地质学
地幔(地质学)
弧前
过渡带
地球化学
铬铁矿
蛇绿岩
部分熔融
橄榄岩
铬铁矿
岩石圈
尖晶石
大洋中脊
地幔楔
岩石学
熔融包裹体
软流圈
热点(地质)
大洋地壳
山体
不平衡
残渣
玄武岩
橄榄石
作者
Peng Gao,Jingsui Yang,Osman Parlak,史仁灯,Dongyang Lian,Pengjie Cai
标识
DOI:10.1111/1755-6724.70086
摘要
ABSTRACT Ophiolitic chromitites are critical archives of mantle melt transport and ore formation in supra‐subduction zone (SSZ) settings, occurring as two distinct ore styles: mantle‐hosted podiform and crust–mantle transition zone (CMTZ)‐hosted stratiform‐like orebodies. However, their genetic linkage remains poorly constrained. The Bursa ophiolite, northwestern Turkey, exposes complementary levels of a single oceanic lithospheric mantle section across the Harmancik and Orhaneli massifs, enabling forearc melt evolution to be traced from deep mantle reaction channels to shallow CMTZ melt‐focusing systems. Harmancik comprises fertile lherzolites recording 6%–13% partial melting and refractory harzburgites recording 15%–20% melting, both overprinted by migrating forearc melts and associated with replacive dunite channels and podiform chromitites. In contrast, Orhaneli exposes CMTZ dunite–chromitite assemblages and ultramafic–mafic cumulates, recording shallow melt focusing, magmatic differentiation, and in situ crystal accumulation. These observations suggest that the Bursa chromitites represent a vertically linked ore‐forming system in which mantle‐hosted podiform chromitites formed in reaction channels, whereas CMTZ‐hosted stratiform‐like chromitites formed during upward melt focusing, differentiation, fractional crystallisation, cumulus processes, and multistage melt percolation.
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