Matches in SemOpenAlex for { <https://semopenalex.org/work/W3119590275> ?p ?o ?g. }
- W3119590275 abstract "Abstract To characterize the integrated magmatic processes for magma plumbing systems from mantle sources to magma chambers, we present Mg–Sr–Nd isotopic data for a representative mafic–ultramafic intrusion in Xiarihamu, northern Tibetan Plateau, China. The intrusion hosts the largest magmatic Ni–Cu sulfide deposit in an orogenic setting in the world and is composed predominantly of harzburgite, orthopyroxenite, websterite, and gabbronorite. The cumulate harzburgites have relatively low δ26Mg of orthopyroxene (–0·49 to –0·34‰) and moderately high (87Sr/86Sr)i and positive εNd(t) values (0·7067–0·7080 and +0·4 to +1·8, respectively). Most of the orthopyroxenites, websterites, and gabbronorites have slightly higher δ26Mg of orthopyroxene (–0·34 to –0·21‰) and higher (87Sr/86Sr)i and lower εNd(t) values (0·7087–0·7118 and –4·0 to –1·4, respectively) than the harzburgites. On the other hand, marginal facies (i.e. a few centimeters to meters from the contact between the intrusion and country rocks of schist, gneiss, and marble) including websterite and gabbronorite are marked by low δ26Mg of orthopyroxene (–0·44 to –0·33‰) and extremely high (87Sr/86Sr)i and negative εNd(t) values (0·7127–0·7172 and –5·4 to –4·8, respectively). The relatively low δ26Mg, moderately high (87Sr/86Sr)i, and positive εNd(t) of the harzburgites are best interpreted by inheritance from the mantle source, which was previously metasomatized by subducted Mg-rich carbonates. Given the fact that the solidus of carbonated mantle is significantly lower than that of volatile-free mantle, mantle metasomatism by carbonates may be critical to generate voluminous mafic magmas and to form the giant Xiarihamu Ni–Cu deposit and other magmatic sulfide deposits in convergent settings worldwide. The relatively high δ26Mg, high (87Sr/86Sr)i, and low εNd(t) of most orthopyroxenites, websterites, and gabbronorites were produced by extensive contamination of isotopically heavy crustal rocks in a deep-seated magma chamber. The slightly low δ26Mg, extremely high (87Sr/86Sr)i and negative εNd(t) of the marginal facies, compared with other websterites and gabbronorites, were governed by assimilation of local low-δ26Mg country rocks (e.g. gneiss and marble) at the Xiarihamu magma chamber during emplacement. These observations indicate that mafic–ultramafic cumulates away from marginal facies can preserve their primitive Mg–Sr–Nd isotope signatures inherited from deep magma chambers, even from mantle sources, with negligible crustal contamination during magma ascent and emplacement. These findings for the first time, to our knowledge, provide observational evidence to characterize the integrated magmatic processes of a single magma plumbing system from deep mantle source to magma chambers, which sheds light on the petrogenesis and mineralization of mafic–ultramafic intrusions." @default.
- W3119590275 created "2021-01-18" @default.
- W3119590275 creator A5000083972 @default.
- W3119590275 creator A5008368674 @default.
- W3119590275 creator A5011065438 @default.
- W3119590275 creator A5062195279 @default.
- W3119590275 creator A5066052605 @default.
- W3119590275 creator A5072294689 @default.
- W3119590275 creator A5080552201 @default.
- W3119590275 date "2021-01-07" @default.
- W3119590275 modified "2023-10-14" @default.
- W3119590275 title "Mg–Sr–Nd Isotopic Insights into Petrogenesis of the Xiarihamu Mafic–Ultramafic Intrusion, Northern Tibetan Plateau, China" @default.
- W3119590275 cites W1203757513 @default.
- W3119590275 cites W1670212134 @default.
- W3119590275 cites W1824013332 @default.
- W3119590275 cites W1853219909 @default.
- W3119590275 cites W1973590123 @default.
- W3119590275 cites W1976897947 @default.
- W3119590275 cites W1976953385 @default.
- W3119590275 cites W1977091278 @default.
- W3119590275 cites W1987997607 @default.
- W3119590275 cites W1993916748 @default.
- W3119590275 cites W1995079291 @default.
- W3119590275 cites W2011613029 @default.
- W3119590275 cites W2012062341 @default.
- W3119590275 cites W2017310350 @default.
- W3119590275 cites W2024230365 @default.
- W3119590275 cites W2024575502 @default.
- W3119590275 cites W2041328493 @default.
- W3119590275 cites W2047197891 @default.
- W3119590275 cites W2052228837 @default.
- W3119590275 cites W2060699743 @default.
- W3119590275 cites W2068559132 @default.
- W3119590275 cites W2069220978 @default.
- W3119590275 cites W2073990616 @default.
- W3119590275 cites W2082192342 @default.
- W3119590275 cites W2086586604 @default.
- W3119590275 cites W2095807877 @default.
- W3119590275 cites W2096082517 @default.
- W3119590275 cites W2102208697 @default.
- W3119590275 cites W2103182293 @default.
- W3119590275 cites W2110510775 @default.
- W3119590275 cites W2113785517 @default.
- W3119590275 cites W2119622666 @default.
- W3119590275 cites W2125870315 @default.
- W3119590275 cites W2133587614 @default.
- W3119590275 cites W2138150662 @default.
- W3119590275 cites W2141252509 @default.
- W3119590275 cites W2152948685 @default.
- W3119590275 cites W2163393460 @default.
- W3119590275 cites W2165603254 @default.
- W3119590275 cites W220726169 @default.
- W3119590275 cites W2261820790 @default.
- W3119590275 cites W2296689501 @default.
- W3119590275 cites W2297154002 @default.
- W3119590275 cites W2300982035 @default.
- W3119590275 cites W2376402588 @default.
- W3119590275 cites W2383171927 @default.
- W3119590275 cites W2398536598 @default.
- W3119590275 cites W2472933612 @default.
- W3119590275 cites W2495413552 @default.
- W3119590275 cites W2555955218 @default.
- W3119590275 cites W2588613439 @default.
- W3119590275 cites W2593519343 @default.
- W3119590275 cites W2603981417 @default.
- W3119590275 cites W2618499057 @default.
- W3119590275 cites W2724853380 @default.
- W3119590275 cites W2753279288 @default.
- W3119590275 cites W2755217827 @default.
- W3119590275 cites W2770539287 @default.
- W3119590275 cites W2773960655 @default.
- W3119590275 cites W2783189630 @default.
- W3119590275 cites W2789437679 @default.
- W3119590275 cites W2790432375 @default.
- W3119590275 cites W2790845744 @default.
- W3119590275 cites W2791006370 @default.
- W3119590275 cites W2794116438 @default.
- W3119590275 cites W2794401049 @default.
- W3119590275 cites W2802490163 @default.
- W3119590275 cites W2806787636 @default.
- W3119590275 cites W2821986827 @default.
- W3119590275 cites W2886785431 @default.
- W3119590275 cites W2888014389 @default.
- W3119590275 cites W2890925514 @default.
- W3119590275 cites W2892347805 @default.
- W3119590275 cites W2894485353 @default.
- W3119590275 cites W2895434890 @default.
- W3119590275 cites W2898517903 @default.
- W3119590275 cites W2899361536 @default.
- W3119590275 cites W2903066074 @default.
- W3119590275 cites W2905548949 @default.
- W3119590275 cites W2955111635 @default.
- W3119590275 cites W2969827070 @default.
- W3119590275 cites W2980487380 @default.
- W3119590275 cites W2983299027 @default.
- W3119590275 cites W2993616968 @default.
- W3119590275 cites W3014645790 @default.
- W3119590275 cites W3169117307 @default.
- W3119590275 cites W4249291178 @default.
- W3119590275 cites W638753518 @default.