首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Fertile abyssal peridotites within the Franciscan subduction complex, central California: Possible origin as detached remnants of oceanic fracture zones located close to a slow-spreading ridge
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Fertile abyssal peridotites within the Franciscan subduction complex, central California: Possible origin as detached remnants of oceanic fracture zones located close to a slow-spreading ridge

机译:加利福尼亚州中部方济各斯俯冲带内的深渊富橄榄岩橄榄石:可能的起源是靠近缓慢蔓延的山脊的海洋断裂带的残余残余物

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This paper describes lherzolite and harzburgite within shale-matrix melanges of the late Mesozoic Franciscan Complex at the western margin of central California. The Cr# (=Cr/(Cr+Al) atomic ratio) of spinels in the lherzolite is extremely low (0.11 to 0.13), plotting at the low Cr# end of the abyssal peridotite field, although the moderate to high Cr# of spinels in the harzburgite leaves two possible origins as forearc or abyssal peridotite. The relationships between the Fo and NiO contents of olivines, plot along the mantle olivine array and indicate the residual character of the lherzolite. A high Mg# ( = Mg/(Mg+Fe~(2+)) atomic ratio) for clinopyroxenes is one of the characteristics of the lherzolite, reflecting low-temperature Mg-Fe redistribution with olivine beneath the ocean floor at around 700 °C. The rare earth element patterns of clinopyroxenes in sampled lherzolite show simple light rare earth element-depleted patterns with flat middle and heavy rare earth elements patterns, resembling those obtained for peridotites dredged from the Vulcan Fracture Zone at the American-Antarctica Ridge. This mineral chemistry, in combination with a lack of association with gabbros and sheet-dike complexes, implies that the lherzolite and harzburgite represent fertile abyssal peridotites along oceanic fracture zones near a slow-spreading ridge; the peridotites experienced a low degree of melting during their history. This origin is in contrast to that of the Coast Range ophiolite, the most extensive ophiolitic belt in California, which formed in a supra-subduction zone setting.
机译:本文描述了加利福尼亚中部西部边缘中生代方济各会复合体的页岩-基质混杂岩中的水辉石和钙长石。锂铁矿中尖晶石的Cr#(= Cr /(Cr + Al)原子比)非常低(0.11至0.13),尽管在深部橄榄岩场的Cr#端低,但在尖晶石中的尖晶石留下了两个可能的起源,如前臂或深渊橄榄岩。橄榄石中的Fo和NiO含量之间的关系沿地幔橄榄石阵列排列,并指示了锂铁矿的残留特征。斜辉石的高Mg#(= Mg /(Mg + Fe〜(2+))原子比)是锂闪石的特征之一,反映了低温Mg-Fe在700°左右海底下橄榄石的重新分布C。取样的锂铁矿中斜辉石的稀土元素形态显示出简单的轻稀土元素贫乏形态,中,重稀土元素形态平坦,类似于从美国-南极岭的沃尔坎断裂带疏peri的橄榄岩获得的形态。这种矿物化学加上缺乏辉长岩和片状二叠氮化合物的结合,意味着锂铁矿和哈兹伯格岩代表着一条缓慢扩张的山脊附近的海洋断裂带上的肥沃深渊橄榄石。橄榄岩在其历史上经历了低程度的熔融。该成因与加州俯冲带形成的海岸带蛇绿岩(加利福尼亚州最广泛的蛇绿岩带)形成对比。

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