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THE MIXING HYPOTHESIS AND THE ORIGIN OF MISSISSIPPI VALLEY-TYPE ORE DEPOSITS

机译:密西西比河谷型矿床的混合假说和成因

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摘要

Anderson (1991) proposed that methane generated from the heating of kerogen in the wall rocks of Mississippi Valley-type (MVT) deposits diffuses into the ore zone, reducing sulfate and precipitating the ore minerals. This hypothesis has been tested by calculating the diffusion of methane from wall rock into a flowing solution at 150°C. Methane pressures in the ore zone quickly reach a steady state which depends on the assumed methane pressure in the wall rock and the flow velocity. Calculated methane pressures in the ore solution are not sufficient to generate a gas phase, but other dissolved gases such as CO2 may contribute sufficiently to make this happen. Sulfate reduction and sulfide precipitation will occur whether or not a gas phase forms, but many MVT ores have a tabular form or are located in the upper part of breccias, suggesting that there was a gas phase control. Recent experimental results (Chou and Burruss, 2007) offer an explanation for the fact that very light carbon isotopes are not commonly found in MVT deposits. The main obstacles to further development of these ideas is our lack of understanding of the thermochemical sulfate reduction reaction and the fact that little attention has been paid to possible sources of methane in the vicinity of ore deposits.
机译:Anderson(1991)提出,密西西比河谷型(MVT) 壁岩中干酪根的加热 沉积产生的甲烷扩散进入矿石区,减少了硫酸盐的沉淀。 矿石。通过计算 甲烷在150°C下从围岩扩散到流动溶液 中,验证了该假设。矿层中的甲烷压力迅速达到 稳态,这取决于围岩中的甲烷压力 和流速。矿石溶液中计算出的甲烷压力 不足以产生气相, ,但其他溶解气体(如CO 2 )可能会产生足够的 即可实现。无论是否形成气相,都会发生硫酸盐还原和硫化物沉淀 ,但是许多MVT矿石 呈板状或位于角砾岩的上部, 表示存在气相控制。最近的实验结果(Chou和Burruss,2007年)为事实提供了解释,即在MVT矿床中不经常发现非常轻的碳同位素。 这些思想进一步发展的主要障碍是我们对热化学硫酸盐还原反应的缺乏了解,以及人们很少关注 的事实。 矿床附近的甲烷的可能来源。

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  • 来源
    《Economic Geology》 |2008年第8期|1683-1690|共8页
  • 作者

    G. M. Anderson;

  • 作者单位

    Department of Geology, University of Toronto, Toronto, Ontario, Canada M5S 3B1;

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  • 正文语种 eng
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