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Journal Article

High potential for iron reduction in upland soils

Wendy H. Yang; Daniel Liptzin
Ecology · Vol. 96, Issue 7 · pp. 2015-2020 · 2015

Abstract

Changes in the redox state of iron (Fe) can be coupled to the biogeochemical cycling of carbon (C), nitrogen, and phosphorus, and thus regulate soil C, ecosystem nutrient availability, and greenhouse gas production. However, its importance broadly in non‐flooded upland terrestrial ecosystems is unknown. We measured Fe reduction in soil samples from an annual grassland, a drained peatland, and a humid tropical forest. We incubated soil slurries in an anoxic glovebox for 5.5 days and added sodium acetate daily at rates up to 0.4 mg C·(g soil) −1 ·d −1 . Soil moisture, poorly crystalline Fe oxide concentrations, and Fe(II) concentrations differed among study sites in the following order: annual grassland P −1 ·d −1 (mean ± SE) for the tropical forest, annual grassland, and drained peatland, respectively. Our results suggest that upland soils from diverse ecosystems have the potential to exhibit high short‐term rates of Fe reduction that may play an important role in driving soil biogeochemical processes during periods of anaerobiosis.

Bibliographic Information

JournalEcology
PublisherWiley
Publication Date2015-07-01
Publication Year2015
Volume96
Issue7
Pages2015-2020
Document TypeJournal Article
Print ISSN0012-9658
eISSN1939-9170
DOI10.1890/14-2097.1
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://esajournals.onlinelibrary.wiley.com/loi/19399170
Publisher PageOpen Publisher Page
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