Dissimilatory sulfate reduction serves as a key metabolic carbon remineralization process in anoxic marine environments. Sulfate reducing microorganisms can impart a wide range in mass-dependent sulfur isotopic fractionation. As such, the presence and relative activity of these organisms is identifiable from geological materials. By extension, sulfur isotope records are used to infer the redox balance of marine sedimentary environments, and the oxidation state of Earth's oceans and atmosphere. However, recent work suggests that our understanding of microbial sulfate reduction (MSRs) may be missing complexity associated with the presence and role of key chemical intermediates in the reductive process. This study provides a test of proposed m...
Dissimilatory sulfate reduction is a microbial energy metabolism that can produce sulfur isotopic fr...
AbstractWe present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4, respectively)...
Sulfur has many redox states and is a major metabolite in suboxic and anaerobic environments includi...
Dissimilatory sulfate reduction serves as a key metabolic carbon remineralization process in anoxic ...
AbstractWe present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4, respectively)...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary S...
The sulfur isotope record provides key insight into the history of Earth's redox conditions. A detai...
We present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4 respectively), from gl...
Phanerozoic levels of atmospheric oxygen relate to the burial histories of organic carbon and pyrite...
The precise interpretation of environmental sulfur isotope records requires a quantitative understan...
Dissimilatory microbial sulfate reduction (MSR) is a process where microbes utilize sulfate as an el...
Many of the long-term geochemical fluxes influencing the surface sulfur cycle are microbially cataly...
Values of ΔS (= δS - δS, where δS and δS indicate the differences in the isotopic compositions of th...
Studies of microbial sulfate reduction have suggested that the magnitude of sulfur isotope fractiona...
In PNAS, Wing and Halevy (1) present a new model that quantitatively describes the magnitude of sulf...
Dissimilatory sulfate reduction is a microbial energy metabolism that can produce sulfur isotopic fr...
AbstractWe present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4, respectively)...
Sulfur has many redox states and is a major metabolite in suboxic and anaerobic environments includi...
Dissimilatory sulfate reduction serves as a key metabolic carbon remineralization process in anoxic ...
AbstractWe present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4, respectively)...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary S...
The sulfur isotope record provides key insight into the history of Earth's redox conditions. A detai...
We present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4 respectively), from gl...
Phanerozoic levels of atmospheric oxygen relate to the burial histories of organic carbon and pyrite...
The precise interpretation of environmental sulfur isotope records requires a quantitative understan...
Dissimilatory microbial sulfate reduction (MSR) is a process where microbes utilize sulfate as an el...
Many of the long-term geochemical fluxes influencing the surface sulfur cycle are microbially cataly...
Values of ΔS (= δS - δS, where δS and δS indicate the differences in the isotopic compositions of th...
Studies of microbial sulfate reduction have suggested that the magnitude of sulfur isotope fractiona...
In PNAS, Wing and Halevy (1) present a new model that quantitatively describes the magnitude of sulf...
Dissimilatory sulfate reduction is a microbial energy metabolism that can produce sulfur isotopic fr...
AbstractWe present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4, respectively)...
Sulfur has many redox states and is a major metabolite in suboxic and anaerobic environments includi...