Resolving and correcting for kinetic biases on methane seep paleotemperature using carbonate ∆<sub>47</sub>/∆<sub>48</sub> analysis.

Staudigel, Philip; Feng, Dong; Peckmann, Jörn; Bernecker, Miguel; Davies, Amelia; Tagliavento, Mattia; Fiebig, Jens · Sci Adv · 2024

basic_science · Level V

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Abstract

Methane-derived authigenic carbonate often constitutes the sole remaining record of relic methane seeps. The clumped (∆<sub>47</sub>) and oxygen isotopic composition of seep carbonates often yield inaccurate temperatures, attributed to kinetic isotope effects and modification of seawater isotope composition by hydrate water. Here, we analyzed the dual-clumped isotope (∆<sub>47</sub>/∆<sub>48</sub>) composition of authigenic carbonate from a modern methane seep. We demonstrate that aragonite forms closest to isotopic equilibrium such that its ∆<sub>47</sub> can directly yield the correct formational temperature, whereas calcite is unambiguously biased by kinetic isotope effects. Numerical models show that the observed bias in the isotopic composition arises from rate-limiting dehydration/dehydroxylation of HCO<sub>3</sub><sup>-</sup> alongside diffusive fractionation, which can be corrected for with analysis of carbonate ∆<sub>47</sub>/∆<sub>48</sub> values. We demonstrate the utility of dual-clumped isotope analysis for studying seep carbonates, as it reveals the origin and magnitude of kinetic biases and can be used to reconstruct paleotemperature and seawater δ<sup>18</sup>O.