Evidence and significance of wehrlitization within continental lithospheric mantle

被引:1
|
作者
Lin ABing [1 ]
Dai HongKun [2 ]
Zhang HongFu [1 ,3 ]
机构
[1] Northwest Univ, Dept Geol, State Key Lab Continental Dynam, Xian 710069, Peoples R China
[2] China Univ Geosci, State Key Lab Geol Proc & Mineral Resources, Wuhan 430074, Peoples R China
[3] Zhejiang Univ, Sch Earth Sci, Hangzhou 310058, Peoples R China
关键词
Wehrlitization; Peridotite-melt interaction; Thermodynamic modeling; Lithospheric mantle; Continental stability; EIFEL VOLCANIC FIELD; MELT-ROCK REACTION; PERIDOTITE XENOLITHS; NORTH CHINA; ULTRAMAFIC XENOLITHS; CARBONATITE METASOMATISM; WEHRLITE XENOLITHS; ORTHO-PYROXENE; ISOTOPIC COMPOSITIONS; VICTORIA LAND;
D O I
10.18654/1000-0569/2023.01.06
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Wehrlitization refers to the mantle process that mantle peridotite interacts strongly with silica-undersaturated melts. This process usually triggers significant changes in mantle physico-chemical properties and thus is intimately linked to the thinning and destruction of cratonic lithosphere. Here, we first review the mechanism, texture and composition variations on wehrlitization and its impact on continental stability and then quantitatively characterize this process via thermodynamic modeling. It has been shown that wehrlitization may involve both modal and stealth metasomatism that usually introduce apatite, amphibole, phlogopite and carbonate into the peridotite and alter the modal abundance of rock-forming phases at the same time. Besides, non-equilibrium textures, including sponge texture, melt pockets (now presented as finer-grained clinopyroxene, olivine and other accessory minerals) and mineral zoning, are also typical wehrlitization. Thermodynamic modeling shows that the effects from melt impregnation on mantle peridotites are jointly controlled by the nature of the initial rock and the infiltrating melts as well as melt/rock ratio. Reaction with silica-poor (e.g., nephelinitic) melts usually facilitate the formation of clinopyroxene-rich peridotites and eventually wehrlite especially at high pressures (2.5Ga and 4.0GPa), regardless of the initial compositions of the peridotites (e.g., refractory harzburgite or fertile lherzolite). In contrast, the reaction with silica-rich (e.g., MORB) melts cannot produce wehrlite under the possible pressure range of continental lithosphere. Furthermore, the melt-rock reaction will always increase the density of mantle peridotites no matter of the melt compositions. The density of infiltrated fertile mantle may exceed that of the Preliminary Reference Earth Model (PREM), and this will eventually result in lithospheric instability. Collectively, our study quantitatively reveals the preferred physical conditions for wehrlitization and provides a quantitative theoretical framework for the previous conceptual model that peridotite-melt interaction can cause the thinning and destruction of the lithospheric mantle and has significant implications for continental stability.
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页码:93 / 103
页数:11
相关论文
共 117 条
  • [1] Geochemistry of Fe-rich peridotites and associated pyroxenites from Horni Bory, Bohemian Massif: Insights into subduction-related melt-rock reactions
    Ackerman, Lukas
    Jelinek, Emil
    Medaris, Gordon, Jr.
    Jezek, Josef
    Siebel, Wolfgang
    Strnad, Ladislav
    [J]. CHEMICAL GEOLOGY, 2009, 259 (3-4) : 152 - 167
  • [2] Origin of melt pockets in mantle xenoliths from southern Patagonia, Argentina
    Aliani, Paola
    Ntaflos, Theodoros
    Bjerg, Ernesto
    [J]. JOURNAL OF SOUTH AMERICAN EARTH SCIENCES, 2009, 28 (04) : 419 - 428
  • [3] Andronikov AV, 1994, PETROLOGY+, V2, P250
  • [4] Wehrlites from continental mantle monitor the passage and degassing of carbonated melts
    Aulbach, S.
    Lin, A-B
    Weiss, Y.
    Yaxley, G. M.
    [J]. GEOCHEMICAL PERSPECTIVES LETTERS, 2020, 15 : 30 - 34
  • [5] Volatile-rich Metasomatism in the Cratonic Mantle beneath SW Greenland: Link to Kimberlites and Mid-lithospheric Discontinuities
    Aulbach, Sonja
    Sun, Jing
    Tappe, Sebastian
    Hoefer, Heidi E.
    Gerdes, Axel
    [J]. JOURNAL OF PETROLOGY, 2017, 58 (12) : 2311 - 2338
  • [6] Craton nucleation and formation of thick lithospheric roots
    Aulbach, Sonja
    [J]. LITHOS, 2012, 149 : 16 - 30
  • [7] La Reunion Island dunites as analogs of the Martian chassignites: Tracking trapped melts with incompatible trace elements
    Barrat, Jean-Alix
    Bachelery, Patrick
    [J]. LITHOS, 2019, 344 : 452 - 463
  • [8] PETROLOGY OF RECRYSTALLIZED ULTRAMAFIC XENOLITHS FROM MERELAVA VOLCANO, VANUATU
    BARSDELL, M
    SMITH, IEM
    [J]. CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1989, 102 (02) : 230 - 241
  • [9] SODIUM PARTITIONING BETWEEN CLINOPYROXENE AND SILICATE MELTS
    BLUNDY, JD
    FALLOON, TJ
    WOOD, BJ
    DALTON, JA
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1995, 100 (B8) : 15501 - 15515
  • [10] Origin of pyroxenite-peridotite veined mantle by refertilization reactions: Evidence from the Ronda peridotite (Southern Spain)
    Bodinier, Jean-Louis
    Garrido, Carlos J.
    Chanefo, Ingrid
    Bruguier, Olivier
    Gervilla, Fernando
    [J]. JOURNAL OF PETROLOGY, 2008, 49 (05) : 999 - 1025