The Geologic Story of Colorado National Monument: Revised EditionLohman, Stanley William
Science
The Geologic Story of Colorado National Monument: Revised Edition
Lohman, Stanley William
Colorado National Monument (Colo.); Geology -- Colorado -- Colorado National Monument
These same erosion processes are going on today, but their effects are
scarcely noticeable from year to year except in soft earth after storms
or floods. During eons of time, however, the mountains were again worn
down to a nearly level plain. Missing between the red Chinle and the
dark rocks are many thousands of feet of rocks, some of which once
covered this surface and still occur in other regions less affected by
erosion. This gap in the rock record, which represents more than a
billion years, is known to geologists as a great unconformity. Missing
are part of the lower Proterozoic rocks, all the upper Proterozoic
rocks, all those of the Paleozoic Era, and part of those of the Triassic
Period of the Mesozoic Era. (See figs. 7 and 61.)
Traces of primitive life have been found in some Proterozoic rocks in
the form of lime-secreting algae and casts of worms, but no fossils of
more advanced types have been found because at that time the primitive
animals seemingly had not yet developed shells or skeletons. The ensuing
Paleozoic Era saw the appearance and great development of shellfish,
fish, amphibians, reptiles, and primitive plants. Some of the rock
layers of ages missing at the Monument may be seen as near as Glenwood
Springs to the northeast and Gateway to the southwest.
The Age of Reptiles
All the layers of sedimentary rocks preserved in the Monument above the
dark Proterozoic ones were deposited by wind and water during the
Mesozoic Era. This long era has been called the age of reptiles, for
reptiles, including dinosaurs (meaning terrible lizards), were then the
dominant land animals. The Mesozoic Era has been divided into three
parts—the Triassic, Jurassic, and Cretaceous Periods. Rocks of each of
these periods crop out in the Monument.
Early Landscape
By late Triassic time the Monument was part of a nearly flat plain cut
on the dark Proterozoic rocks, but there were hills or low mountains to
the northeast. Streams from these hills dropped mud, silt, sand, and
some gravel on this plain and into many small lakes that occupied the
gentle depressions. Later, these deposits hardened mainly into red
siltstone and sandstone, but thin beds of gravel were cemented to form
conglomerate, and thin beds of limestone formed in some of the shallow
lakes by the precipitation of the mineral calcium carbonate. These
rocks, which comprise the Chinle (pronounced Chin-lee) Formation, are
only 80 to 100 feet thick in the Monument but are as much as 700 feet
thick near Moab, Utah, southwest of the Uncompahgre Plateau, where the
entire formation is present. There, the Chinle rests on still older
Triassic and Paleozoic rocks—all absent in the Monument for the reasons
noted previously. In some parts of the Plateau, sandstone or
conglomerate beds in the lower part of the Chinle yield uranium ore, but
these beds were not deposited in or near the Monument.
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