Organic carbon (OC) stability in tropical soils is strongly interlinked with multivalent cation interaction and mineral association. Low molecular weight organic acids (LMWOAs) represent the readily biodegradable OC. Therefore, investigating retention mechanisms of LMWOAs in mineral-cation-LMWOAs systems is critical to understanding soil C cycling. Given the general acidic conditions and dominance of kaolinite in tropical soils, we investigated the retention mechanisms of citric acid (CA) in kaolinite-Fe(III)-CA systems with various Fe/CA molar ratios at pH similar to 3.5 using Fe K-edge EXAFS and L-3,L-2-edge XANES techniques. With Fe/CA molar ratios >2, the formed ferrihydrite mainly contributed to CA retention through adsorption and/or c...
Dissolved organic matter (DOM) is an important but labile pool of organic matter that requires miner...
Iron oxide-kaolinite associations are important components of tropical and subtropical soils and hav...
Organic acids exuded by roots, especially citrate, can increase P availability in soils and thus fac...
Organic carbon (OC) stability in tropical soils is strongly interlinked with multivalent cation inte...
International audienceMultivalent cation interaction and mineral association play a vital role in or...
Organo-mineral associations of organic carbon (OC) with iron (Fe) oxides play a major role in enviro...
Sowers, Tyler DaleSequestration of organic matter (OM) in environmental systems is critical to mitig...
Abstract Sequestration of organic carbon (OC) in environmental systems is critical to mitigating cli...
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...
This study aimed to obtain a better understanding on the mechanisms and controls of mineral–organic ...
Kaolinite is a dominant clay mineral in the soils in tropical and Subtropical regions, and its disso...
The ability of soils to serve as a carbon (C) reservoir depends on the processes that drive the accu...
Soil organic carbon (SOC) is one of the largest carbon (C) reservoirs on the earth surface, containi...
Iron (Fe) speciation in soils is highly dependent on environmental conditions, mineralogy, and chemi...
Dissolved organic matter (DOM) is an important but labile pool of organic matter that requires miner...
Iron oxide-kaolinite associations are important components of tropical and subtropical soils and hav...
Organic acids exuded by roots, especially citrate, can increase P availability in soils and thus fac...
Organic carbon (OC) stability in tropical soils is strongly interlinked with multivalent cation inte...
International audienceMultivalent cation interaction and mineral association play a vital role in or...
Organo-mineral associations of organic carbon (OC) with iron (Fe) oxides play a major role in enviro...
Sowers, Tyler DaleSequestration of organic matter (OM) in environmental systems is critical to mitig...
Abstract Sequestration of organic carbon (OC) in environmental systems is critical to mitigating cli...
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...
This study aimed to obtain a better understanding on the mechanisms and controls of mineral–organic ...
Kaolinite is a dominant clay mineral in the soils in tropical and Subtropical regions, and its disso...
The ability of soils to serve as a carbon (C) reservoir depends on the processes that drive the accu...
Soil organic carbon (SOC) is one of the largest carbon (C) reservoirs on the earth surface, containi...
Iron (Fe) speciation in soils is highly dependent on environmental conditions, mineralogy, and chemi...
Dissolved organic matter (DOM) is an important but labile pool of organic matter that requires miner...
Iron oxide-kaolinite associations are important components of tropical and subtropical soils and hav...
Organic acids exuded by roots, especially citrate, can increase P availability in soils and thus fac...