Geoelectrochemical CO production: Implications for the autotrophic origin of life.

Kitadai, Norio; Nakamura, Ryuhei; Yamamoto, Masahiro; Takai, Ken; Li, Yamei; Yamaguchi, Akira; Gilbert, Alexis; Ueno, Yuichiro et al. · Sci Adv · 2018

basic_science · Level V

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Abstract

Wächtershäuser's proposal of the autotrophic origin of life theory and subsequent laboratory demonstrations of relevant organic reactions have opened a new gate for the exploration of the origin of life. However, this scenario remains controversial because, at present, it requires a high pressure of CO as a source of carbon and reducing energy, although CO must have been a trace C species on the Hadean Earth. We show that, simulating a geoelectrochemical environment in deep-sea hydrothermal fields, CO production with up to ~40% Faraday efficiency was attainable on CdS in CO<sub>2</sub>-saturated NaCl solution at ≤-1 V (versus the standard hydrogen electrode). The threshold potential is readily generated in the H<sub>2</sub>-rich, high-temperature, and alkaline hydrothermal vents that were probably widespread on the early komatiitic and basaltic ocean crust. Thus, Wächtershäuser's scenario starting from CO<sub>2</sub> was likely to be realized in the Hadean ocean hydrothermal systems.

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