Using diffusion-based models for concretion growth, we calculate growth times of hematitic concretions that have been found in the Burns formation at Meridiani Planum, Mars, by NASA's Opportunity Mars Exploration Rover. Growth times of ~ 350–1900 terrestrial years are obtained for the observed size range of the concretions over a range of parameters representing likely diagenetic conditions and allowing for an iron source from diagenetic redistribution. This time scale is consistent with radiometric age constraints for the growth time of iron oxide concretions in sandy sediments of the acid-saline Lake Brown in Western Australia (< 3000 yr) reported elsewhere. We consider the source of the iron for Meridiani concretions by calculating the c...
International audienceVarious iron-bearing primary phases and rocks have been weathered experimental...
New data returned from the Mars Exploration Rover (MER) mission have revealed abundant evaporites in...
Exploration by the NASA rover Opportunity has revealed sulfate- and hematite-rich sedimentary rocks ...
Concretions can provide valuable records of diagenesis and fluid-sediment interactions, however, rec...
Fe oxidation processes may have occurred during groundwater-mediated diagenesis in Meridiani Planum ...
[1] The most plausible models for the origin and evolution of a unique geologic unit in 7 Meridiani ...
Abstract. Near-global (60S to 60N) thermal infrared mapping by the Thermal Emission Spectrometer (TE...
Ubiquitous hematite spherules interpreted as being concretions [1] within reworked evaporite dune an...
Sedimentary rocks exposed in the Meridiani Planum region of Mars record aqueous and eolian depositio...
The element iron plays a crucial role in the study of the evolution of matter from an interstellar c...
The reddened oxidized surface of Mars is indicative of temporal interactions between the Martian atm...
Microbial life on Earth seems to have begun almost as soon as the planet cooled enough to allow soli...
The Curiosity rover investigated a topographic structure known as Vera Rubin ridge, associated with ...
International audienceVarious iron-bearing primary phases and rocks have been weathered experimental...
New data returned from the Mars Exploration Rover (MER) mission have revealed abundant evaporites in...
Exploration by the NASA rover Opportunity has revealed sulfate- and hematite-rich sedimentary rocks ...
Concretions can provide valuable records of diagenesis and fluid-sediment interactions, however, rec...
Fe oxidation processes may have occurred during groundwater-mediated diagenesis in Meridiani Planum ...
[1] The most plausible models for the origin and evolution of a unique geologic unit in 7 Meridiani ...
Abstract. Near-global (60S to 60N) thermal infrared mapping by the Thermal Emission Spectrometer (TE...
Ubiquitous hematite spherules interpreted as being concretions [1] within reworked evaporite dune an...
Sedimentary rocks exposed in the Meridiani Planum region of Mars record aqueous and eolian depositio...
The element iron plays a crucial role in the study of the evolution of matter from an interstellar c...
The reddened oxidized surface of Mars is indicative of temporal interactions between the Martian atm...
Microbial life on Earth seems to have begun almost as soon as the planet cooled enough to allow soli...
The Curiosity rover investigated a topographic structure known as Vera Rubin ridge, associated with ...
International audienceVarious iron-bearing primary phases and rocks have been weathered experimental...
New data returned from the Mars Exploration Rover (MER) mission have revealed abundant evaporites in...
Exploration by the NASA rover Opportunity has revealed sulfate- and hematite-rich sedimentary rocks ...