CO2和H2S在非生物烃合成中的作用及前生物状态的出现。

IF 3.5 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Astrobiology Pub Date : 2025-02-01 DOI:10.1089/ast.2024.0042
Aleksandr Malyshev, Lidiia Malysheva
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引用次数: 0

摘要

硫化氢和二氧化碳是低温内源流体中广泛存在的物质。当其中一种物质的气体通过另一种物质的冷凝物过滤时,就可以合成非生物烃。这种合成的方向是由冷凝物对过滤气体的吸收以及在冷凝物中形成碳氢化合物和天然硫的结果。非生物成因合成带的空间位置受CO2和H2S临界温度和分饱和压力等面的控制。烃类的非生物合成保证了前生物状态的发生。由于二氧化碳和硫化氢的凝结是由这些物质的物理性质控制的,因此有可能评估其他行星上出现生物前状态的条件。金星展示了一个“过热”的行星的例子,在这个行星上,过去不太可能出现生物前状态,现在也不可能。火星向我们展示了一个假设的例子,即在其基础上产生的前生物状态和原生命可能迁移到天体的深处。木星展示了一个碳氢化合物合成区和地球气体包层中前生物状态的本地化例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CO2 and H2S in Abiogenic Hydrocarbon Synthesis and the Emergence of Prebiological States.

Hydrogen sulfide and carbon dioxide are widespread substances in epithermal endogenous fluids. When the gas of one of these substances is filtered through the condensate of the other, abiogenic hydrocarbon synthesis can result. The direction of such a synthesis is a result of the absorption of the filtering gas by condensate and the formation of hydrocarbons and native sulfur in the condensate. The spatial position of the abiogenic synthesis zones is controlled by isosurfaces of critical temperatures and partial saturation pressures for CO2 and H2S. Abiogenic synthesis of hydrocarbons ensures the occurrence of prebiological states. Since the condensation of CO2 and H2S is controlled by the physical properties of these substances, it is possible to assess the conditions for the emergence of prebiological states on other planets. Venus demonstrates an example of an "overheated" planet on which the occurrence of prebiological states is unlikely in the past and impossible at the present time. Mars shows us a hypothetical example of a possible migration of prebiological states and protolife arising on their basis into the depths of a celestial body. Jupiter demonstrates an example of the localization of hydrocarbon synthesis zones and prebiological states in the gas envelope of the planet.

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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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