首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Chemo-probe into the mantle origin of the NW Anatolia Eocene to Miocene volcanic rocks: Implications for the role of, crustal accretion, subduction, slab roll-back and slab break-off processes in genesis of post-collisional magmatism
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Chemo-probe into the mantle origin of the NW Anatolia Eocene to Miocene volcanic rocks: Implications for the role of, crustal accretion, subduction, slab roll-back and slab break-off processes in genesis of post-collisional magmatism

机译:Chemo-探针进入NW Anatolia eocene的Miocene火山岩石的地幔起源:对碰撞后岩浆生成中的存在性,地壳增生,俯冲,平板回滚和平板突破过程的影响

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Abstract Post-collisional Cenozoic magmatic activity in NW Anatolia produced widespread volcanism across the region. In the Biga Peninsula, in the west, medium-K calc-alkaline to ultra-K rocks with orogenic geochemical signature were emplaced at ~43–15 Ma (Biga orogenic volcanic rocks; BOVR). Volcanic activity in the Central Sakarya region, to the east, is mainly restricted to ~53–38Ma, but also continued during the Early Miocene with small basaltic extrusives (Sakarya orogenic volcanic rocks; SOVR). This study presents a new set of geochemical data (whole rock major and trace elements and Sr–Nd–Pb isotopic compositions), obtained from the Cenozoic calc-alkaline volcanic rocks from these two regions. While there is considerable overlap in the emplacement time of volcanism in the two areas, the post-collisional volcanic rocks of these two regions differ in terms of their geochemical compositions: (1) the BOVR show an age-dependent increase in K and other large-ion lithophile elements (LILE), coupled with an increase in radiogenic Sr and Pb compositions from the Eocene to Miocene; whereas (2) the SOVR are characterized by more sodic compositions with lower K and less radiogenic Sr contents with respect to the BOVR, which were unchanged in Eocene and Miocene. We conclude that these geochemical features were principally related to the distinct modes of subduction-related mantle enrichment processes. We suggest that the Eocene to Miocene progressive enrichment in the BOVR mantle was related to successive subduction of oceanic and crustal materials in the western Aegean, while the SOVR mantle was dominantly enriched during the pre-collisional events. Magma generation in the western region was related to subduction roll-back processes associated with post-collisional extension. In the east, thermal perturbation of the mantle in response to asthenospheric upwelling due to slab break-off process was responsible for the magma generation. The time-dependent increase of K (and other LILE and radiogenic Sr) in the Cenozoic orogenic lavas from the Rhodope to Biga region emphasizes the importance of crustal imbrication and subduction in the genesis of orogenic K-rich lavas of the Alpine–Himalayan orogenic belt. Highlights ? Cenozoic magmatism in the eastern and western parts of the NW Anatolia is studied. ? They differ in terms of geochemistry, chronology and tectonic settings ? The western side was shaped by subduction crustal-accretion and roll-back processes. ?
机译:<![cdata [ 抽象 NW Anatolia在整个地区的广泛火山中产生了巨大的新生代岩石活动。在西部,在西部,在胃癌地球化学签名的中,将中-K钙碱与超k岩石的超级-k岩石置于〜 43-15 mA( biga orengenic火山岩; bovr)。在萨卡里亚地区的火山活动到东部,主要仅限于〜 53-38 ma,也在早期继续中西烯,小玄武岩尿胃(奇加地洋葱火山岩; sovr)。本研究提出了一系列新的地球化学数据(全岩体主要和微量元素和SR-ND-PB同位素组合物),从这两个地区的新生代钙碱火山岩获得。虽然在两个地区的火山中的火山中的施加时间相当重叠,但这两个区域的碰撞火山岩在其地球化学组合物方面有所不同:(1)BOVR显示K和其他大的年龄依赖性增加 - 锂替氏锂岩元素(乳液),加上来自群岛的辐射性Sr和Pb组合物的增加;然而(2)SOVR的特征在于具有较低k和较少的辐射SR含量相对于BOVR的碱性组合物的特征在于,在eocene和中烯中不变。我们得出结论,这些地球化学特征主要与俯冲相关的披风富集过程的不同模式有关。我们建议,谷类植物对博维尔地幔中的内科进步富集与西洋学西部的海洋和地壳材料的连续介绍有关,而Sovr Mantle在碰撞前的事件中占主导地位。西部地区的岩浆一代与与碰撞后延期相关的俯冲回滚流程有关。在东部,由于板坯断裂过程引起的哮喘较令人反应的地幔的热扰动是岩浆生成的负责。来自罗地孔到Biga地区的新生代orgensic伐瓦斯的K(和其他含氮和辐射性SR)的时间依赖性增加强调了地壳尿布和俯冲在高山 - 喜马拉雅山脉造山带的奥林族毒性钠的成因中的重要性。 亮点 新生岩岩研究了NW Anatolia的东部和西部。 < CE:PARA ID =“P0010”View =“全部”>它们在地球化学,年表和构造环境方面不同 西侧以俯冲地壳 - 吸收和回滚过程形状。 ?< / ce:label>

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