7 (1985), S. 489-514 
    ISSN: 1573-0581
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences , Physics
    Notes: Abstract ANGUS photographs and ALVIN observational data from Fracture Zones A and B on the Mid-Atlantic Ridge near 37°N were examined for structural and sedimentological indications of the area's tectonics. Both transform fault zones are characterized by volcanic rubble, breccias, chalks, and undisturbed sediments typical of slow-slipping transforms. The photographic data consist of 16 camera-sled traverses from the FAMOUS Expedition using the ANGUS deep-towed camera system. These data cover several different morphotectonic provinces along the strike of both slow-slipping (2 cm yr-1) fracture zones. ALVIN data come from two dives in the central part of Fracture Zone B. The two fracture zones differ in their distribution of fractured and sheared chalks which indicate regions of strike-slip deformation along the transform. Evidence of shearing is confined to a very narrow region in the center of FZ A, whereas the zone of shear deformation is as much as 6 km wide across FZ B. Other differences include the morphology and depth of the transform valleys and their contiguous nodal basins and the extent of exposures of fresh-looking volcanic ridges in the nodal basin.
    Type of Medium: Electronic Resource
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