ISSN 1009-6248CN 61-1149/P 双月刊

主管单位:中国地质调查局

主办单位:中国地质调查局西安地质调查中心
中国地质学会

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    西昆仑岔路口马鞍山铜镍矿化辉长岩成因:来自元素地球化学和Sr-Nd-S同位素的制约

    Genesis of Maanshan Gabbro Associated with Crossroads Cu-Ni Mineralization in Karakoram: Constraints from Elemental Geochemistry and Sr-Nd-S Isotopes

    • 摘要: 新疆西昆仑岔路口马鞍山三叠纪镁铁–超镁铁质岩体是近年新发现的铜镍矿化点,但其岩石成因与成矿潜力尚未得到充分约束。笔者通过对马鞍山辉长岩开展系统的岩石学、全岩地球化学、Sr-Nd同位素及硫化物原位S同位素研究,旨在揭示其岩浆演化过程、源区属性、构造背景及硫饱和机制,以深化对区域岩浆–成矿规律的认识,并为找矿突破提供依据。辉长岩具有轻稀土富集、重稀土亏损的右倾型稀土配分模式,其微量元素富集Nb、Ta等高场强元素,亏损Ba、K等大离子亲石元素,与洋岛玄武岩(OIB)一致。辉长岩具有较高的(Th/Yb)PM(1.35~7.10)和较低的Ce/Pb(10.74~22.51)、Nb/Ta(12.27~16.05)值,表明其经历了地壳混染;MgO与Cr和Ni呈正相关关系,表明岩浆演化过程中存在橄榄石和单斜辉石的分离结晶。辉长岩的全岩(87Sr/86Sr)i值为0.703500.70358εNd(t)值为+5.0~+5.5,具有强烈的亏损特征,其较低的La/Nb(0.80~1.17)、La/Ta(10.3~14.6)、Dy/Yb(2.16~2.43)值,指示其岩浆源区为以橄榄岩为主的亏损软流圈地幔。马鞍山辉长岩具有正的δNb值(0.13~0.14)及高地幔潜能温度(Tp=15741616 ℃)。结合区内发育的基性岩浆活动及深海相火山–沉积序列,认为马鞍山辉长岩与地幔柱构造背景形成的洋岛–海山玄武岩相似。辉长岩中浸染状黄铁矿和黄铜矿的δ34S值分别为+3.27‰~+4.23‰和−3.59‰~−2.06‰,偏离地幔硫范围,指示地壳混染是导致硫饱和和硫化物熔离的主要机制。马鞍山岩体地表镍华及辉长岩偏低的M/F值(0.94~1.15),共同指示岩体深部具备一定的找矿前景,仍需进一步勘查。

       

      Abstract: The Triassic mafic-ultramafic complex at Maanshan in the Chalukou area of the West Kunlun, Xinjiang, represents a recently discovered copper-nickel mineralization occurrence. However, its petrogenesis and ore-forming potential remain poorly constrained. This study conducts systematic petrographic, whole-rock geochemical, Sr-Nd isotopic, and in situ sulfur isotopic analyses of sulfide minerals from the Maanshan gabbro, aiming to reveal its magmatic evolution, source characteristics, tectonic setting, and sulfur saturation mechanisms, thereby enhancing the understanding of regional magmatism and mineralization processes and providing insights for prospecting breakthroughs. The gabbro exhibits right-inclined chondrite-normalized rare earth element patterns with light rare earth element enrichment and heavy rare earth element depletion. Its trace element signatures show enrichment in high field strength elements (e.g., Nb, Ta) and depletion in large ion lithophile elements (e.g., Ba, K), consistent with ocean island basalt (OIB) affinities. Elevated (Th/Yb)PM ratios (1.35–7.10) and low ratios of Ce/Pb (10.74–22.51), and Nb/Ta (12.27–16.05) indicate significant crustal contamination. Positive correlations between MgO and Cr/Ni suggest fractional crystallization of olivine and clinopyroxene during magmatic evolution. Whole-rock initial (87Sr/86Sr)i ratios range from 0.70350 to 0.70358, with εNd(t) values of +5.0 to +5.5, reflecting a strongly depleted mantle source. Low ratios of La/Nb (0.80–1.17), La/Ta (10.3–14.6), and Dy/Yb (2.16–2.43) further suggest that the primary magma was derived from a depleted asthenospheric mantle dominated by peridotite. Positive δNb values (0.13~0.14) and high mantle potential temperatures (Tp = 15741616 °C) of the Maanshan gabbro, combined with regional basaltic magmatism and deep-marine volcanic-sedimentary sequences, support a tectonic setting related to mantle plume activity, analogous to ocean island-seamount basalts. In situ δ34S values of disseminated pyrite and chalcopyrite range from +3.27‰ to +4.23‰ and –3.59‰ to –2.06‰, respectively, deviating from typical mantle sulfur values and indicating that crustal contamination was the primary mechanism triggering sulfur saturation and sulfide segregation. The occurrence of surface annabergite together with the relatively low M/F ratio (0.94–1.15) of the gabbro in the Maanshan intrusion suggests favorable prospecting potential at depth, warranting further exploration.

       

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