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Physiochemical Restrictions of Mineral Zoning of Sediment-Hosted Stratiform Copper Deposit in SW China

机译:SW中国沉积物宿主层状铜矿矿床矿区的理化限制

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摘要

The Chuxiong basin, located in southwest China, is well known as a mineralization area of red-bed type copper deposits in China. These deposits are characterized by mineral zoning, which is especially true for the Dayao deposits. The mineral zoning is consistent for both horizontal and vertical zoning; from the base (center) of the ore body to the top (outermost), the mineral zones are from hematite, chalcocite, chalcocite + bornite, and bornite + chalcopyrite to pyrite. We studied the mineral zoning in detail using a thermodynamic phase diagram method, such as log⁡fO2-log⁡fS2, pH-log⁡fO2, and pH-Eh, and discussed the constraints on the order of the minerals precipitation under different physiochemical conditions. It is indicated that changes in temperature have little effect on pH and Eh in the formation of minerals. S2− is stable only below 473 K, and the forming temperature of chalcocite must be below 473 K. In this paper, we also explain the mineral zoning formation mechanism and propose that the main controlling factor of mineral zoning is pH. Because this mineral zoning is widespread in sediment-hosted deposits, studies on this mechanism can considerably promote better understanding of the genesis of ore deposits in order to guide the exploration.
机译:位于中国西南部的Chuxiong盆地是众所周知的中国红床型铜矿的矿化区。这些沉积物的特征在于矿物分区,尤其适用于大涛沉积物。矿物分区是水平和垂直分区的一致;从矿体的基础(中心)到顶部(最外面),矿泉水区是从赤铁矿,核,核氯钴+铁矿石,并向铜矿+黄铁矿。我们使用热力学相图方法详细研究了矿物分区,例如Log = Fo2-log =FS2,pH-Log = FO 2和PH-EH,并在不同的物理化条件下讨论了矿物质降水量的约束。结果表明,温度变化对矿物质形成的pH和EH几乎没有影响。 S2-仅稳定在473 k以下,Chalocite的成形温度必须低于473K。在本文中,我们还解释了矿物分区形成机制,并提出了矿物分区的主要控制因子是pH。因为这种矿物分区在沉积物托管沉积物中普及,所以对该机制的研究可以大大促进更好地了解矿床的成因,以指导勘探。

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