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Mantle melting beneath Gakkel Ridge (Arctic Ocean): abyssal peridotite spinel compositions

机译:Gakkel山脊(北冰洋)之下的地幔融化:深渊橄榄岩尖晶石成分

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摘要

The ultraslow spreading Gakk-el Ridge represents one of the most extreme spreading environments on the Earth. Full spreading rates there of 0.6-1.3 cm/year and Na-8.0 in basalts of 3.3 imply an extremely low degree of mantle partial melting. For this reason, the complementary degree of melting registered by abyssal peridotite melting residues is highly interesting. In a single sample of serpentinized peridotite from Gakkel Ridge, we found spinels which, though locally altered, have otherwise unzoned and thus primary compositions in the cores of the grains. These reflect a somewhat higher degree of melting of the uppermost oceanic mantle than indicated by basalt compositions. Cr/(Cr + Al) ratios of these grains lie between 0.23 and 0.24, which is significantly higher than spinels from peridotites collected along the faster spreading Mid-Atlantic and Southwest Indian Ridges. Crustal thickness at Gakkel Ridge can be calculated from the peridotite spinel compositions, and is thicker than the crustal thickness of less than 4 km estimated from gravity data, or predicted from global correlations between spreading rate and seismically determined crustal thickness. The reason for this unexpected result may be local heterogeneity due to enhanced melt focussing at an ultraslow spreading ridge. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 34]
机译:极慢的Gakk-el山脊扩散代表了地球上最极端的扩散环境之一。那里的完全铺展速率为0.6-1.3厘米/年,而玄武岩中的Na-8.0为3.3,意味着地幔部分熔融的程度极低。因此,深海橄榄岩熔融残余物所记录的互补熔融度是非常令人感兴趣的。在来自Gakkel Ridge的蛇纹石橄榄岩的单个样品中,我们发现了尖晶石,尽管局部改变了,否则它们没有进行分区,因此是谷物核心的主要成分。这些反映出最上层海洋地幔的融化程度比玄武岩成分所表明的要高。这些晶粒的Cr /(Cr + Al)比在0.23至0.24之间,大大高于沿中大西洋和西南印第安脊扩散较快的橄榄岩中的尖晶石所产生的尖晶石。 Gakkel山脊的地壳厚度可以根据橄榄岩尖晶石成分计算得出,其厚度要比重力数据估计的地壳厚度(小于4 km)或根据扩展速率与地震确定的地壳厚度之间的整体相关性预测的地壳厚度厚。产生这种意外结果的原因可能是由于在超慢扩散脊处熔体聚焦增强而导致的局部异质性。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:34]

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