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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Evidence for pervasive mud volcanism in Acidalia Planitia, Mars
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Evidence for pervasive mud volcanism in Acidalia Planitia, Mars

机译:火星Acidalia Planitia中普遍存在的泥火山作用的证据

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We have mapped 18,000+ circular mounds in a portion of southern Acidalia Planitia using their sizes, shapes, and responses in Nighttime IR. We estimate that 40,000+ of these features could occur in the area, with a distribution generally corresponding to the southern half of the proposed Acidalia impact basin. The mounds have average diameters of about 1. km and relief up to 180. m and most overlie units mapped as Early Amazonian.High resolution images of mound surfaces show relatively smooth veneers, apron-like extensions onto the plains, moats, and concentric circular crestal structures. Some images show lobate and flow-like features associated with the mounds. Albedo of the mounds is generally higher than that of the surrounding plains. Visible and near-infrared spectra suggest that the mounds and plains have subtle mineralogical differences, with the mounds having enhanced coatings or possibly greater quantities of crystalline ferric oxides.Multiple analogs for these structures were assessed in light of new orbital data and regional mapping. Mud volcanism is the closest terrestrial analogy, though the process in Acidalia would have had distinctly martian attributes. This interpretation is supported by the geologic setting of the Acidalia which sits at the distal end of the Chryse-Acidalia embayment into which large quantities of sediments were deposited through the Hesperian outflow channels. In its distal position, Acidalia would have been a depocenter for accumulation of mud and fluids from outflow sedimentation.Thus, the profusion of mounds in Acidalia is likely to be a consequence of this basin's unique geologic setting. Basinwide mud eruption may be attributable to overpressure (developed in response to rapid outflow deposition) perhaps aided by regional triggers for fluid expulsion related to events such as tectonic or hydrothermal pulses, destabilization of clathrates, or sublimation of a frozen body of water. Significant release of gas may have been involved, and the extensive mud volcanism could have created long-lived conduits for upwelling groundwaters, providing potential habitats for an in situ microbiota.Mud volcanism transports minimally-altered materials from depth to the surface, and mud volcanoes in Acidalia, therefore, could provide access to samples from deep zones that would otherwise be inaccessible. Since the distal setting of Acidalia also would favor concentration and preservation of potentially-present organic materials, samples brought to the surface by mud volcanism could include biosignatures of possible past or even present life. Accordingly, the mounds of Acidalia may offer a new class of exploration target.
机译:我们使用夜红外图的大小,形状和响应,在南部Acidalia Planitia的一部分中绘制了18,000多个圆形丘。我们估计该地区可能会出现40,000+个这些特征,其分布通常对应于拟建的Acidalia影响盆地的南半部。土墩的平均直径约为1. km,起伏最大可达180. m,大多数覆盖单位映射为早期亚马逊河。土墩表面的高分辨率图像显示出相对平滑的贴面,围裙状延伸到平原,护城河和同心圆上地壳结构。一些图像显示了与丘有关的叶状和类似流动的特征。丘的反照率通常高于周围平原的反照率。可见和近红外光谱表明,土丘和平原具有微妙的矿物学差异,土丘具有增强的涂层或可能含有更多的结晶三氧化二铁,并根据新的轨道数据和区域图对这些结构的多个类似物进行了评估。泥火山是最接近地球的类比,尽管在酸利亚的过程具有明显的火星属性。这种解释得到了Acidalia地质环境的支持,该环境位于Chryse-Acidalia通道的远端,大量的沉积物通过Hesperian流出通道沉积在其中。在其远端位置,Acidalia可能是流出沉淀物堆积的泥浆和流体的沉积中心。因此,Acidalia的丘陵堆积可能是该盆地独特的地质环境的结果。全盆地的泥浆喷发可能归因于超压(响应快速流出的沉积物而形成),这可能是由于与构造或热液脉动,包合物失稳或冰冻水体升华等事件有关的流体驱逐的区域性触发因素。可能涉及大量的气体释放,广泛的泥火山活动可能为上升的地下水创造了长寿命的管道,为原位微生物群落提供了潜在的栖息地。泥火山活动将改变最小的物质从深度输送到地表和泥火山因此,在Acidalia中,可以从深处获取样本,否则将无法访问。由于Acidalia的远端位置也将有利于潜在有机物的浓缩和保存,因此通过泥火山作用带到地表的样品可能包括可能存在的甚至过去的生命的生物特征。因此,Acidalia的土丘可能会提供一种新的勘探目标。

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