Iron oxide minerals play an important role in stabilizing organic carbon (OC) and regulating the biogeochemical cycles of OC on the earth surface. To predict the fate of OC, it is essential to understand the amount, spatial variability, and characteristics of Fe-bound OC in natural soils. In this study, we investigated the concentrations and characteristics of Fe-bound OC in soils collected from 14 forests in the United States and determined the impact of ecogeographical variables and soil physicochemical properties on the association of OC and Fe minerals. On average, Fe-bound OC contributed 37.8% of total OC (TOC) in forest soils. Atomic ratios of OC: Fe ranged from 0.56 to 17.7, with values of 1-10 for most samples, and the ratios indica...
Stabilization of organic matter in soil is important for natural ecosystem to sequestrate carbon and...
Reactive iron (Fe) oxides are vital for long-term soil or sediment organic carbon (SOC) storage. How...
The role and distribution of iron (Fe) species in physical soil fractions has received remarkably li...
Iron oxide minerals play an important role in stabilizing organic carbon (OC) and regulating the bio...
The essential roles of Fe oxides in stabilizing long-term soil organic carbon (SOC), especially arom...
Pedogenic iron (Fe) oxides are important soil minerals that contribute to carbon (C) storage and sta...
The importance of soil organic carbon (SOC) stabilization via chemical interactions with Fe and Al o...
The importance of soil organic carbon (SOC) stabilization via chemical interactions with Fe and Al o...
The behavior of iron (Fe)-bound organic carbon (DC) under anoxic conditions in natural soils and sed...
The behavior of iron (Fe)-bound organic carbon (DC) under anoxic conditions in natural soils and sed...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Stabilization of organic matter in soil is important for natural ecosystem to sequestrate carbon and...
Reactive iron (Fe) oxides are vital for long-term soil or sediment organic carbon (SOC) storage. How...
The role and distribution of iron (Fe) species in physical soil fractions has received remarkably li...
Iron oxide minerals play an important role in stabilizing organic carbon (OC) and regulating the bio...
The essential roles of Fe oxides in stabilizing long-term soil organic carbon (SOC), especially arom...
Pedogenic iron (Fe) oxides are important soil minerals that contribute to carbon (C) storage and sta...
The importance of soil organic carbon (SOC) stabilization via chemical interactions with Fe and Al o...
The importance of soil organic carbon (SOC) stabilization via chemical interactions with Fe and Al o...
The behavior of iron (Fe)-bound organic carbon (DC) under anoxic conditions in natural soils and sed...
The behavior of iron (Fe)-bound organic carbon (DC) under anoxic conditions in natural soils and sed...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Soil organic matter (SOM) protection, stability and long-term accumulation are controlled by several...
Stabilization of organic matter in soil is important for natural ecosystem to sequestrate carbon and...
Reactive iron (Fe) oxides are vital for long-term soil or sediment organic carbon (SOC) storage. How...
The role and distribution of iron (Fe) species in physical soil fractions has received remarkably li...