Chemical alterations, weathering, and diagenesis of soil profiles from the dry valleys of Antarctica were studied as analogs of regolith development for the Martian regolith. Chemical weathering processes play an important part in soil development within the dry valleys of Antarctica. A suite of core samples were studied which were taken within the valley floors in addition to samples taken in the vicinity of evaporite and brine ponds. Analysis of water soluable cations and anions from core samples were performed along with petrographic analysis of selected samples. It was shown that ionic transport processes operate primarily above the permafrost zone. Abundances of the water soluable ions reflect the nature of secondary minerals produced ...
The hyper-arid, cryotic, wind-dominated conditions in the high-elevation McMurdo Dry Valleys of Anta...
Subaerial environments of interest for Mars Sample Return include surface or near-surface sites not ...
The Chemistry and Mineralogy (CheMin) instrument onboard the Mars Curiosity rover has detected abund...
Terrestrial weathering processes in cold-desert climates such as the Dry Valleys of Antarctica may p...
Sampling of the Martian surface materials should be based on the experience gained from the study of...
Field sites in the Antarctic Dry Valleys serve as useful (and relatively nearby) analogs to the surf...
The Antarctic Dry Valleys (ADV) provide a unique terrestrial analog for Martian surface processes as...
The Dry Valleys of Antarctica are possibly one of the best analogs on Earth of the environment at th...
The occurrence of extensive valley networks and layered deposits of phyllosilicates and sulfates dur...
Mineralogical and geochemical data returned by a flotilla of Mars orbiters and landers over the past...
Soils of continental Antarctica are forming in one of the most severe terrestrial environments. Cont...
Geochemical analysis of soils, including the determination of pH, salinity and organic content can p...
Primary objectives for exploration of Mars include determination of: (1) the distribution, abundance...
Soil crystallinity is largely determined by leaching rates, as high leaching rates favor the rapid p...
Surface weathering on Earth is driven by precipitation (rain/snow melt). Here we summarize the influ...
The hyper-arid, cryotic, wind-dominated conditions in the high-elevation McMurdo Dry Valleys of Anta...
Subaerial environments of interest for Mars Sample Return include surface or near-surface sites not ...
The Chemistry and Mineralogy (CheMin) instrument onboard the Mars Curiosity rover has detected abund...
Terrestrial weathering processes in cold-desert climates such as the Dry Valleys of Antarctica may p...
Sampling of the Martian surface materials should be based on the experience gained from the study of...
Field sites in the Antarctic Dry Valleys serve as useful (and relatively nearby) analogs to the surf...
The Antarctic Dry Valleys (ADV) provide a unique terrestrial analog for Martian surface processes as...
The Dry Valleys of Antarctica are possibly one of the best analogs on Earth of the environment at th...
The occurrence of extensive valley networks and layered deposits of phyllosilicates and sulfates dur...
Mineralogical and geochemical data returned by a flotilla of Mars orbiters and landers over the past...
Soils of continental Antarctica are forming in one of the most severe terrestrial environments. Cont...
Geochemical analysis of soils, including the determination of pH, salinity and organic content can p...
Primary objectives for exploration of Mars include determination of: (1) the distribution, abundance...
Soil crystallinity is largely determined by leaching rates, as high leaching rates favor the rapid p...
Surface weathering on Earth is driven by precipitation (rain/snow melt). Here we summarize the influ...
The hyper-arid, cryotic, wind-dominated conditions in the high-elevation McMurdo Dry Valleys of Anta...
Subaerial environments of interest for Mars Sample Return include surface or near-surface sites not ...
The Chemistry and Mineralogy (CheMin) instrument onboard the Mars Curiosity rover has detected abund...