2019Geochemical Perspectives LettersOpen access

Abiogenesis not required to explain the origin of volcanic-hydrothermal hydrocarbons

Jens Fiebig, Andri Stefánsson, Andrea Ricci, Franco Tassi, Fátima Viveiros, Catarina Silva, Taryn M. Lopez, Charlotte W. Schreiber, Sven Hofmann, Bruce W. Mountain

Open full text 48 citations

Abstract

Abiotic formation of n-alkane hydrocarbons has been postulated to occur within Earth's crust.Apparent evidence was primarily based on uncommon carbon and hydrogen isotope distribution patterns that set methane and its higher chain homologues apart from biotic isotopic compositions associated with microbial production and closed system thermal degradation of organic matter.Here, we present the first global investigation of the carbon and hydrogen isotopic compositions of n-alkanes in volcanic-hydrothermal fluids hosted by basaltic, andesitic, trachytic and rhyolitic rocks.We show that the bulk isotopic compositions of these gases follow trends that are characteristic of high temperature, open system degradation of organic matter.In sediment-free systems, organic matter is supplied by surface waters (seawater, meteoric water) circulating through the reservoir rocks.Our data set strongly implies that thermal degradation of organic matter is able to satisfy isotopic criteria previously classified as being indicative of abiogenesis.Further considering the ubiquitous presence of surface waters in Earth's crust, abiotic hydrocarbon occurrences might have been significantly overestimated.

Open-access reader

About this research paper

What this paper is about

Abiotic formation of n-alkane hydrocarbons has been postulated to occur within Earth's crust.Apparent evidence was primarily based on uncommon carbon and hydrogen isotope distribution patterns that set methane and its higher chain homologues apart from biotic isotopic compositions associated with microbial production and closed system thermal degradation of organic matter.Here, we present the first global investigation of the carbon and hydrogen isotopic compositions of n-alkanes in volcanic-hydrothermal fluids hosted by basaltic, andesitic, trachytic and rhyolitic rocks.We show that the bulk isotopic compositions of these gases follow trends that are characteristic of high temperature, open system degradation of organic matter.In sediment-free systems, organic matter is supplied by surface waters (seawater, meteoric water) circulating through the reservoir rocks.Our data set strongly implies that thermal degradation of organic matter is able to satisfy isotopic criteria previously classified as being indicative of abiogenesis.Further considering the ubiquitous presence of surface waters in Earth's crust, abiotic hydrocarbon occurrences might have been significantly overestimated.

Why it matters

OpenAlex reports 48 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abiotic formation of n-alkane hydrocarbons has been postulated to occur within Earth's crust.Apparent evidence was primarily based on uncommon carbon and hydrogen isotope distribution patterns that set methane and its higher chain homologues apart from biotic isotopic compositions associated with microbial production and closed system thermal degradation of organic matter.Here, we present the first global investigation of the carbon and hydrogen isotopic compositions of n-alkanes in volcanic-hydrothermal fluids hosted by basaltic, andesitic, trachytic and rhyolitic rocks.We show that the bulk isotopic compositions of these gases follow trends that are characteristic of high temperature, open system degradation of organic matter.In sediment-free systems, organic matter is supplied by surface waters (seawater, meteoric water) circulating through the reservoir rocks.Our data set strongly implies that thermal degradation of organic matter is able to satisfy isotopic criteria previously classified as being indicative of abiogenesis.Further considering the ubiquitous presence of surface waters in Earth's crust, abiotic hydrocarbon occurrences might have been significantly overestimated.

Key concepts: Hydrothermal circulation, Volcano, Geochemistry, Geology, Hydrothermal vent, Seismology

Related papers

Back to paper searchBrowse research topicsOriginal source
Abiogenesis not required to explain the origin of volcanic-hydrothermal hydrocarbons — Research Paper | ScholarLens