The Longest Conductivity Anomaly in the World Explained: Sulphides in Fold Hinges Causing Very High Electrical Anisotropy

A. Jones, T. Katsube, P. Schwann
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引用次数: 84

Abstract

After almost three decades of study, from its initial discovery in the 1960s to laboratory analyses of rock samples last year, we can now identify the most probable cause of the North American Central Plains (NACP) conductivity anomaly for much of its 1, 500-km strike extent. Tectonic processes operating during Paleoproterozoic Trans-Hudson orogenesis, with closure of the 5, 000-km-wide Manikewan ocean, included subduction and compression of sediments deposited during a hiatus in volcanism as the first of the advancing arcs approached the Archean continental margin to the west (Wyoming and Rae/Hearne cratons). These sediments were folded, and syngenetic sulphides within them migrated to concentrate along fold hinges, preferentially along strike, leading to high anisotropy in electrical conductivity (over 2-3 orders of magnitude). Mapping of the anomaly in similar tectonic environments, from the southern Dakotas to northern Manitoba, suggests that these processes were active along the whole western and northern margin of the orogen. However, other processes, possibly invoking graphitic emplacement in a foredeep, more likely account for the southern terminus of the anomaly from the Black Hills to southeastern Wyoming.
世界上最长的电导率异常解释:褶皱铰链中的硫化物导致极高的电各向异性
经过近三十年的研究,从 20 世纪 60 年代首次发现到去年对岩石样本进行实验室分析,我们现在可以确定北美中央平原(NACP)在其 1,500 公里走向范围内大部分地区电导率异常的最可能原因。在古近纪跨哈德逊造山运动期间,随着 5,000 公里宽的马尼凯万洋的关闭,构造过程包括火山活动中断期间沉积的沉积物的俯冲和压缩,当时第一个推进弧接近西部的阿新世大陆边缘(怀俄明和雷恩/赫恩火山口)。这些沉积物被褶皱,其中的合成硫化物沿着褶皱铰链迁移集中,优先沿着走向,导致电导率的高度各向异性(超过 2-3 个数量级)。从达科他州南部到马尼托巴省北部的类似构造环境中绘制的异常图显示,这些过程在整个造山带的西缘和北缘都很活跃。然而,从黑山到怀俄明州东南部的异常南端更有可能是其他过程造成的,可能是前深部的石墨成矿作用。
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