中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Clinopyroxene Diversity Reveals Open Magma Plumbing System and Melts Variation of Haoti Cenozoic Melilitites, Northeastern Tibetan Plateau

文献类型:期刊论文

作者Xia, Yu-Hong4; Lai, Shao-Cong4; Zhu, Ren-Zhi4; Zhang, Fang-Yi1; Petrone, Chiara Maria5; Liu, Min4; Qin, Jiang-Feng4; Zhu, Yu2,3; Zhong, Zhe-Hao4; Yang, Hang4
刊名JOURNAL OF PETROLOGY
出版日期2026-03-01
卷号67期号:3页码:26
关键词clinopyroxene melilitites magma plumbing system melts variation NE Tibetan plateau
ISSN号0022-3530
DOI10.1093/petrology/egag025
通讯作者Lai, Shao-Cong(shaocong@nwu.edu.cn) ; Zhu, Ren-Zhi(rzzhunwu@163.com)
英文摘要Mantle-derived magmas commonly undergo complex evolutionary processes (e.g. magma mixing/recharge, crystal-mush reaction, magma differentiation, crustal contamination) during their ascent. These processes can be difficult to discriminate when looking at whole-rock composition for hybrid rocks. However, minerals preserve textural and chemical signatures that are critical for gaining new insights into the magma plumbing system of these hybrid rocks. Melilitites, which are typical silica-undersaturated, alkali- and carbon-rich rocks. It remains unclear whether they have experienced complex magma processes. In this study, we focus on clinopyroxene (Cpx) phenocrysts from the Haoti Cenozoic melilitites, from West Qinling (WQ), northeastern Tibetan Plateau, and four types have been identified. Both type-1 and type-2 are in equilibrium with whole-rock compositions and can be classified as magmatic autocrysts. Type-1 Cpx features wider clean core and narrow rim. Type-2 is characterized by sieve-textured cores and patchy zoning, recording subsequent melt modification. Type-3 also displays sieved texture with primitive core compositions (Mg# = 87.8-92.2, Cr2O3 = 1.25-2.00 wt %) overlapping the Cpx from mantle xenoliths, indicating mantle-derived xenocrysts associated with subsequent melt modification. Type-4 shows core-mantle-rim complex zoning and displays negative Eu and Sr anomalies and low Mg# values (67.1-70.3) in the core, suggesting its xenocrysts originate from lower crust feldspar-rich granulite. The oscillatory zoning and abrupt Cr2O3 decrease (from similar to 0.8 wt % to similar to 0.2 wt %) in the mantle testifies to evolved magma recharge events. All Cpxs display narrow overgrowth rims characterized by depletions in Mg and Si but enrichments in Al and Ti, reflecting degassing and rapid crystallization during pre-eruptive magma decompression. The olivine phenocrysts comprise both magmatic autocrysts (Fo = 85.9-87.0, average value = 86.5) and mantle-derived xenocrysts (Fo = 84.8-92.3, average value = 90.4). The quantitative calculations reveal that high- and low-Cr Cpx domains crystallized under 1132-1176 degrees C/5.6-7.9 kbar and 1101-1158 degrees C/3.6-6.7 kbar, respectively. Cpx hygrometry reveals that both high- and low-Cr magma batches are hydrous, with H2O contents of similar to 3.5 and similar to 2.7 wt %. Empirical barometric results reveal that Cpx rims record significantly lower crystallization pressures than their core/mantle domains. Consequently, three discrete magma reservoirs have been revealed at depths of similar to 26.2, similar to 21.1 km, and shallower levels. Cpx phenocrysts exhibit homogeneous Sr-87/Sr-86 ratios ranging from 0.7040 to 0.7046. The sieved domains of type-2 Cpx exhibit the lower Sr-87/Sr-86 ratios compared to those of type-3 Cpx, indicating modification by late-stage melts derived from distinct sources. The melt compositions in equilibrium with Cpx autocrysts display high La/Yb (71.98-111.22), Dy/Yb (3.31-4.67), and Zr/Hf (47.29-55.62) ratios, but low Hf/Sm (0.55-0.87) and Ti/Eu (4939-5960) ratios, indicating a carbonate-metasomatized garnet stability field mantle source. The olivine autocrysts exhibit low NiO contents (0.04-0.29 wt %), low Ni/(Mg/Fe)1000 ratios (<0.9), and high 100 & times; Mn/Fe ratios (up to 2.2), indicating a peridotitic source lithology. The diverse textures and compositional variations in Cpx attest to recurrent melt influx events capable of perturbing the thermal, baric, and volumetric equilibria between the quiescent magma reservoir and surrounding rocks. This study highlights melt influx-triggered melt hybridization that could be a key mechanism of activating magma reservoirs and triggering the Haoti volcano eruption during the outward growth of the Tibetan Plateau.
WOS关键词LITHOSPHERIC MANTLE BENEATH ; LA-ICP-MS ; VOLCANIC-ROCKS ; TRACE-ELEMENTS ; CARBONATITE METASOMATISM ; MT. ETNA ; ISOTOPIC COMPOSITIONS ; ULTRAMAFIC XENOLITHS ; ZONED CLINOPYROXENE ; ERUPTION TRIGGERS
资助项目National Natural Science Foundation of China[42172056] ; National Natural Science Foundation of China[42472085]
WOS研究方向Geochemistry & Geophysics
语种英语
WOS记录号WOS:001720866100001
出版者OXFORD UNIV PRESS
源URL[http://ir.qdio.ac.cn/handle/337002/205139]  
专题海洋研究所_深海极端环境与生命过程研究中心
通讯作者Lai, Shao-Cong; Zhu, Ren-Zhi
作者单位1.Chinese Acad Sci, Inst Oceanol, Ctr Deep Sea Res, 7 Nanhai Rd, Qingdao 266071, Peoples R China
2.Yangtze Univ, Coll Resources & Environm, Hubei Key Lab Petr Geochem & Environm, 111 Univ Rd, Wuhan 430100, Peoples R China
3.Yangtze Univ, China Univ Geosci YU CUGW Joint Res Ctr Deep Earth, Coll Resources & Environm, 111 Univ Rd, Wuhan 430100, Peoples R China
4.Northwest Univ, Dept Geol, State Key Lab Continental Evolut & Early Life, 229 North Taibai Rd, Xian 710069, Peoples R China
5.Nat Hist Museum, Volcano Petrol Grp, Cromwell Rd, London SW7 5BD, England
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Xia, Yu-Hong,Lai, Shao-Cong,Zhu, Ren-Zhi,et al. Clinopyroxene Diversity Reveals Open Magma Plumbing System and Melts Variation of Haoti Cenozoic Melilitites, Northeastern Tibetan Plateau[J]. JOURNAL OF PETROLOGY,2026,67(3):26.
APA Xia, Yu-Hong.,Lai, Shao-Cong.,Zhu, Ren-Zhi.,Zhang, Fang-Yi.,Petrone, Chiara Maria.,...&Yang, Hang.(2026).Clinopyroxene Diversity Reveals Open Magma Plumbing System and Melts Variation of Haoti Cenozoic Melilitites, Northeastern Tibetan Plateau.JOURNAL OF PETROLOGY,67(3),26.
MLA Xia, Yu-Hong,et al."Clinopyroxene Diversity Reveals Open Magma Plumbing System and Melts Variation of Haoti Cenozoic Melilitites, Northeastern Tibetan Plateau".JOURNAL OF PETROLOGY 67.3(2026):26.

入库方式: OAI收割

来源:海洋研究所

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