Minerals stabilize organic carbon (OC) in sediments, thereby directly affecting global climate at multiple scales, but how they do it is far from understood. Here we show that manganese oxide (Mn oxide) in a water treatment works filter bed traps dissolved OC as coatings build up in layers around clean sand grains at 3%w/wC. Using spectroscopic and thermogravimetric methods, we identify two main OC fractions. One is thermally refractory (>550 °C) and the other is thermally more labile (<550 °C). We postulate that the thermal stability of the trapped OC is due to carboxylate groups within it bonding to Mn oxide surfaces coupled with physical entrapment within the layers. We identify a significant difference in the nature of the surface-bound...
Soil organic matter decomposition is a critical process that affects nutrient cycling, CO2 emissions...
The formation of reactive manganese (Mn) species is emerging as a key regulator of carbon oxidation ...
The formation of reactive manganese (Mn) species is emerging as a key regulator of carbon oxidation ...
Minerals stabilize organic carbon (OC) in sediments, thereby directly affecting global climate at mu...
Minerals stabilize organic carbon (OC) in sediments, thereby directly affecting global climate at mu...
Minerals stabilize organic carbon (OC) in sediments, thereby directly affecting global climate at mu...
The sequestration of carbon in sediments results in an overall removal of CO2 from the atmosphere (B...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the M...
Thesis: Ph. D., Joint Program in Oceanography/Applied Ocean Science and Engineering (Massachusetts I...
Manganese (Mn) oxides participate in a range of interactions with organic carbon (OC) that can lead ...
Abstract Minerals constitute a primary ecosystem control on organic C decomposition in soils, and th...
The balance between degradation and preservation of sedimentary organic carbon (OC) is important for...
The balance between degradation and preservation of sedimentary organic carbon (OC) is important for...
The balance between degradation and preservation of sedimentary organic carbon (OC) is important for...
Most manganese (Mn) enrichments in the sedimentary rock record are hosted in carbonate minerals, whi...
Soil organic matter decomposition is a critical process that affects nutrient cycling, CO2 emissions...
The formation of reactive manganese (Mn) species is emerging as a key regulator of carbon oxidation ...
The formation of reactive manganese (Mn) species is emerging as a key regulator of carbon oxidation ...
Minerals stabilize organic carbon (OC) in sediments, thereby directly affecting global climate at mu...
Minerals stabilize organic carbon (OC) in sediments, thereby directly affecting global climate at mu...
Minerals stabilize organic carbon (OC) in sediments, thereby directly affecting global climate at mu...
The sequestration of carbon in sediments results in an overall removal of CO2 from the atmosphere (B...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the M...
Thesis: Ph. D., Joint Program in Oceanography/Applied Ocean Science and Engineering (Massachusetts I...
Manganese (Mn) oxides participate in a range of interactions with organic carbon (OC) that can lead ...
Abstract Minerals constitute a primary ecosystem control on organic C decomposition in soils, and th...
The balance between degradation and preservation of sedimentary organic carbon (OC) is important for...
The balance between degradation and preservation of sedimentary organic carbon (OC) is important for...
The balance between degradation and preservation of sedimentary organic carbon (OC) is important for...
Most manganese (Mn) enrichments in the sedimentary rock record are hosted in carbonate minerals, whi...
Soil organic matter decomposition is a critical process that affects nutrient cycling, CO2 emissions...
The formation of reactive manganese (Mn) species is emerging as a key regulator of carbon oxidation ...
The formation of reactive manganese (Mn) species is emerging as a key regulator of carbon oxidation ...