Subduction-related Late Cretaceous high-K volcanism in the Central Pontides orogenic belt: constraints on geodynamic implications

IF 1.5 Q1 Earth and Planetary Sciences Geodinamica Acta Pub Date : 2016-07-18 DOI:10.1080/09853111.2016.1208526
Emre Aydınçakır
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引用次数: 14

Abstract

Mineral chemistry, major and trace elements, 40Ar/39Ar age and Sr–Nd–Pb isotopic data are presented for the Late Cretaceous Hamsilos volcanic rocks in the Central Pontides, Turkey. The Hamsilos volcanic rocks mainly consist of basalt, andesite and associated pyroclastics (volcanic breccia, vitric tuff and crystal tuff). They display shoshonitic and high-K calc-alkaline affinities. The shoshonitic rocks contain plagioclase, clinopyroxene, alkali feldspar, phlogopite, analcime, sanidine, olivine, apatite and titanomagnetite, whereas the high-K calc-alkaline rocks contain plagioclase, clinopyroxene, orthopyroxene, magnetite / titanomagnetite in microgranular porphyritic, hyalo-microlitic porphyritic and glomeroporphyritic matrix. Mineral chemistry data reveal that the pressure condition of the clinopyroxene crystallisation for the shoshonitic rocks are between 1.4 and 6.3 kbar corresponds to 6–18-km depth and the high-K calc-alkaline rocks are between 5 and 12 km. 40Ar/39Ar age data changing between 72 ± .5 Ma and 79.0 ± .3 Ma (Campanian) were determined for the Late Cretaceous Hamsilos volcanic rocks, contemporaneous with the subduction of the Neo-Tethyan Ocean beneath the Pontides. The studied volcanic rocks were enriched in the large-ion lithophile and light rare earth element contents, with pronounced depletion in the contents of high-field-strength elements. Chondrite-normalised rare earth element patterns (LaN/LuN = 6–17) show low to medium enrichment, indicating similar sources of the rock suite. Initial 87Sr/86Sr values vary between .70615 and .70796, whereas initial 143Nd/144Nd values change between .51228 and .51249. Initial 206Pb/204Pb values vary between 18.001 and 18.349, 207Pb/204Pb values between 15.611 and 15.629 and 208Pb/204Pb values between 37.839 and 38.427. The main solidification processes involved in the evolution of the volcanic rocks consist of fractional crystallisation, with minor amounts of crustal contamination ± magma mixing. According to geochemical evidence, the shoshonitic melts in the Hamsilos volcanic rocks were possibly derived from the low degree of partial melting of a subcontinental lithospheric mantle (SCLM), while the high-K calc-alkaline melts were derived from relatively high degree of partial melting of SCLM that was enriched by fluids and/or sediments from a subduction of oceanic crust.
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中央庞德造山带晚白垩世俯冲相关的高钾火山作用:地球动力学意义的约束
本文报道了土耳其中部Pontides地区晚白垩世Hamsilos火山岩的矿物化学、主微量元素、40Ar/39Ar年龄和Sr-Nd-Pb同位素数据。汉西洛斯火山岩主要由玄武岩、安山岩及其伴生的火山碎屑(火山角砾岩、玻璃凝灰岩和结晶凝灰岩)组成。它们表现出高钾钙碱性亲和力。高钾钙碱性岩石中含有斜长石、斜辉石、碱长石、云母、安钙石、水晶石、橄榄石、磷灰石和钛磁铁矿等,而高钾钙碱性岩石中含有斜长石、斜辉石、正辉石、磁铁矿/钛磁铁矿等。矿物化学数据表明,闪玄岩斜辉石结晶的压力条件在1.4 ~ 6.3 kbar之间,对应深度为6 ~ 18 km,高钾钙碱性岩石在5 ~ 12 km之间。测定了晚白垩世Hamsilos火山岩的40Ar/39Ar年龄,变化范围为72±0.5 Ma ~ 79.0±0.3 Ma(坎帕尼亚期),与新特提斯洋在庞德底下的俯冲同时发生。研究的火山岩中大离子亲石元素和轻稀土元素含量富集,高场强元素含量明显减少。球粒陨石正态稀土元素模式(LaN/LuN = 6-17)显示低至中等富集,表明岩组来源相似。初始87Sr/86Sr值在。70615和。70796之间变化,而初始143Nd/144Nd值在。51228和。51249之间变化。206Pb/204Pb初始值在18.001 ~ 18.349之间,207Pb/204Pb初始值在15.611 ~ 15.629之间,208Pb/204Pb初始值在37.839 ~ 38.427之间。在火山岩演化过程中,主要的凝固过程包括:部分结晶,少量地壳污染±岩浆混合。地球化学证据表明,汉西洛斯火山岩的松玄岩熔体可能是由次大陆岩石圈地幔(SCLM)的低程度部分熔融形成的,而高钾钙碱性熔体则是由洋壳俯冲形成的流体和/或沉积物富集的次大陆岩石圈地幔(SCLM)的高程度部分熔融形成的。
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来源期刊
Geodinamica Acta
Geodinamica Acta 地学-地球科学综合
CiteScore
4.50
自引率
0.00%
发文量
0
审稿时长
25 weeks
期刊介绍: Geodinamica Acta provides an international and interdisciplinary forum for the publication of results of recent research dealing with both internal and external geodynamics. Its aims to promote discussion between the various disciplines that work on the dynamics of the lithosphere and hydrosphere. There are no constraints over themes, provided the main thrust of the paper relates to Earth''s internal and external geodynamics. The Journal encourages the submission of papers in all fields of earth sciences, such as biostratigraphy, geochemistry, geochronology and thermochronology, geohazards and their societal impacts, geomorphology, geophysics, glaciology, igneous and metamorphic petrology, magmatism, marine geology, metamorphism, mineral-deposits and energy resources, mineralogy, orogeny, palaeoclimatology, palaeoecology, paleoceanograpgy, palaeontology, petroleum geology, sedimentology, seismology and earthquakes, stratigraphy, structural geology, surface processes, tectonics (neoteoctonic, plate tectonics, seismo-tectonics, Active tectonics) and volcanism. Geodinamica Acta publishes high quality, peer-reviewed original and timely scientific papers, comprehensive review articles on hot topics of current interest, rapid communications relating to a significant advance in the earth sciences with broad interest, and discussions of papers that have already appeared in recent issues of the journal. Book reviews are also included. Submitted papers must have international appeal and regional implications; they should present work that would be of interest to many different specialists. Geographic coverage is global and work on any part of the world is considered. The Journal also publishes thematic sets of papers on topical aspects of earth sciences or special issues of selected papers from conferences.
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