Matches in SemOpenAlex for { <https://semopenalex.org/work/W3091897375> ?p ?o ?g. }
- W3091897375 endingPage "105822" @default.
- W3091897375 startingPage "105822" @default.
- W3091897375 abstract "Petrological observations and in situ major and trace element and Sr isotopic data for spinel-facies harzburgite and lherzolite xenoliths from the Siziwangqi region provide constraints on the nature and evolution of the lithospheric mantle beneath the northwestern North China Craton (NCC). These peridotites can be divided into high-Mg# peridotites (Fo > 91) and low-Mg# peridotites (Fo < 91), according to olivine forsterite (Fo) contents. The high-Mg# peridotites are harzburgites, which are characterized by high Mg# (91.0–91.8), as well as low CaO (0.41–1.17 wt%) and Al2O3 (0.62–2.03 wt%) contents. The clinopyroxenes have light rare earth element (LREE) depleted to slightly enriched patterns, and variable but dominantly radiogenic Sr isotopic compositions (0.7031–0.7053). These features indicate that the high-Mg# peridotites are remnants of Archean–Paleoproterozoic refractory lithospheric mantle, which then experienced variable refertilization. In contrast, the low-Mg# peridotites are mainly lherzolites and minor harzburgites, which have low Mg# (89.2–90.9), and high CaO (0.98–3.53 wt%) and Al2O3 (1.38–3.85 wt%) contents, relative to the high-Mg# peridotites. The clinopyroxenes in low-Mg# peridotites have similar REE patterns as those in the high-Mg# peridotites, and some grains show increasing LREE contents from core to rim. These clinopyroxenes have relatively depleted Sr isotopic compositions (0.7021–0.7045). The low-Mg# peridotites are interpreted to be the reaction products of high-Mg# peridotites and asthenospheric melts. The lithospheric mantle beneath the Siziwangqi region experienced an earlier metasomatic event related to subduction of Paleo-Asian oceanic materials, as evidenced by the relatively high 87Sr/86Sr ratios (up to 0.7053) and depletion of Rb, Ba, Pb, Nb and Ta in clinopyroxenes. The clinopyroxenes in both high- and low-Mg# peridotites have low (La/Yb)N and high Ti/Eu ratios, positive correlations between 87Sr/86Sr and Mg# and Ca/Al, negative correlations between 87Sr/86Sr and Na2O, TiO2, Ti/Eu, and Σ(middle REEs + heavy REEs), and decreasing 87Sr/86Sr ratios from core to rim. These observations imply that the lithospheric mantle beneath the Siziwangqi region experienced later multi-stage refertilization by asthenospheric melts. Therefore, we conclude that the lithospheric mantle beneath the northwestern NCC has been comprehensively refertilized by multiple stages of peridotite–melt reactions, similar to the northern margin of the NCC, which had a significant role in the transformation of the lithospheric mantle." @default.
- W3091897375 created "2020-10-15" @default.
- W3091897375 creator A5048914558 @default.
- W3091897375 creator A5079795759 @default.
- W3091897375 creator A5088526745 @default.
- W3091897375 date "2021-01-01" @default.
- W3091897375 modified "2023-10-10" @default.
- W3091897375 title "Comprehensive refertilization of the Archean–Paleoproterozoic lithospheric mantle beneath the northwestern North China Craton: Evidence from in situ Sr isotopes of the Siziwangqi peridotites" @default.
- W3091897375 cites W1534749586 @default.
- W3091897375 cites W1587624588 @default.
- W3091897375 cites W1964175282 @default.
- W3091897375 cites W1969859799 @default.
- W3091897375 cites W1974796447 @default.
- W3091897375 cites W1980640006 @default.
- W3091897375 cites W1983410499 @default.
- W3091897375 cites W1984191236 @default.
- W3091897375 cites W1984787349 @default.
- W3091897375 cites W1988694196 @default.
- W3091897375 cites W1989767253 @default.
- W3091897375 cites W1989945922 @default.
- W3091897375 cites W1996374211 @default.
- W3091897375 cites W2000488266 @default.
- W3091897375 cites W2002471053 @default.
- W3091897375 cites W2007551255 @default.
- W3091897375 cites W2015396785 @default.
- W3091897375 cites W2016893657 @default.
- W3091897375 cites W2017577740 @default.
- W3091897375 cites W2018053992 @default.
- W3091897375 cites W2020731243 @default.
- W3091897375 cites W2024364472 @default.
- W3091897375 cites W2024674080 @default.
- W3091897375 cites W2029566730 @default.
- W3091897375 cites W2030540205 @default.
- W3091897375 cites W2031702156 @default.
- W3091897375 cites W2043003723 @default.
- W3091897375 cites W2046653975 @default.
- W3091897375 cites W2049120158 @default.
- W3091897375 cites W2052473341 @default.
- W3091897375 cites W2056207362 @default.
- W3091897375 cites W2061359484 @default.
- W3091897375 cites W2071146989 @default.
- W3091897375 cites W2072203934 @default.
- W3091897375 cites W2076144377 @default.
- W3091897375 cites W2076399670 @default.
- W3091897375 cites W2077080626 @default.
- W3091897375 cites W2078077048 @default.
- W3091897375 cites W2079276672 @default.
- W3091897375 cites W2088524847 @default.
- W3091897375 cites W2090453985 @default.
- W3091897375 cites W2095519914 @default.
- W3091897375 cites W2101476315 @default.
- W3091897375 cites W2103490462 @default.
- W3091897375 cites W2106918691 @default.
- W3091897375 cites W2115970646 @default.
- W3091897375 cites W2118929041 @default.
- W3091897375 cites W2120940335 @default.
- W3091897375 cites W2123985829 @default.
- W3091897375 cites W2127559886 @default.
- W3091897375 cites W2130869872 @default.
- W3091897375 cites W2133042542 @default.
- W3091897375 cites W2135251040 @default.
- W3091897375 cites W2135908593 @default.
- W3091897375 cites W2138093481 @default.
- W3091897375 cites W2139696801 @default.
- W3091897375 cites W2142986621 @default.
- W3091897375 cites W2148876776 @default.
- W3091897375 cites W2162334444 @default.
- W3091897375 cites W2163309719 @default.
- W3091897375 cites W2166901676 @default.
- W3091897375 cites W2167856052 @default.
- W3091897375 cites W2169278971 @default.
- W3091897375 cites W2170555492 @default.
- W3091897375 cites W2312931780 @default.
- W3091897375 cites W2508500643 @default.
- W3091897375 cites W2522863789 @default.
- W3091897375 cites W2591908179 @default.
- W3091897375 cites W2742190341 @default.
- W3091897375 cites W2776428950 @default.
- W3091897375 cites W2908650998 @default.
- W3091897375 cites W2950220829 @default.
- W3091897375 cites W3012893455 @default.
- W3091897375 cites W4245638129 @default.
- W3091897375 doi "https://doi.org/10.1016/j.lithos.2020.105822" @default.
- W3091897375 hasPublicationYear "2021" @default.
- W3091897375 type Work @default.
- W3091897375 sameAs 3091897375 @default.
- W3091897375 citedByCount "2" @default.
- W3091897375 countsByYear W30918973752021 @default.
- W3091897375 countsByYear W30918973752022 @default.
- W3091897375 crossrefType "journal-article" @default.
- W3091897375 hasAuthorship W3091897375A5048914558 @default.
- W3091897375 hasAuthorship W3091897375A5079795759 @default.
- W3091897375 hasAuthorship W3091897375A5088526745 @default.
- W3091897375 hasConcept C127313418 @default.
- W3091897375 hasConcept C147717901 @default.
- W3091897375 hasConcept C149347711 @default.
- W3091897375 hasConcept C151730666 @default.
- W3091897375 hasConcept C167919410 @default.