Accessory minerals fingerprint post-collisional anatectic metamorphism in continental collision zones

IF 2.9 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Yong-Jie Yu , Ren-Xu Chen , Qiong-Xia Xia , Zhi-Hui Mu , Zhuang-Zhuang Yin , Guo-Chao Sun
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Abstract

Mineral behavior during anatectic metamorphism is a direct factor controlling the chemical and isotopic compositions of melts and residues. However, the mechanism that causes disequilibrium melting remains poorly understood. A combined study of petrological, geochronological and geochemical analyses was carried out on a stromatic migmatite outcrop, the Luoerling migmatite in the North Dabie zone. The in-source leucosomes and leucocratic veins are products of in situ partial melting and later magmatic intrusion, respectively. The finding of Neoproterozoic, Late Triassic and Early Cretaceous zircons suggests that the migmatites have Neoproterozoic protoliths, and experienced eclogite-facies metamorphism during collisional orogeny and anatectic metamorphism in the post-collisional stage. The occurrence of peritectic amphibole suggests that anatectic metamorphism mainly occurs through biotite hydration melting. The occurrence of orthopyroxene and clinopyroxene indicates local dehydration melting under granulite-facies conditions. Leucosomes show considerably higher 87Sr/86Sri, but lower εNd(t) and εHf(t) values than the corresponding melanosomes. Such isotopic differences between leucosomes and melanosomes result mainly from the influx of external fluids derived from the surrounding eclogites and gneisses, indicating a coupled dehydration-hydration mechanism in the continental subduction zone. Peritectic and anatectic zircon, monazite, titanite and apatite that formed during anatectic metamorphism exhibit different petrological and geochemical characteristics. Peritectic and anatectic accessory minerals in the leucosomes and leucocratic veins exhibit smaller variations in Nd-Hf isotopes than those in the melanosomes, suggesting that the anatectic melts were homogenized during transport. Differential dissolution and growth of monazite, titanite and apatite affect the Sm-Nd isotopes of residues and melts during anatectic metamorphism. The dissolution of apatite plays a significant role in the hydration melting of metagranite. The continuous dissolution of relict zircon during cooling/transportation of melt results in decreased εHf(t) values in anatectic zircon, whereas the incomplete dissolution of relict zircon results in whole-rock Hf-Nd decoupling. The difference in Nd-Hf isotopes among whole-rock and different genetic minerals can distinguish between dehydration and hydration melting. Therefore, this study highlights that a combination of multiple isotope analyses on whole-rock and accessory minerals may be conducive to understanding not only the mechanism and process of disequilibrium melting but also the nature of anatectic metamorphism in collisional orogens.
大陆碰撞带副矿物的碰撞后复溶变质特征
缓蚀变质过程中的矿物行为是控制熔体和残余物化学和同位素组成的直接因素。然而,导致不平衡融化的机制仍然知之甚少。对北大别带罗尔岭混合岩进行了岩石学、年代学和地球化学综合分析。源内白质小体和白质脉分别是原位部分熔融和后期岩浆侵入的产物。新元古代、晚三叠世和早白垩世锆石的发现表明,杂岩具有新元古代的原岩,并经历了碰撞造山期榴辉岩相变质作用和碰撞后的复辉岩变质作用。包晶角闪孔的赋存表明,暗晶变质作用主要通过黑云母水化熔融发生。正辉石和斜辉石的赋生表明麻粒岩相条件下局部脱水熔融。与相应的黑素体相比,白色小体的87Sr/86Sri值较高,而εNd(t)和εHf(t)值较低。白色小体和黑色小体的同位素差异主要是由于周围榴辉岩和片麻岩的外部流体的流入,表明在大陆俯冲带存在脱水-水合作用的耦合机制。在渐析变质过程中形成的围晶型和渐析型锆石、独居石、钛矿和磷灰石表现出不同的岩石学和地球化学特征。与黑素体相比,白素体和白素体脉中的包晶和暗晶副矿物Nd-Hf同位素变化较小,表明暗晶熔体在运输过程中均质化。独居石、钛石和磷灰石的不同溶蚀和生长影响着色石变质过程中残留物和熔体的Sm-Nd同位素。磷灰石的溶解在辉长岩水化熔融过程中起着重要作用。熔融体冷却/输运过程中残余锆石的持续溶蚀导致隐晶型锆石的εHf(t)值降低,而残余锆石的不完全溶蚀导致全岩Hf-Nd解耦。整个岩石和不同成因矿物的Nd-Hf同位素差异可以区分脱水熔融和水化熔融。因此,本研究强调,结合全岩和副矿物的多同位素分析,不仅有助于了解不平衡熔融的机制和过程,而且有助于了解碰撞造山带的复熔变质作用的性质。
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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.
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