第 4 章:早期地球生命起源的地质和化学背景。

IF 3.5 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Astrobiology Pub Date : 2024-03-01 DOI:10.1089/ast.2021.0139
Laura E Rodriguez, Thiago Altair, Ninos Y Hermis, Tony Z Jia, Tyler P Roche, Luke H Steller, Jessica M Weber
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引用次数: 0

摘要

在地球历史的头十亿年里,地球从一个炎热、贫瘠和荒凉的环境转变为一个有利于生命出现和持续存在的环境。本章将回顾有关地球早期(Hadean/Eoarchean)地球化学环境的知识状况,包括地球月球、地壳、海洋、大气和有机物的起源和组成。它还将讨论 CHONPS 元素的非生物地球化学循环,以及这些物种如何转化为与生物相关的构件、聚合物和化学网络。此外,还将描述和评估拟议的生物发生环境。了解生命可能出现的地球化学过程可以更好地帮助我们评估其他世界的可居住性、非生物化学可能达到的复杂性(这对假定的生物特征有影响)以及与地球上的生物化学大不相同的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chapter 4: A Geological and Chemical Context for the Origins of Life on Early Earth.

Within the first billion years of Earth's history, the planet transformed from a hot, barren, and inhospitable landscape to an environment conducive to the emergence and persistence of life. This chapter will review the state of knowledge concerning early Earth's (Hadean/Eoarchean) geochemical environment, including the origin and composition of the planet's moon, crust, oceans, atmosphere, and organic content. It will also discuss abiotic geochemical cycling of the CHONPS elements and how these species could have been converted to biologically relevant building blocks, polymers, and chemical networks. Proposed environments for abiogenesis events are also described and evaluated. An understanding of the geochemical processes under which life may have emerged can better inform our assessment of the habitability of other worlds, the potential complexity that abiotic chemistry can achieve (which has implications for putative biosignatures), and the possibility for biochemistries that are vastly different from those on Earth.

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来源期刊
Astrobiology
Astrobiology 生物-地球科学综合
CiteScore
7.70
自引率
11.90%
发文量
100
审稿时长
3 months
期刊介绍: Astrobiology is the most-cited peer-reviewed journal dedicated to the understanding of life''s origin, evolution, and distribution in the universe, with a focus on new findings and discoveries from interplanetary exploration and laboratory research. Astrobiology coverage includes: Astrophysics; Astropaleontology; Astroplanets; Bioastronomy; Cosmochemistry; Ecogenomics; Exobiology; Extremophiles; Geomicrobiology; Gravitational biology; Life detection technology; Meteoritics; Planetary geoscience; Planetary protection; Prebiotic chemistry; Space exploration technology; Terraforming
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