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Abstract
Rock-water-carbon interactions germane to serpentinization in hydrothermal vents have occurred for over 4 billion years, ever since there was liquid water on Earth. Serpentinization converts iron(II) containing minerals and water to magnetite (Fe3O4) plus H-2. The hydrogen can generate native metals such as awaruite (Ni3Fe), a common serpentinization product. Awaruite catalyzes the synthesis of methane from H-2 and CO2 under hydrothermal conditions. Native iron and nickel catalyze the synthesis of formate, methanol, acetate, and pyruvate-intermediates of the acetyl-CoA pathway, the most ancient pathway of CO2 fixation. Carbon monoxide dehydrogenase (CODH) is central to the pathway and employs Ni-0 in its catalytic mechanism. CODH has been conserved during 4 billion years of evolution as a relic of the natural CO2-reducing catalyst at the onset of biochemistry. The carbide-containing active site of nitrogenase-the only enzyme on Earth that reduces N(2)is probably also a relic, a biological reconstruction of the naturally occurring inorganic catalyst that generated primordial organic nitrogen. Serpentinization generates Fe3O4 and H-2, the catalyst and reductant for industrial CO2 hydrogenation and for N-2 reduction via the Haber-Bosch process. In both industrial processes, an Fe3O4 catalyst is matured via H-2-dependent reduction to generate Fe5C2 and Fe2N respectively. Whether serpentinization entails similar catalyst maturation is not known. We suggest that at the onset of life, essential reactions leading to reduced carbon and reduced nitrogen occurred with catalysts that were synthesized during the serpentinization process, connecting the chemistry of life and Earth to industrial chemistry in unexpected ways.
Original language | English |
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Article number | 41 |
Number of pages | 22 |
Journal | Life |
Volume | 8 |
Issue number | 4 |
DOIs | |
Publication status | Published - Dec 2018 |
Austrian Fields of Science 2012
- 105105 Geochemistry
- 106002 Biochemistry
- 106012 Evolutionary research
Keywords
- rock–water–carbon interactions
- origin of life
- carbides
- iron sulfur
- early metabolism
- FISCHER-TROPSCH
- OCEANIC PERIDOTITES
- rock-water-carbon interactions
- ABIOTIC ORGANIC-SYNTHESIS
- CITY HYDROTHERMAL FIELD
- ENERGY-CONSERVATION
- METHANE FORMATION
- ELECTRON BIFURCATION
- METHANOGENIC ARCHAEA
- CARBON-DIOXIDE
- EARLY EVOLUTION
- Rock–water–carbon interactions
- Origin of life
- Iron sulfur
- Early metabolism
- Carbides
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- 1 Active
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Pan-Metabolic Profiling of Archaea: The Ecology of Genomics
Baltazar de Lima de Sousa, M. F., Jandl, N., Neukirchen, S., Nair, G. M., Pichlhöfer, E., Spiegelhofer, J., Pruckner, C., van Ham, J., Padalko, A., Schleper, C. & Ellis, C.
1/06/16 → 30/09/25
Project: Research funding