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A Reconstructed Subaerial Hot Spring Field in the ~3.5 Billion-Year-Old Dresser Formation, North Pole Dome, Pilbara Craton, Western Australia

机译:〜35亿岁的梳妆台形成,北极圆顶,Pilbara Craton,西澳大利亚州的一个重建的底栖春季温泉田

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摘要

Recent discoveries of geyserite and siliceous sinter with textural biosignatures in the similar to 3.5 Ga Dresser Formation of the Pilbara Craton, Western Australia, extended the record of inhabited subaerial hot springs on Earth by similar to 3 billion years, back to the time when siliceous sinter deposits are known to have formed on Mars (e.g., at Columbia Hills, Gusev Crater). Here, we present more detailed lithostratigraphic, petrographic and geochemical data collected from 100 measured sections across a similar to 14 km strike length in the Dresser Formation. The data indicate deposition of a wide range of hot spring and associated deposits in a restricted interval that directly overlies a hydrothermally influenced volcanic caldera lake facies, with shoreline stromatolites. Hot spring deposits show abrupt lateral facies changes and include associated channelized clastic deposits that support fluvial, subaerial hot spring deposition. All Dresser hot spring and associated lithofacies have direct analogs with proximal, middle, and distal apron hot spring facies that are characteristic of those from New Zealand, Yellowstone National Park, USA, and Argentina. Rare earth element and yttrium geochemistry shows that the Dresser geyserite shares identical patterns with Phanerozoic hot spring sinters. This geochemical data further supports textural and contextual evidence that indicate the Dresser geyserite formed as a subaerial hot spring sinter. Further, the Dresser hot spring deposits are temporally associated with a diverse suite of textural biosignatures that indicate a thriving microbial community existed within in a Paleoarchean hot spring field. The results presented here underscore the importance of continued study of the early geological record for astrobiological research. In particular these findings reinforce the long-standing hypothesis that hydrothermal systems are optimal places to search for past life on Mars.
机译:最近发现Geyserite和Symicous Sinter的纹理生物充新性与西澳大利亚州西澳大利亚皮尔巴拉·克拉顿的3.5 Ga梳妆台形成,通过类似于30亿年的地球上居住在地球上的居住的Superial温泉的记录,回到硅质烧结时的时间已知存款在火星上形成(例如,在哥伦比亚山,Gusev火山口)。在这里,我们介绍了从梳妆台形成中类似于100个测量部分收集的更详细的岩石图像和地球化学和地球化学数据。数据表明,在有限的间隔内沉积宽范围的温泉和相关沉积物,该间隔直接覆盖水热影响的火山火山湖湖面,其具有海岸线脱盐橡胶。热弹簧沉积物显示突然的侧面相变,包括相关的通道化碎屑沉积物,支持河流,子胸泡温泉沉积。所有梳妆台温泉和相关的岩石曲线都具有与近端,中间和远端热弹簧相的直接类似物,这些类似春天的春面是来自新西兰,黄石国家公园,美国和阿根廷的特征。稀土元素和钇地球化学表明,梳妆台Geyserite与Phanerozoicoic Hot Spring Sinters共享相同的模式。该地球化学数据进一步支持纹理和上下文证据,表明梳妆台Geyserite作为基序列的温泉烧结。此外,梳妆台热弹簧沉积物在时间上与多种纹理生物核心套件相关联,其表明古老的热弹簧场中存在繁华的微生物群落。这里提出的结果强调了持续研究八种血管生态学研究的早期地质记录的重要性。特别是这些发现强化了长期假设,即加热系统是在火星上寻找过去的生活的最佳场所。

著录项

  • 来源
    《Astrobiology》 |2021年第1期|1-38|共38页
  • 作者单位

    Univ New South Wales Australian Ctr Astrobiol PANGEA Res Ctr Sch Biol Earth & Environm Sci Kensington NSW 2052 Australia|Univ Western Australia Australian Res Council Ctr Excellence Core Crust Perth WA Australia;

    Univ New South Wales Australian Ctr Astrobiol PANGEA Res Ctr Sch Biol Earth & Environm Sci Kensington NSW 2052 Australia|Univ Western Australia Australian Res Council Ctr Excellence Core Crust Perth WA Australia|Univ New South Wales Australia Big Quest Inst Kensington NSW Australia|Okayama Univ Inst Planetary Mat Pheast Mem Lab Misasa Tottori Japan;

    Univ Auckland Ctr Fundamental Inquiry Sch Environm Auckland New Zealand|Univ Auckland Te Ao Marama Auckland New Zealand;

    Univ Minnesota Dept Earth Sci Minneapolis MN USA;

    Univ New South Wales Australian Ctr Astrobiol PANGEA Res Ctr Sch Biol Earth & Environm Sci Kensington NSW 2052 Australia;

    Univ Nacl La Plata CONICET La Plata Argentina|Univ Nacl La Plata Fac Ciencias Nat & Museo Inst Recursos Minerales INREMI La Plata Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Archean hot springs; Biosignatures; Dresser Formation Pilbara Craton; Western Australia; Mars;

    机译:Archean Hot Springs;Biosignatures;梳妆台形成Pilbara Craton;西澳大利亚;火星;
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