Geological evidence of extensive N-fixation by volcanic lightning during very large explosive eruptions.
basic_science · Level V
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- Record sourced from PubMed, PMID 38315852.
- Also identified by DOI 10.1073/pnas.2309131121 and PMC identifier 10873604.
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Abstract
Most of the nitrogen (N) accessible for life is trapped in dinitrogen (N<sub>2</sub>), the most stable atmospheric molecule. In order to be metabolized by living organisms, N<sub>2</sub> has to be converted into biologically assimilable forms, so-called fixed N. Nowadays, nearly all the N-fixation is achieved through biological and anthropogenic processes. However, in early prebiotic environments of the Earth, N-fixation must have occurred via natural abiotic processes. One of the most invoked processes is electrical discharges, including from thunderstorms and lightning associated with volcanic eruptions. Despite the frequent occurrence of volcanic lightning during explosive eruptions and convincing laboratory experimentation, no evidence of substantial N-fixation has been found in any geological archive. Here, we report on the discovery of a significant amount of nitrate in volcanic deposits from Neogene caldera-forming eruptions, which are well correlated with the concentrations of species directly emitted by volcanoes (sulfur, chlorine). The multi-isotopic composition (δ<sup>18</sup>O, Δ<sup>17</sup>O) of the nitrates reveals that they originate from the atmospheric oxidation of nitrogen oxides formed by volcanic lightning. According to these first geological volcanic nitrate archive, we estimate that, on average, about 60 Tg of N can be fixed during a large explosive event. Our findings hint at a unique role potentially played by subaerial explosive eruptions in supplying essential ingredients for the emergence of life on Earth.