变质黑色页岩的区域地球化学变化——美国缅因州志留系斯莫尔斯瀑布组的调查研究

IF 1.2 4区 地球科学 Q2 GEOLOGY
J. Slack, M. R. V. Baalen, D. Reusch
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引用次数: 1

摘要

摘要对美国缅因州志留系小瀑布组21个硫化物黑色千层岩和片岩样品进行了地球化学勘查研究,以评价其在区域变质作用过程中的成分变化。这些样品代表不同变质的黑色页岩。分析的样品来自缅因州北部的绿泥石带和缅因州中西部的黑云母、石榴石和星黄石-红柱石带。小瀑布组地层的特点是含有丰富的黄铁矿和/或磁黄铁矿(总S = 1.2 ~ 9.7 wt%),但只有少量的有机质或石墨(TOC = 0.43 ~ 1.85 wt%);TOC/S比值均较低(平均= 0.37±0.22)。通过将每个样品中的Ti浓度归一化到全球黑色页岩的Ti归一化中值组成,计算每种元素的富集系数中值。在绿泥石带中,V、Cr、Cu、Ni、Zn、Pb、Sb、U等元素的富集因子显著降低(-23.1 ~ -49.8%),这主要是由于沉积过程中的各种因素和成岩过程中的可变元素迁移所致。随着变质品位的增加(黑云母-星黄石-红珠石带),Ba、Sb、Au和U的系统性从小到大的降低(-14.5 ~ -99.0%),V和As的系统性从中到大的降低(-35.4 ~ -61.1%)。从石榴石到星黄石—红柱石带,钼含量急剧下降(-94.7%)。除Ba外,这些结果主要反映了黄铁矿再结晶、有机质向石墨、黄铁矿向磁黄铁矿变质过程中微量元素的迁移率。黑云母-星黄石-红珠石带Rb(+28.1 ~ +61.5%)和Th(+39.1 ~ +47.3%)的中~大增幅可能分别记录了变质过程中碱的引入和质量损失。石榴石带同一地点的三个样品具有异常高的Fe/Al和低的La/Yb比值,这归因于黄铁矿的表观成因以及在同变质、通道化流体流动过程中轻稀土元素的浸出。地质和地球化学资料表明,小瀑布组地层形成于中缅因盆地西北侧缺氧期,其碎屑来源包括演化的大陆弧。缺氧的发生与盆地东南侧Vassalboro群五月花山组的沉积相一致,与Brunswick俯冲杂岩的出现有关。我们认为,这种出现通过随后的盆地闭合促进了横向和垂直环流变化、养分负荷和脱氧,最终导致阿卡迪亚变形和变质作用。根据我们的小瀑布样本中相对较高的总硫含量,黑海的沉积物代表了现代亚氧至缺氧盆地中唯一已知的合理候选。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regional geochemical variations in a metamorphosed black shale: a reconnaissance study of the Silurian Smalls Falls Formation, Maine, USA
A reconnaissance geochemical study of 21 samples of sulphidic black phyllite and schist from the Silurian Smalls Falls Formation in Maine was undertaken in order to evaluate compositional changes during regional metamorphism. These samples represent variably metamorphosed black shale. Analyzed samples come from the chlorite zone in northern Maine and the biotite, garnet, and staurolite-andalusite zones in west-central Maine. Strata of the Smalls Falls Formation are distinctive in containing abundant pyrite and/or pyrrhotite (total S = 1.2–9.7 wt%), but only minor organic matter or graphite (TOC = 0.43–1.85 wt%); TOC/S ratios are uniformly low (average = 0.37 ± 0.22). Median enrichment factors were calculated for each element by normalizing the concentration to Ti in each sample to the Ti-normalized median composition of global black shale. In the chlorite zone, moderate to large decreases in enrichment factors (-23.1 to -49.8%) are evident for V, Cr, Cu, Ni, Zn, Pb, Sb, and U, attributed here to various factors during sedimentation plus variable element mobility during diagenesis. With increasing metamorphic grade (biotite through staurolite-andalusite zones), systematic small to extreme decreases (-14.5 to -99.0%) were found for Ba, Sb, Au, and U, together with less-systematic moderate to large decreases (-35.4 to -61.1%) for V and As. Molybdenum shows an extreme decrease (-94.7%) from the garnet to staurolite-andalusite zones. Excluding Ba, these results are interpreted to mainly reflect mobility of trace elements during pyrite recrystallization, and during the metamorphic transformations of organic matter to graphite and of pyrite to pyrrhotite. Moderate to large increases for Rb (+28.1 to +61.5%) and Th (+39.1 to +47.3%) from the biotite to staurolite-andalusite zones likely record the introduction of alkalis and mass loss, respectively, during metamorphism. Three samples from one site in the garnet zone differ in having anomalously high Fe/Al and low La/Yb ratios, attributed here to epigenetic formation of pyrite and related leaching of light rare earth elements during syn-metamorphic, channelized fluid flow.Geologic and geochemical data indicate that strata of the Smalls Falls Formation were deposited during an interval of anoxia on the northwestern flank of the Central Maine Basin, for which detrital sources included an evolved continental arc. Onset of anoxia coincided with deposition of the Mayflower Hill Formation of the Vassalboro Group, on the basin’s southeastern flank, related to emergence of the Brunswick subduction complex. We suggest that this emergence played a role in promoting both lateral and vertical circulation changes, nutrient loading, and deoxygenation through subsequent basin closure that culminated with Acadian deformation and metamorphism. Based on the relatively high contents of total sulphur present in our Smalls Falls samples, sediments in the Black Sea represent the only known plausible candidate among those in modern suboxic to euxinic basins.
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来源期刊
Atlantic Geology
Atlantic Geology GEOLOGY-
CiteScore
2.10
自引率
18.80%
发文量
0
审稿时长
>12 weeks
期刊介绍: Atlantic Geology (originally Maritime Sediments, subsequently Maritime Sediments and Atlantic Geology) covers all aspects of the geology of the North Atlantic region. It publishes papers, notes, and discussions on original research and review papers, where appropriate to the regional geology.
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