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The isotopic composition of hydrogen in nominally anhydrous mantle minerals

机译:标称无水地幔矿物中氢的同位素组成

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摘要

The common, nominally anhydrous minerals of the Earth's mantle are an important reservoir for hydrogen in the Earth's interior due to their ability to incorporate hydroxyl in trace quantities. We present measurements of the isotopic composition (D/H ratio) of hydrogen from upper-mantle derived garnet, enstatite and augite employing a two-step extraction procedure with infrared spectroscopic monitoring of OH removal from the samples. Raw delta D values of all samples range from -80 to -130 parts per thousand, and blank-corrected delta D of high-purity separates with <50% blank contribution to the measured gas lie in the range -92 to -113 parts per thousand. These delta D values, together with predictions of fractionation behavior from IR spectroscopic systematics, suggest that the D/H ratio of the nominally anhydrous mineral reservoir may differ from that of other mantle hydrogen in being relatively depleted in deuterium. To the extent that nominally anhydrous minerals control the distribution of water between the Earth's hydrosphere and mantle, isotopic fractionations between OH in these minerals and hydrous melts or fluids may contribute to the large D/H fractionation between the mantle and the hydrosphere. Copyright (C) 2000 Elsevier Science Ltd. [References: 61]
机译:地球地幔中常见的,名义上无水的矿物由于能够吸收微量的羟基,因此是地球内部氢的重要储层。我们目前采用两步萃取程序,通过红外光谱监测从样品中去除OH的方法,测量上地幔衍生的石榴石,顽辉石和辉长岩中氢的同位素组成(D / H比)。所有样品的原始Delta D值在-80至-130千分之范围内,空白校正后的高纯度分离物D对测量气体的空白贡献小于50%,则在-92至-113份/分之间千。这些δD值以及红外光谱系统对分馏行为的预测表明,名义上无水矿物储层的D / H比可能与其他地幔氢相比有所不同,因为氘相对贫乏。就名义上无水矿物控制着地球水圈和地幔之间水的分布而言,这些矿物中的OH与含水熔体或流体之间的同位素分馏可能会导致地幔和水圈之间的D / H大量分馏。版权所有(C)2000 Elsevier Science Ltd. [参考:61]

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