Petrogenesis and Geodynamic Significance of Xenolithic Eclogites

被引:23
作者
Aulbach, Sonja [1 ]
Smart, Katie A. [2 ]
机构
[1] Goethe Univ, Inst Geowissenschaft, Frankfurt, Germany
[2] Univ Tromso, Arctic Univ Norway, Dept Geosci, Tromso, Norway
关键词
kimberlite-borne xenolithic eclogites; paleo-subduction zones; lithospheric mantle; convecting mantle; continent evolution; deep geochemical cycles; TRACE-ELEMENT SYSTEMATICS; ARCHEAN SUBDUCTION ZONES; MIDOCEAN RIDGE BASALTS; IN-SITU SR; OCEANIC-CRUST; CONTINENTAL-CRUST; OXIDATION-STATE; SLAVE CRATON; LU-HF; DIAMOND INCLUSIONS;
D O I
10.1146/annurev-earth-031621-112904
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Kimberlite-borne xenolithic eclogites, typically occurring in or near cratons, have long been recognized as remnants of Precambrian subducted oceanic crust that have undergone partial melting to yield granitoids similar to the Archean continental crust. While some eclogitized oceanic crust was emplaced into cratonic lithospheres, the majority was deeply subducted to form lithologic and geochemical heterogeneities in the convecting mantle. If we accept that most xenolithic eclogites originally formed at Earth's surface, then their geodynamic significance encompasses four tectonic environments: (a) spreading ridges, where precursors formed by partial melting of convecting mantle and subsequent melt differentiation; (b) subduction zones, where oceanic crust was metamorphosed and interacted with other slab lithologies; (c) the cratonic mantle lithosphere, where the eclogite source was variably modified subsequent to emplacement in Mesoarchean to Paleoproterozoic time; and (d) the convecting mantle, into which the vast majority of subduction-modified oceanic crust not captured in the cratonic lithosphere was recycled.
引用
收藏
页码:521 / 549
页数:29
相关论文
共 159 条
[1]   AN EMPIRICAL THERMAL HISTORY OF THE EARTHS UPPER-MANTLE [J].
ABBOTT, D ;
BURGESS, L ;
LONGHI, J ;
SMITH, WHF .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1994, 99 (B7) :13835-13850
[2]   AN OXYGEN ISOTOPIC PROFILE THROUGH THE UPPER KILOMETER OF THE OCEANIC-CRUST, DSDP HOLE 504B [J].
ALT, JC ;
MUEHLENBACHS, K ;
HONNOREZ, J .
EARTH AND PLANETARY SCIENCE LETTERS, 1986, 80 (3-4) :217-229
[3]   Hydrothermal alteration of upper oceanic crust formed at a fast-spreading ridge: mineral, chemical, and isotopic evidence from ODP Site 801 [J].
Alt, JC ;
Teagle, DAH .
CHEMICAL GEOLOGY, 2003, 201 (3-4) :191-211
[4]   Fossil subduction recorded by quartz from the coesite stability field [J].
Alvaro, M. ;
Mazzucchelli, M. L. ;
Angel, R. J. ;
Murri, M. ;
Campomenosi, N. ;
Scambelluri, M. ;
Nestola, F. ;
Korsakov, A. ;
Tomilenko, A. A. ;
Marone, F. ;
Morana, M. .
GEOLOGY, 2020, 48 (01) :24-28
[5]   The terrestrial uranium isotope cycle [J].
Andersen, Morten B. ;
Elliott, Tim ;
Freymuth, Heye ;
Sims, Kenneth W. W. ;
Niu, Yaoling ;
Kelley, Katherine A. .
NATURE, 2015, 517 (7534) :356-U463
[6]  
Arndt N, 2013, ECON GEOL, V108, P1953
[7]   Global 1° x 1° thermal model TC1 for the continental lithosphere:: Implications for lithosphere secular evolution [J].
Artemieva, IM .
TECTONOPHYSICS, 2006, 416 (1-4) :245-277
[8]  
Asimow P. D., 2022, MAGMA REDOX CHEM, V266, P139
[9]   Origins of xenolithic eclogites and pyroxenites from the central slave craton, Canada [J].
Aulbach, Sonja ;
Pearson, Norman J. ;
O'Reilly, Suzanne Y. ;
Doyle, Buddy J. .
JOURNAL OF PETROLOGY, 2007, 48 (10) :1843-1873
[10]   Fe3+ Distribution and Fe3+/σFe-Oxygen Fugacity Variations in Kimberlite-Borne Eclogite Xenoliths, with Comments on Clinopyroxene-Garnet Oxy-Thermobarometry [J].
Aulbach, Sonja ;
Woodland, Alan B. ;
Stagno, Vincenzo ;
Korsakov, Andrey, V ;
Mikhailenko, Denis ;
Golovin, Alexander .
JOURNAL OF PETROLOGY, 2022, 63 (08)