Blue lace agate and chalcedony pseudomorphs from Ysterputs in southern Namibia
Megan D. Welman-Purchase, Joanna Wicht, Duncan E. Miller, Frederick Roelofse
Abstract
Megan D. Welman-Purchase, Joanna Wicht, Duncan E. Miller, Frederick Roelofse
Abstract
The Blue Lace Agate mine exploited a hydrothermal vein deposit at Ysterputs in southern Namibia until 2017. The deposit occupies a shear zone and associated fractures in a Jurassic dolerite sill that intruded a Permian marine deposit. Much of the chalcedony constituting the agate is the length-slow variety ‘quartzine’, indicating deposition in a saline environment, presumably derived from the marine sediments. Associated minerals are dolomite, forming an initial coating on the fissure wall and brecciated dolerite fragments, as well as late-stage crystals of ankerite, calcite, dolomite, gypsum and quartz. Ysterputs is also the source of cubic chalcedony pseudomorphs, originally thought to be after fluorite, but probably after melanophlogite.
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The Blue Lace Agate mine exploited a hydrothermal vein deposit at Ysterputs in southern Namibia until 2017. The deposit occupies a shear zone and associated fractures in a Jurassic dolerite sill that intruded a Permian marine deposit. Much of the chalcedony constituting the agate is the length-slow variety ‘quartzine’, indicating deposition in a saline environment, presumably derived from the marine sediments. Associated minerals are dolomite, forming an initial coating on the fissure wall and brecciated dolerite fragments, as well as late-stage crystals of ankerite, calcite, dolomite, gypsum and quartz. Ysterputs is also the source of cubic chalcedony pseudomorphs, originally thought to be after fluorite, but probably after melanophlogite.
Key concepts: Pseudomorph, Chalcedony, Geology, Geochemistry, Archaeology, Paleontology, Geography, Quartz