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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Canada
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Western Canada
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Alberta (1)
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North America
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Western Canada Sedimentary Basin (1)
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United States
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Colorado (1)
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New Mexico (1)
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commodities
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bitumens (1)
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brines (1)
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petroleum
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natural gas (1)
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fossils
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Invertebrata
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Protista
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Foraminifera (1)
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microfossils (1)
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Plantae
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algae
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Coccolithophoraceae (1)
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geologic age
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Mesozoic
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Cretaceous
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Upper Cretaceous
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Belle Fourche Shale (1)
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Cenomanian (1)
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Turonian (1)
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Jurassic
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Middle Jurassic
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Todilto Formation (1)
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minerals
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carbonates
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calcite (1)
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dolomite (1)
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sulfates
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anhydrite (1)
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bassanite (1)
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gypsum (1)
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Primary terms
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bitumens (1)
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brines (1)
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Canada
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Western Canada
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Alberta (1)
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Invertebrata
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Protista
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Foraminifera (1)
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-
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Mesozoic
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Cretaceous
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Upper Cretaceous
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Belle Fourche Shale (1)
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Cenomanian (1)
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Turonian (1)
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Jurassic
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Middle Jurassic
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Todilto Formation (1)
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North America
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Western Canada Sedimentary Basin (1)
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petroleum
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natural gas (1)
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Plantae
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algae
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Coccolithophoraceae (1)
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sedimentary rocks
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chemically precipitated rocks
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evaporites (1)
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clastic rocks
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mudstone (1)
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United States
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Colorado (1)
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New Mexico (1)
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sedimentary rocks
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sedimentary rocks
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chemically precipitated rocks
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evaporites (1)
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clastic rocks
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mudstone (1)
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Porosity and pore size distribution in mudrocks from the Belle Fourche and Second White Specks Formations in Alberta, Canada
The Jurassic Todilto Formation of NW New Mexico and SW Colorado, USA, has utility as an analog of Martian flood evaporites. The Todilto Formation is a concentrically and vertically zoned carbonate (calcite with minor late dolomite) to sulfate (gypsum) evaporite deposit that developed over a short time span (10 4 –10 5 yr) after rapid flooding of the vast dune field of the Entrada Formation. Within the limits of the very different hydrogeologic environments of Mars and Earth, the Todilto setting of short-lived brine evolution in a largely eolian environment, with terminal formation of a salt hydrate common to both planets (gypsum), provides a useful field area for descriptive and petrogenetic studies of evaporite evolution and interaction with a porous, sandy substrate. The Todilto Formation has an added feature of interest in its association with bituminous materials that have likely microbial precursors, providing a brine-microorganism association that may represent a potential setting for primitive life as might be found on Mars.