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利用显微成像红外光谱法测量的大洋地壳热液蚀变及矿化随深度的模式

Hydrothermal Alteration of the Ocean Crust and Patterns in Mineralization With Depth as Measured by Micro-Imaging Infrared Spectroscopy.

作者信息

Greenberger Rebecca N, Harris Michelle, Ehlmann Bethany L, Crotteau Molly A, Kelemen Peter B, Manning Craig E, Teagle Damon A H

机构信息

Division of Geological and Planetary Sciences California Institute of Technology Pasadena CA USA.

School of Geography, Earth, and Environmental Sciences Plymouth University Plymouth UK.

出版信息

J Geophys Res Solid Earth. 2021 Aug;126(8):e2021JB021976. doi: 10.1029/2021JB021976. Epub 2021 Aug 24.

Abstract

Processes for formation, cooling, and altering Earth's ocean crust are not yet completely understood due to challenges in access and sampling. Here, we use contiguous micro-imaging infrared spectroscopy to develop complete-core maps of mineral occurrence and investigate spatial patterns in the hydrothermal alteration of 1.2 km of oceanic crust recovered from Oman Drilling Project Holes GT1A, GT2A, and GT3A drilled in the Samail Ophiolite, Oman. The imaging spectrometer shortwave infrared sensor measured reflectance of light at wavelengths 1.0-2.6 μm at 250-260 μm/pixel, resulting in >1 billion independent measurements. We map distributions of nine key primary and secondary minerals/mineral groups-clinopyroxene, amphibole, calcite, chlorite, epidote, gypsum, kaolinite/montmorillonite, prehnite, and zeolite-and find differences in their spatial occurrences and pervasiveness. Accuracy of spectral mapping of occurrence is 68%-100%, established using X-ray diffraction measurements from the core description. The sheeted dikes and gabbros of upper oceanic crust Hole GT3A show more pervasive alteration and alteration dominated by chlorite, amphibole, and epidote. The foliated/layered gabbros of GT2A from intermediate crustal depths have similarly widespread chlorite but more zeolite and little amphibole and epidote. The layered gabbros of the lower oceanic crust (GT1A) have remnant pyroxene and 2X less chlorite, but alteration is extensive within and surrounding major fault zones with widespread occurrences of amphibole. The results indicate greater distribution of higher temperature alteration minerals in the upper oceanic crust relative to deeper gabbros and highlight the importance of fault zones in hydrothermal convection in the lower ocean crust.

摘要

由于获取样本和进行采样存在挑战,地球洋壳的形成、冷却及蚀变过程尚未得到完全理解。在此,我们使用连续微成像红外光谱技术绘制矿物赋存的全岩心图谱,并研究从阿曼萨迈尔蛇绿岩中钻取的阿曼钻探项目GT1A、GT2A和GT3A孔回收的1.2千米洋壳热液蚀变的空间模式。成像光谱仪短波红外传感器在250 - 260微米/像素的波长下测量1.0 - 2.6微米光的反射率,产生了超过10亿次独立测量。我们绘制了九种关键原生和次生矿物/矿物组(单斜辉石、角闪石、方解石、绿泥石、绿帘石、石膏、高岭石/蒙脱石、葡萄石和沸石)的分布图,并发现它们在空间赋存和分布范围上的差异。利用岩心描述中的X射线衍射测量确定,矿物赋存光谱测绘的准确率为68% - 100%。大洋壳上部GT3A孔的席状岩脉和辉长岩显示出更普遍的蚀变,且蚀变以绿泥石、角闪石和绿帘石为主。来自地壳中部深度的GT2A孔的叶理状/层状辉长岩同样广泛分布着绿泥石,但沸石更多,角闪石和绿帘石较少。大洋壳下部(GT1A)的层状辉长岩有残余辉石,绿泥石含量减少一半,但在主要断层带内部及周围蚀变广泛,角闪石分布普遍。结果表明,相对于深部辉长岩,高温蚀变矿物在大洋壳上部的分布更广,并突出了断层带在大洋壳下部热液对流中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16a0/8459238/2c33dd223aae/JGRB-126-e2021JB021976-g005.jpg

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