首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Gossan Hill, Victoria Island, Northwest Territories: An analogue for mine waste reactions within permafrost and implication for the subsurface mineralogy of Mars
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Gossan Hill, Victoria Island, Northwest Territories: An analogue for mine waste reactions within permafrost and implication for the subsurface mineralogy of Mars

机译:西北地区,维多利亚岛,戈桑山:多年冻土中矿山废物反应的类似物,对火星的地下矿物学有影响

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Gossan Hill is located within the Minto Inlier in central Victoria Island, Northwest Territories (N 71.36697 degrees, W 114.95155 degrees). A study of the mineralogical associations and geological setting of this deposit indicates that it is an arrested hydrothermal system frozen in permafrost. From above, the hill stands out because of the topographic relief of 75 m and the orange-brown color of the surficial material. The surface of the hill is marked by areas of concentric color zonation up to 3 m across, with light gray centers surrounded by a yellow-orange ring that is surrounded by an orange-brown color that covers the rest of the surface of the hill. Trenches dug into these areas reveal that the central zone contains quartz and pyrite +/- native sulfur in a loose aggregate of sand-sized grains. This central area is surrounded by a zone dominated by gypsum and quartz with some jarosite. Beyond this, the surrounding surface consists of quartz, hematite, and amorphous iron oxides. The radial arrangement of the mineral assemblage indicates an increase in oxidation of sulfur from the center outward. Analysis of isotopic composition of the sulfur indicates the source of sulfur could be the underlying strata. The hill is underlain by inter-bedded carbonate and sulfate-evaporite sedimentary rocks of the Kilian formation in the upper part of the Neoproterozoic Shaler Super group. The sedimentary rocks were intruded by diabase sills of the 720 Ma Franklin igneous event, which crop out 2 km to the south of Gossan Hill. The soft friable nature of the deposit and the topographic relief of the hill indicate a post-glacial (Pleistocene) age of formation. Permafrost has maintained the disequilibrium mineral assemblage since the cessation of fluid flow. Extraction of the permafrost ice from the central zone yields a liquid with a pH of 23. The observed long-term persistence of pyrite encased within the acidic permafrost indicates that oxidation and dissolution reactions common in mine waste are slowed, if not stopped, in such an environment. The predicted rise of Arctic temperatures will cause the active layer to move deeper and result in the release of the acidic solutions frozen in the permafrost. Water ice or frozen CO2 just below the Martian surface would also preserve such mineral disequilibrium for very long periods of time. No region exists on Earth where ice has existed continuously for millions of years, but the Gossan Hill deposit is an excellent terrestrial analogue. On Mars, the subsurface ice may be very old. Ancient reactive Martian mineral assemblages and the fluids associated with them will reflect conditions that existed in the past. (C) 2014 Elsevier B.V.
机译:戈桑山(Gossan Hill)位于西北地区维多利亚岛中部的Minto Inlier(北71.36697度,西114.95155度)。对该矿床的矿物学联系和地质环境的研究表明,它是冻结在多年冻土中的滞留热液系统。从上方看,这座山因75 m的地形起伏和表面材料的橙棕色而引人注目。山丘的表面具有多达3 m的同心颜色分区区域,浅灰色的中心被橙黄色的环包围,橙色的环被橙棕色包围,覆盖了山丘的其余部分。在这些区域挖出的沟槽显示出,中央区域包含石英和黄铁矿+/-天然硫,它们散布在沙子大小的颗粒中。这个中心区域被一个以石膏和石英以及一些黄钾铁矾为主的区域围绕着。除此之外,周围的表面还包括石英,赤铁矿和非晶态氧化铁。矿物集合的径向排列表明,从中心向外的硫的氧化增加。硫同位素组成的分析表明,硫的来源可能是潜在的地层。该山被新元古代Shaler Super组上部的Kilian层间碳酸盐岩和硫酸盐-蒸发岩互层沉积所覆盖。 720 Ma Franklin火成岩事件的辉绿岩基岩侵入了沉积岩,该岩基生长在Gossan Hill以南2公里处。沉积物的柔软易碎性质和山丘的地形起伏表明了冰川后(更新世)的形成年龄。自从流体流动停止以来,多年冻土层就保持了不平衡的矿物组合。从中心区提取永久冻土的冰,得到的液体的pH值为23。观察到,长期包裹在酸性永久冻土中的黄铁矿的持续存在表明,在这种情况下,矿山废料中常见的氧化和溶解反应会减慢(如果不停止的话)。一个环境。预计的北极温度升高将导致活性层移动得更深,并导致冻结在永久冻土中的酸性溶液释放出来。刚好在火星表面以下的水冰或冻结的二氧化碳也会在很长一段时间内保持这种矿物不平衡。地球上没有冰连续存在了几百万年的地区,但是Gossan Hill矿床是极好的陆地类似物。在火星上,地下冰块可能非常古老。古代反应性火星矿物组合及其相关的流体将反映过去存在的条件。 (C)2014 Elsevier B.V.

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