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Archean kerogen as a new tracer of atmospheric evolution: Implications for dating the widespread nature of early life

机译:太古代干酪根作为大气演化的新示踪剂:对早期生命广泛性的认识

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摘要

Understanding the composition of the Archean atmosphere is vital for unraveling the origin of volatiles and the environmental conditions that led to the development of life. The isotopic composition of xenon in the Archean atmosphere has evolved through time by mass-dependent fractionation from a precursor comprising cometary and solar/chondritic contributions (referred to as U-Xe). Evaluating the composition of the Archean atmosphere is challenging because limited amounts of atmospheric gas are trapped within minerals during their formation. We show that organic matter, known to be efficient at preserving large quantities of noble gases, can be used as a new archive of atmospheric noble gases. Xe isotopes in a kerogen isolated from the 3.0–billion-year–old Farrel Quartzite (Pilbara Craton, Western Australia) are mass fractionated by 9.8 ± 2.1 per mil (‰) (2σ) per atomic mass unit, in line with a progressive evolution toward modern atmospheric values. Archean atmospheric Xe signatures in kerogens open a new avenue for following the evolution of atmospheric composition through time. The degree of mass fractionation of Xe isotopes relative to the modern atmosphere can provide a time stamp for dating Archean kerogens and therefore narrowing the time window for the diversification of early life during the Archean eon.
机译:了解太古代大气的成分对于弄清挥发物的起源和导致生活发展的环境条件至关重要。太古代大气中氙的同位素组成随着时间的流逝而发生了变化,它是由质量相关的分馏作用而来的,它是由一种由彗星和太阳/晶状体组成的前体(称为U-Xe)形成的。评估太古代大气的组成具有挑战性,因为在形成过程中,有限的大气气体被捕获在矿物中。我们表明,已知可以有效保存大量稀有气体的有机物可以用作大气稀有气体的新档案。从30亿年历史的Farrel石英岩(西澳大利亚州皮尔巴拉克拉顿)中分离出的干酪根中的Xe同位素的质量分数为每原子质量单位9.8±2.1 / mil(‰)(2σ),与渐进进化相一致朝着现代大气价值迈进。干酪根中的太古代大气Xe签名为跟踪大气成分随时间的演变开辟了一条新途径。 Xe同位素相对于现代大气的质量分馏程度可为约会太古宙干酪根提供一个时间戳,从而缩小太古宙时代早期生命多样化的时间窗口。

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