Volcanic-intrusive connections and crystal-melt segregation in the Dulan tilted crustal section: Insights from accessory mineral evolution

IF 3.6 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Bin Liu , Luan Wu , Chang-Qian Ma , Meng-Yu Zhang , Zhen-Hua Xue , Yang Sun , Shi-Ze Li
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Abstract

The volcanic-intrusive connection is critical for understanding the formation of transcrustal magma systems and the mechanisms driving magma eruption. Yet, the genetic links between abyssal intrusive rocks and acidic volcanic rocks remain poorly understood. Here, we present new data from the Dulan volcanic-intrusive complex, a tilted section of the East Kunlun orogenic belt, integrating zircon UPb dating, trace elements, apatite and zircon Hf isotope geochemistry, and whole-rock geochemistry to investigate volcanic-intrusive connections and track crystal-melt segregation processes. The Dulan complex comprises rhyolite, granite porphyry, and granodiorite, all showing consistent zircon UPb ages, rare earth element (REE) patterns, and εHf(t) values, suggesting a shared magma source. Glomerocrysts of plagioclase, alkali feldspar, and hornblende, along with antecrystic zircon and apatite, imply a cumulate affinity in granodiorite and granite porphyry. Compositional variations in whole-rock and accessory minerals indicate that plagioclase, apatite, and zircon fractionation significantly influenced magma evolution. We propose a two-stage crystal segregation process in a ∼ 2 Myr-long magma reservoir system. In the early stage, at ∼33 km depth, aqueous fluid influx initiated crystal-melt segregation, forming the Dulan granodiorite from residual mush. In the later stage, mafic melt and fluid injections caused crystal-melt segregation in a shallower reservoir at ∼12 km depth, with high-silica magma producing rhyolite, while residual mush consolidated into granite porphyry. Our findings suggest that volcanic-intrusive connections are more complex than mere compositional equivalence or complementarity, requiring multidimensional analysis through accessory minerals and whole-rock geochemistry.
都兰倾斜地壳剖面的火山-侵入连接与结晶-熔体分离:来自副矿物演化的启示
火山-侵入联系对于认识跨地壳岩浆系统的形成和岩浆喷发机制具有重要意义。然而,深海侵入岩和酸性火山岩之间的成因联系仍然知之甚少。本文利用东昆仑造山带倾斜段都兰火山-侵入杂岩的新资料,综合锆石UPb定年、微量元素、磷灰石和锆石Hf同位素地球化学以及全岩地球化学,研究了火山-侵入连接,并追踪了晶体-熔体分离过程。都兰杂岩由流纹岩、花岗斑岩和花岗闪长岩组成,锆石UPb年龄、稀土元素(REE)模式和εHf(t)值具有一致性,表明它们具有共同的岩浆源。斜长石、碱长石和角闪石的球晶,以及反晶锆石和磷灰石,暗示在花岗闪长岩和花岗斑岩中具有累积亲和作用。整个岩石和副矿物的成分变化表明,斜长石、磷灰石和锆石分馏作用对岩浆演化有显著影响。我们在一个~ 2 myr长的岩浆储层系统中提出了一个两阶段的晶体分离过程。在早期阶段,在~ 33 km深度,含水流体流入引发了晶体-熔体分离,从残余的糊状物中形成了都兰花岗闪长岩。在后期,基性熔融和流体注入在约12 km深度的浅层储层中造成晶体-熔体分离,高硅岩浆形成流纹岩,而残余的泥质固结成花岗岩斑岩。我们的研究结果表明,火山-侵入连接比单纯的成分等效或互补更为复杂,需要通过辅助矿物和全岩地球化学进行多维分析。
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来源期刊
Chemical Geology
Chemical Geology 地学-地球化学与地球物理
CiteScore
7.20
自引率
10.30%
发文量
374
审稿时长
3.6 months
期刊介绍: Chemical Geology is an international journal that publishes original research papers on isotopic and elemental geochemistry, geochronology and cosmochemistry. The Journal focuses on chemical processes in igneous, metamorphic, and sedimentary petrology, low- and high-temperature aqueous solutions, biogeochemistry, the environment and cosmochemistry. Papers that are field, experimentally, or computationally based are appropriate if they are of broad international interest. The Journal generally does not publish papers that are primarily of regional or local interest, or which are primarily focused on remediation and applied geochemistry. The Journal also welcomes innovative papers dealing with significant analytical advances that are of wide interest in the community and extend significantly beyond the scope of what would be included in the methods section of a standard research paper.
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