Batch culture experiments were performed with 32 different sulfate-reducing prokaryotes to explore the diversity in sulfur isotope fractionation during dissimilatory sulfate reduction by pure cultures. The selected strains reflect the phylogenetic and physiologic diversity of presently known sulfate reducers and cover a broad range of natural marine and freshwater habitats. Experimental conditions were designed to achieve optimum growth conditions with respect to electron donors, salinity, temperature, and pH. Under these optimized con-ditions, experimental fractionation factors ranged from 2.0 to 42.0‰. Salinity, incubation temperature, pH, and phylogeny had no systematic effect on the sulfur isotope fractionation. There was no correlation...
Sulfur isotopes have been widely used to trace the activity of sulfate reducing prokaryotes in moder...
Sulfur isotope fractionation experiments during bacterial sulfate reduction were performed with rece...
Bacterial sulfate reduction is one of the most important respiration processes in anoxic habitats an...
Batch culture experiments were performed with 32 different sulfate-reducing prokaryotes to explore t...
The isotopic fractionation during bacterial sulfate reduction was determined in batch culture experi...
We investigated the influence of organic substrates and phosphate concentration on the rates of diss...
Microbial sulfate reduction (MSR) utilizes sulfate as an electron acceptor and produces sulfide that...
In this study, the sulfur fractionation during bacterial transformation of SO4(2-), SO3(2-), S2O3(2-...
In this study, the sulfur fractionation during bacterial transformation of SO4(2-), SO3(2-), S2O3(2-...
Summary Sulfur isotope fractionation during dissimilatory sulfate reduction by two strains of the th...
The sulfur isotopic record of sedimentary sulfides (mainly pyrite) and sulfates shows considerable v...
Microbiological transformations of sulfur compounds discriminate to various degrees between the stab...
Isotope fractionation during sulfate reduction by natural populations of sulfate-reducing bacteria w...
Several enzymatic steps in microbial sulfate reduction (MSR) fractionate the isotope ratios of 33S/3...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary S...
Sulfur isotopes have been widely used to trace the activity of sulfate reducing prokaryotes in moder...
Sulfur isotope fractionation experiments during bacterial sulfate reduction were performed with rece...
Bacterial sulfate reduction is one of the most important respiration processes in anoxic habitats an...
Batch culture experiments were performed with 32 different sulfate-reducing prokaryotes to explore t...
The isotopic fractionation during bacterial sulfate reduction was determined in batch culture experi...
We investigated the influence of organic substrates and phosphate concentration on the rates of diss...
Microbial sulfate reduction (MSR) utilizes sulfate as an electron acceptor and produces sulfide that...
In this study, the sulfur fractionation during bacterial transformation of SO4(2-), SO3(2-), S2O3(2-...
In this study, the sulfur fractionation during bacterial transformation of SO4(2-), SO3(2-), S2O3(2-...
Summary Sulfur isotope fractionation during dissimilatory sulfate reduction by two strains of the th...
The sulfur isotopic record of sedimentary sulfides (mainly pyrite) and sulfates shows considerable v...
Microbiological transformations of sulfur compounds discriminate to various degrees between the stab...
Isotope fractionation during sulfate reduction by natural populations of sulfate-reducing bacteria w...
Several enzymatic steps in microbial sulfate reduction (MSR) fractionate the isotope ratios of 33S/3...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary S...
Sulfur isotopes have been widely used to trace the activity of sulfate reducing prokaryotes in moder...
Sulfur isotope fractionation experiments during bacterial sulfate reduction were performed with rece...
Bacterial sulfate reduction is one of the most important respiration processes in anoxic habitats an...