Carbon isotope geochemistry of organic matter in volcanic paleosols constrains paleo‐environmental variations

ABSTRACT The Fiorano quarry paleosol developed within the Colli Albani volcanic district (Italy) in the time interval bracketed by the deposition of the Pozzolanelle pyroclastic‐flow unit (365 ± 4 ka) and the emplacement of the Capo di Bove lava flow (277 ± 2 ka). The paleosol is characterized by an accretionary feature produced by the progressive accumulation of clastic material eroded from the surrounding volcanic landscape. The δ 13 C composition of soil organic matter (δ 13 C OM ) shows limited but systematic variations with stratigraphic age (from −20.77‰ to −27.29‰), reflecting changes in plants' contribution and organic matter input during pedogenesis. The δ 13 C OM record also matches global and local proxies over the 365–277 ka interval, spanning Marine Isotopic Stage 10 (MIS) to MIS 8.5. These data suggest that δ 13 C OM values were primarily controlled by variation in vegetation density and cover at the paleosol surface. The Fiorano paleosol thus preserves a well‐resolved continental stable isotope record for MIS 9 in the central Mediterranean area, showing the potential of δ 13 C OM variations in paleosols to constrain paleo‐environmental and paleo‐climatological conditions in the central Mediterranean area during the middle Pleistocene.

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Publication Details

Journal
Journal of Quaternary Science
Published
2026-09-29
DOI
https://doi.org/10.1002/jqs.70119
Primary Topic
Geology and Paleoclimatology Research
Type
article
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article

Carbon isotope geochemistry of organic matter in volcanic paleosols constrains paleo‐environmental variations

Mario Gaeta, Fabrizio Marra, Luca Aldega, Luigi Dallai et al.
Journal of Quaternary Science
Geology and Paleoclimatology Research
article

Carbon isotope geochemistry of organic matter in volcanic paleosols constrains paleo‐environmental variations

Mario Gaeta, Fabrizio Marra, Luca Aldega, Luigi Dallai, Eduardo Di Marcantonio
article en

Abstract

ABSTRACT The Fiorano quarry paleosol developed within the Colli Albani volcanic district (Italy) in the time interval bracketed by the deposition of the Pozzolanelle pyroclastic‐flow unit (365 ± 4 ka) and the emplacement of the Capo di Bove lava flow (277 ± 2 ka). The paleosol is characterized by an accretionary feature produced by the progressive accumulation of clastic material eroded from the surrounding volcanic landscape. The δ 13 C composition of soil organic matter (δ 13 C OM ) shows limited but systematic variations with stratigraphic age (from −20.77‰ to −27.29‰), reflecting changes in plants' contribution and organic matter input during pedogenesis. The δ 13 C OM record also matches global and local proxies over the 365–277 ka interval, spanning Marine Isotopic Stage 10 (MIS) to MIS 8.5. These data suggest that δ 13 C OM values were primarily controlled by variation in vegetation density and cover at the paleosol surface. The Fiorano paleosol thus preserves a well‐resolved continental stable isotope record for MIS 9 in the central Mediterranean area, showing the potential of δ 13 C OM variations in paleosols to constrain paleo‐environmental and paleo‐climatological conditions in the central Mediterranean area during the middle Pleistocene.

Journal of Quaternary Science
Istituto Nazionale di Geofisica e Vulcanologia (IT), Sapienza University of Rome (IT)
Life below water
Openalex Percentile: Top 16%
Geology and Paleoclimatology Research
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Carbon isotope geochemistry of organic matter in volcanic paleosols constrains paleo‐environmental variations — Mario Gaeta, Fabrizio Marra, et al. · Journal of Quaternary Science (2026) | TGRS Research Map | TGRS