Formation of abiogenic hydrocarbons in supercritical fluids under Earth's upper mantle conditions

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Hauptverfasser: Stolte, Nore, Li, Tao, Pan, Ding
Format: Preprint
Veröffentlicht: 2025
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author Stolte, Nore
Li, Tao
Pan, Ding
author_facet Stolte, Nore
Li, Tao
Pan, Ding
contents The formation of hydrocarbons in Earth's interior has traditionally been considered to have biogenic origins; however, growing evidence suggests that some hydrocarbons may instead originate abiotically in the deep carbon cycle. It is widely expected that the Fisher-Tropsch-type (FTT) process, which typically refers to the conversion of inorganic carbon to organic matter in geological settings,may also happen in Earth's interior, but the absence of industrial catalysts and aqueous conditions in deep environments suggest that the FTT process can be very different from that in the chemical industry. Here, we performed extensive \textit{ab initio} molecular dynamics (AIMD) simulations ($>$ 2.4 ns) to investigate the FTT synthesis in dry mixture and in aqueous solutions at 10-13 GPa and 1000-1400 K.We found that large hydrocarbon-related species containing C, O, and H($>$C$_2$) are abiotically synthesized via the polymerization of CO without any catalyst. Supercritical water, commonly found in the deep Earth, does not prevent organic molecule formation but restricts product size and carbon reduction.Our studies reveal a previously unrecognized abiogenic route for hydrocarbon synthesis in mantle geofluids. These carbon-containing fluids could potentially migrate from depth to shallower crustal reservoirs, thereby influencing Earth's surface carbon budget.
format Preprint
id arxiv_https___arxiv_org_abs_2506_13350
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Formation of abiogenic hydrocarbons in supercritical fluids under Earth's upper mantle conditions
Stolte, Nore
Li, Tao
Pan, Ding
Computational Physics
Geophysics
The formation of hydrocarbons in Earth's interior has traditionally been considered to have biogenic origins; however, growing evidence suggests that some hydrocarbons may instead originate abiotically in the deep carbon cycle. It is widely expected that the Fisher-Tropsch-type (FTT) process, which typically refers to the conversion of inorganic carbon to organic matter in geological settings,may also happen in Earth's interior, but the absence of industrial catalysts and aqueous conditions in deep environments suggest that the FTT process can be very different from that in the chemical industry. Here, we performed extensive \textit{ab initio} molecular dynamics (AIMD) simulations ($>$ 2.4 ns) to investigate the FTT synthesis in dry mixture and in aqueous solutions at 10-13 GPa and 1000-1400 K.We found that large hydrocarbon-related species containing C, O, and H($>$C$_2$) are abiotically synthesized via the polymerization of CO without any catalyst. Supercritical water, commonly found in the deep Earth, does not prevent organic molecule formation but restricts product size and carbon reduction.Our studies reveal a previously unrecognized abiogenic route for hydrocarbon synthesis in mantle geofluids. These carbon-containing fluids could potentially migrate from depth to shallower crustal reservoirs, thereby influencing Earth's surface carbon budget.
title Formation of abiogenic hydrocarbons in supercritical fluids under Earth's upper mantle conditions
topic Computational Physics
Geophysics
url https://arxiv.org/abs/2506.13350