Methane-related carbonates from Hydrate Ridge typically show several macroscopically distinguishable mineral phases, namely whitish aragonite, lucent aragonite, and gray micrite. The relationship of these phases to particular microorganisms or biogeochemical processes is as yet unclear. We used a miniaturized biomarker technique on mg samples, combined with factor analysis and subsequent electron microprobe analysis, to study lipid biomarkers and chemical compositions of the individual phases. This allows us to identify particular mechanisms involved in the formation of the different carbonate precipitates. Our combined analysis of biomarkers and petrographic traits shows that most of the lipids related to the anaerobic oxidation of methane...
Abstract To understand the role played by microorganisms in the formation of cold seep carbonates, w...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
The microbial key players at methane seeps are methanotrophic archaea and sulfate-reducing bacteria....
Methane-related carbonates from Hydrate Ridge typically show several macroscopically distinguishable...
Methane-related carbonates from Hydrate Ridge typically show several macroscopically distinguishabl...
Methane-related carbonates from Hydrate Ridge typically show several macroscopically distinguishable...
International audienceMethane-related carbonates from Hydrate Ridge typically show several macroscop...
An Oligocene cold-seep limestone (Lincoln Creek Formation, Washington State, USA) was studied for it...
The anaerobic oxidation of methane (AOM), by converting methane to bicarbonate which is then precipi...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
Authigenic carbonate rocks from an active seep (Site F) located in the South China Sea (SCS) at a wa...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
Authigenic carbonates were recovered from the northern Okinawa Trough at 540-700 m water depth. Deve...
Abstract To understand the role played by microorganisms in the formation of cold seep carbonates, w...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
The microbial key players at methane seeps are methanotrophic archaea and sulfate-reducing bacteria....
Methane-related carbonates from Hydrate Ridge typically show several macroscopically distinguishable...
Methane-related carbonates from Hydrate Ridge typically show several macroscopically distinguishabl...
Methane-related carbonates from Hydrate Ridge typically show several macroscopically distinguishable...
International audienceMethane-related carbonates from Hydrate Ridge typically show several macroscop...
An Oligocene cold-seep limestone (Lincoln Creek Formation, Washington State, USA) was studied for it...
The anaerobic oxidation of methane (AOM), by converting methane to bicarbonate which is then precipi...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
Authigenic carbonate rocks from an active seep (Site F) located in the South China Sea (SCS) at a wa...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
Authigenic carbonates were recovered from the northern Okinawa Trough at 540-700 m water depth. Deve...
Abstract To understand the role played by microorganisms in the formation of cold seep carbonates, w...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
The microbial key players at methane seeps are methanotrophic archaea and sulfate-reducing bacteria....