The behavior of iron (Fe)-bound organic carbon (DC) under anoxic conditions in natural soils and sediments represents a critical knowledge gap for understanding the biogeochemical cycles of OC and Fe. In this study, we investigated the dynamics of Fe and OC in four forest soils in the presence of the dissimilatory Fe-reducing bacterium, Shewanella oneidensis MR-1. Over an 8-day reduction period, 3.8-9.9% of total OC was released to solution in conjunction with the reduction of 12.5-37.7% of reactive Fe. The fraction of OC released was correlated with the fraction of Fe reduced, indicating that the reductive release was the controlling factor for the mobilization of OC upon the anaerobic microbial reaction. During the reduction, the fraction...
Iron (Fe) reduction and oxidation are important biogeochemical processes coupled to decomposition, n...
The transport of organic carbon (C) to deep mineral horizons in soils can lead to long-term C stabil...
Iron (Fe) reduction and oxidation are important biogeochemical processes coupled to decomposition, n...
The behavior of iron (Fe)-bound organic carbon (DC) under anoxic conditions in natural soils and sed...
The dynamics of iron (Fe)-bound organic carbon (OC) during dissimilatory microbial Fe(III) reduction...
Soil organic carbon (SOC) is one of the largest carbon (C) reservoirs on the earth surface, containi...
Fe oxyhydroxides in soils can bind large amounts of dissolved organic matter (DOM) because of their ...
Fe(III) oxides stabilize soil organic matter by forming Fe organo-mineral associations (Fe-OMA). Und...
Iron oxide minerals play an important role in stabilizing organic carbon (OC) and regulating the bio...
Iron oxide minerals play an important role in stabilizing organic carbon (OC) and regulating the bio...
Stabilization of organic matter in soil is important for natural ecosystem to sequestrate carbon and...
Fe(III) oxides stabilize soil organic matter by forming Fe organo-mineral associations (Fe-OMA). Und...
Fe(III) oxides stabilize soil organic matter by forming Fe organo-mineral associations (Fe-OMA). Und...
Oscillating redox conditions are a common feature of humid tropical forest soils, driven by an ample...
Oscillating redox conditions are a common feature of humid tropical forest soils, driven by an ample...
Iron (Fe) reduction and oxidation are important biogeochemical processes coupled to decomposition, n...
The transport of organic carbon (C) to deep mineral horizons in soils can lead to long-term C stabil...
Iron (Fe) reduction and oxidation are important biogeochemical processes coupled to decomposition, n...
The behavior of iron (Fe)-bound organic carbon (DC) under anoxic conditions in natural soils and sed...
The dynamics of iron (Fe)-bound organic carbon (OC) during dissimilatory microbial Fe(III) reduction...
Soil organic carbon (SOC) is one of the largest carbon (C) reservoirs on the earth surface, containi...
Fe oxyhydroxides in soils can bind large amounts of dissolved organic matter (DOM) because of their ...
Fe(III) oxides stabilize soil organic matter by forming Fe organo-mineral associations (Fe-OMA). Und...
Iron oxide minerals play an important role in stabilizing organic carbon (OC) and regulating the bio...
Iron oxide minerals play an important role in stabilizing organic carbon (OC) and regulating the bio...
Stabilization of organic matter in soil is important for natural ecosystem to sequestrate carbon and...
Fe(III) oxides stabilize soil organic matter by forming Fe organo-mineral associations (Fe-OMA). Und...
Fe(III) oxides stabilize soil organic matter by forming Fe organo-mineral associations (Fe-OMA). Und...
Oscillating redox conditions are a common feature of humid tropical forest soils, driven by an ample...
Oscillating redox conditions are a common feature of humid tropical forest soils, driven by an ample...
Iron (Fe) reduction and oxidation are important biogeochemical processes coupled to decomposition, n...
The transport of organic carbon (C) to deep mineral horizons in soils can lead to long-term C stabil...
Iron (Fe) reduction and oxidation are important biogeochemical processes coupled to decomposition, n...