Sulfur plays a critical role in modulating redox cycling on Earth. Yet, sulfur's behavior during subduction and in mantle redox reactions is debated. We analyzed 34S/32S in mafic arc melt inclusions from contrasting subduction zones and modeled slab-mantle interaction to investigate the subduction zone sulfur cycle. We find that degassing may enrich or deplete the melt strongly in 34S as a function of melt redox state. After correction for this effect, arc magmas have a substantially narrow range of δ34S values (+3 ± 2‰), higher than the ambient upper mantle (-1‰). Slab-derived sulfur is oxidized, evidenced by a concurrent increase in mantle Fe3+ and sulfur contents, and contributes up to 86% of the mantle wedge's sulfur budget. Arc magma δ34S values reflect a common slab source for sulfur: the oceanic crust. Subduction zones act as a "filter" for oxidative power and 34S, effectively returning these to the surface over geological timescales.

Taracsák, Z., Mather, T.A., Plank, T., Peccia, A., Ding, S., Monteleone, B., et al. (2026). The sulfur content and isotopic composition of the subarc mantle. SCIENCE ADVANCES, 12(31) [10.1126/sciadv.aeb9747].

The sulfur content and isotopic composition of the subarc mantle

Aiuppa, Alessandro;
2026-07-31

Abstract

Sulfur plays a critical role in modulating redox cycling on Earth. Yet, sulfur's behavior during subduction and in mantle redox reactions is debated. We analyzed 34S/32S in mafic arc melt inclusions from contrasting subduction zones and modeled slab-mantle interaction to investigate the subduction zone sulfur cycle. We find that degassing may enrich or deplete the melt strongly in 34S as a function of melt redox state. After correction for this effect, arc magmas have a substantially narrow range of δ34S values (+3 ± 2‰), higher than the ambient upper mantle (-1‰). Slab-derived sulfur is oxidized, evidenced by a concurrent increase in mantle Fe3+ and sulfur contents, and contributes up to 86% of the mantle wedge's sulfur budget. Arc magma δ34S values reflect a common slab source for sulfur: the oceanic crust. Subduction zones act as a "filter" for oxidative power and 34S, effectively returning these to the surface over geological timescales.
31-lug-2026
Taracsák, Z., Mather, T.A., Plank, T., Peccia, A., Ding, S., Monteleone, B., et al. (2026). The sulfur content and isotopic composition of the subarc mantle. SCIENCE ADVANCES, 12(31) [10.1126/sciadv.aeb9747].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/713583
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