磷灰石的原位地球化学:中国东北延边地区侏罗纪长英岩岩浆活动的成岩学和构造解释

IF 2.9 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Lithos Pub Date : 2024-08-19 DOI:10.1016/j.lithos.2024.107764
Yu Li , Chen-Yang Sun , Wen-Liang Xu , Xiao-Ming Zhang
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引用次数: 0

摘要

与整块岩石分析相比,单个矿物的地球化学分析能更详细地揭示火成岩的成岩过程。本研究对中国东北延边地区10个侏罗纪花岗岩质岩体的磷灰石进行了原位地球化学和钕同位素分析,以确定其成岩过程和区域构造演化。结果表明,延边地区侏罗纪花岗岩的磷灰石地球化学主要受母体熔体成分的控制。后岩浆蚀变可能导致磷灰石与母体熔体之间的地球化学脱钩,而钕同位素对这种蚀变表现出一定的适应性。早侏罗世花岗岩中的磷灰石显示出与I型起源相一致的特征,而中侏罗世和晚侏罗世花岗岩中的磷灰石则显示出与adakitic的亲缘关系。磷灰石成分的变化表明在岩浆演化过程中其他含稀土元素(REE)矿物的部分结晶。斜长石和绿帘石的早期结晶分别导致磷灰石中Sr和Th含量的下降,造成负Eu异常和轻稀土元素耗竭。榍石和角闪石的部分结晶导致磷灰石中的中型 REE 枯竭。角闪石被认为是延边地区中、晚侏罗世阿达克花岗岩岩浆源中的主要残余相。磷灰石钕同位素组成表明,延边地区的侏罗纪花岗岩来源于两个地壳源:中亚造山带和华北克拉通。此外,从早侏罗世到晚侏罗世,磷灰石Sr/Y和(La/Yb)N比值呈上升趋势,表明该地区地壳逐渐增厚,这很可能是与古太平洋板块相关的俯冲带不断向外迁移所造成的。
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In situ geochemistry of apatite: Petrogenetic and tectonic interpretations of Jurassic felsic magmatism in the Yanbian area, NE China

Geochemical analyses of individual minerals provide more detailed insights into the petrogenesis of igneous rocks than whole-rock analyses. This study conducted in situ geochemical and Nd isotope analyses of apatites from 10 Jurassic granitic plutons in the Yanbian area, NE China, to establish the petrogenesis and regional tectonic evolution. The results indicate that the apatite geochemistry of Jurassic granitoids in the Yanbian area was controlled primarily by the composition of parental melt. Post-magmatic alteration may lead to geochemical decoupling between apatite and parental melt, while Nd isotopes exhibit some resilience to such alterations. Apatites from Early Jurassic granitoids display characteristics that are consistent with an I-type origin, whereas those from Middle and Late Jurassic granitoids exhibit an adakitic affinity. Variations in apatite compositions indicate the fractional crystallization of other rare earth element (REE)-bearing minerals during magma evolution. The early crystallization of plagioclase and allanite led to decreases in Sr and Th contents in apatite, respectively, resulting in a negative Eu anomaly and light REE depletion. The fractional crystallization of titanite and hornblende resulted in the depletion of middle REE in apatite. Hornblende is regarded as the main residual phase in the magma source of Middle and Late Jurassic adakitic granitoids in the Yanbian area. Apatite Nd isotopic compositions suggest that the Jurassic granitoids in the Yanbian area originated from two crustal sources: the Central Asian Orogenic Belt and the North China Craton. Additionally, increasing trends in apatite Sr/Y and (La/Yb)N ratios from the Early to Late Jurassic suggest a gradual thickening of the regional crust, which is likely driven by the continentward migration of the subduction zone associated with the Paleo-Pacific Plate.

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来源期刊
Lithos
Lithos 地学-地球化学与地球物理
CiteScore
6.80
自引率
11.40%
发文量
286
审稿时长
3.5 months
期刊介绍: Lithos publishes original research papers on the petrology, geochemistry and petrogenesis of igneous and metamorphic rocks. Papers on mineralogy/mineral physics related to petrology and petrogenetic problems are also welcomed.
期刊最新文献
East–west-trending tearing of the Indian slab beneath the eastern Tibetan Plateau: Insights from Eocene–Oligocene potassic adakite-like granites in western Yunnan Apatite geochemical indicators for magma mixing and fractional crystallization in the origin of A-type granite Multistage crustal reworking in the Dabie orogen: Evidence from zircons in migmatites and retrograded eclogites U-Pb ages and Hf isotopic composition of detrital zircon in western Algarve Triassic sandstone (SW Iberia): Implications for crustal evolution, provenance, and paleogeography Recycling of subducted continent slab in an accretionary orogen: Insight from the Liangwan potassic granitoids in the Tongbai orogen, Central China
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