Septaria or septarian concretion is a mineral precipitation (calcite) between spaces of a sedimentary rock. This sample comes from Madagascar. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/septaria-or-septarian-concretion-is-a-mineral-precipitation-calcite-between-spaces-of-a-sedimentary-rock-this-sample-comes-from-madagascar-image560045659.html
RF2RF47XK–Septaria or septarian concretion is a mineral precipitation (calcite) between spaces of a sedimentary rock. This sample comes from Madagascar.
Cooled lava with cracks, folds, and mineral precipitation, taken in 1992, Hawai'i Volcanoes National Park, Hawaii, Hawaiian Islands, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/cooled-lava-with-cracks-folds-and-mineral-precipitation-taken-in-1992-hawaii-volcanoes-national-park-hawaii-hawaiian-islands-usa-image600455563.html
RF2WTW35F–Cooled lava with cracks, folds, and mineral precipitation, taken in 1992, Hawai'i Volcanoes National Park, Hawaii, Hawaiian Islands, USA
Moeraki boulder. NZ, A concretion is a hard, compact mass of matter formed by the precipitation of mineral cement within the spaces between particles, and is found in sedimentary rock or soil. Concretions are often ovoid or spherical in shape, although irregular shapes also occur Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/moeraki-boulder-nz-a-concretion-is-a-hard-compact-mass-of-matter-formed-by-the-precipitation-of-mineral-cement-within-the-spaces-between-particles-and-is-found-in-sedimentary-rock-or-soil-concretions-are-often-ovoid-or-spherical-in-shape-although-irregular-shapes-also-occur-image573374983.html
RM2T8RDHY–Moeraki boulder. NZ, A concretion is a hard, compact mass of matter formed by the precipitation of mineral cement within the spaces between particles, and is found in sedimentary rock or soil. Concretions are often ovoid or spherical in shape, although irregular shapes also occur
Malachite is a copper carbonate hydroxide mineral. This opaque, green banded mineral crystallises in the monoclinic crystal system and most often forms botryoidal, fibrous, or stalagmitic masses in fractures and spaces, deep underground where the water table and hydrothermal fluids provide the means for chemical precipitation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-malachite-is-a-copper-carbonate-hydroxide-mineral-this-opaque-green-76387231.html
RMEC7MKB–Malachite is a copper carbonate hydroxide mineral. This opaque, green banded mineral crystallises in the monoclinic crystal system and most often forms botryoidal, fibrous, or stalagmitic masses in fractures and spaces, deep underground where the water table and hydrothermal fluids provide the means for chemical precipitation.
Septarian concretion or (septarian nodules) from Morocco. Dense mass formed by precipitation of mineral cement in sedimentary rock or soil which is later cracked and filled with other material, in this case calcite. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-septarian-concretion-or-septarian-nodules-from-morocco-dense-mass-174773014.html
RMM49GNA–Septarian concretion or (septarian nodules) from Morocco. Dense mass formed by precipitation of mineral cement in sedimentary rock or soil which is later cracked and filled with other material, in this case calcite.
Central precipitation ponds at Parys Mountain copper mines, Anglesey: metallic copper & yellow ochre pigment produced by electrolysis. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-central-precipitation-ponds-at-parys-mountain-copper-mines-anglesey-84373335.html
RMEW7F1B–Central precipitation ponds at Parys Mountain copper mines, Anglesey: metallic copper & yellow ochre pigment produced by electrolysis.
travertine terraces at mammoth hot springs in yellowstone national park, wyoming Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/travertine-terraces-at-mammoth-hot-springs-in-yellowstone-national-park-wyoming-image614959839.html
RM2XMDRFB–travertine terraces at mammoth hot springs in yellowstone national park, wyoming
Crystallized salt particles on the surface of a water hole with a highly concentrated mineral salt solution in the salt crust of the Assale salt Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/crystallized-salt-particles-on-the-surface-of-a-water-hole-with-a-highly-concentrated-mineral-salt-solution-in-the-salt-crust-of-the-assale-salt-image370928396.html
RM2CFD6XM–Crystallized salt particles on the surface of a water hole with a highly concentrated mineral salt solution in the salt crust of the Assale salt
WY05048-00....WYOMING - Dead tree in the Lower Terrace of Mammoth Hot Springs, Yellowstone National Park. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/wy05048-00wyoming-dead-tree-in-the-lower-terrace-of-mammoth-hot-springs-yellowstone-national-park-image480547942.html
RM2JWPRPE–WY05048-00....WYOMING - Dead tree in the Lower Terrace of Mammoth Hot Springs, Yellowstone National Park.
Septarian concretion or (septarian nodule), Morocco, a dense mass formed by precipitation of mineral cement in sedimentary rocks Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-septarian-concretion-or-septarian-nodule-morocco-a-dense-mass-formed-107433408.html
RMG6P0BC–Septarian concretion or (septarian nodule), Morocco, a dense mass formed by precipitation of mineral cement in sedimentary rocks
WY05045-00.....WYOMING -Dead tree in the Lower Terraces of Mammoth Hot Springs, Yellowstone National Park. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/wy05045-00wyoming-dead-tree-in-the-lower-terraces-of-mammoth-hot-springs-yellowstone-national-park-image480547392.html
RM2JWPR2T–WY05045-00.....WYOMING -Dead tree in the Lower Terraces of Mammoth Hot Springs, Yellowstone National Park.
Septarian concretion or (septarian nodule), France, a dense mass formed by precipitation of mineral cement in sedimentary rock Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-septarian-concretion-or-septarian-nodule-france-a-dense-mass-formed-107458918.html
RMG6R4XE–Septarian concretion or (septarian nodule), France, a dense mass formed by precipitation of mineral cement in sedimentary rock
Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-precipitation-geoforms-in-the-mining-reservoir-of-gossan-at-riotinto-huelva-image467932200.html
RF2J58488–Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva
A concretion is a hard, compact mass of matter formed by the precipitation of mineral cement within the spaces between particles, and is found in sedimentary rock or soil. Concretions are often ovoid or spherical in shape, although irregular shapes also occur. The Moeraki Boulders are unusually large and spherical boulders lying along a stretch of Koekohe Beach on the wave-cut Otago coast of New Zealand between Moeraki and Hampden. They occur scattered either as isolated or clusters of boulders within a stretch of beach where they have been protected in a scientific reserve. The erosion by wav Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-a-concretion-is-a-hard-compact-mass-of-matter-formed-by-the-precipitation-129640789.html
RMHEWJ45–A concretion is a hard, compact mass of matter formed by the precipitation of mineral cement within the spaces between particles, and is found in sedimentary rock or soil. Concretions are often ovoid or spherical in shape, although irregular shapes also occur. The Moeraki Boulders are unusually large and spherical boulders lying along a stretch of Koekohe Beach on the wave-cut Otago coast of New Zealand between Moeraki and Hampden. They occur scattered either as isolated or clusters of boulders within a stretch of beach where they have been protected in a scientific reserve. The erosion by wav
Geological Vein, illustration showing vein with cavity (center) splitting quartz into two portions. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-geological-vein-illustration-showing-vein-with-cavity-center-splitting-38935032.html
RFC79J0T–Geological Vein, illustration showing vein with cavity (center) splitting quartz into two portions.
Formation of stalactites resembling organ pipes, Cango Caves, Oudtshoorn, Western Cape, South Africa, 1981 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/formation-of-stalactites-resembling-organ-pipes-cango-caves-oudtshoorn-western-cape-south-africa-1981-image388265789.html
RM2DFK0Y9–Formation of stalactites resembling organ pipes, Cango Caves, Oudtshoorn, Western Cape, South Africa, 1981
dead sea salt Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-dead-sea-salt-50345137.html
RFCWWBMH–dead sea salt
Coralloidal aragonite. Aragonite is a carbonate mineral formed by precipitation or biological processes. The sample comes from Macael, Almeria, Andalu Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/coralloidal-aragonite-aragonite-is-a-carbonate-mineral-formed-by-precipitation-or-biological-processes-the-sample-comes-from-macael-almeria-andalu-image559088920.html
RF2RDGKHC–Coralloidal aragonite. Aragonite is a carbonate mineral formed by precipitation or biological processes. The sample comes from Macael, Almeria, Andalu
Cooled lava with cracks, folds, and mineral precipitation, taken in 1992, Hawai'i Volcanoes National Park, Hawaii, Hawaiian Islands, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/cooled-lava-with-cracks-folds-and-mineral-precipitation-taken-in-1992-hawaii-volcanoes-national-park-hawaii-hawaiian-islands-usa-image600455546.html
RF2WTW34X–Cooled lava with cracks, folds, and mineral precipitation, taken in 1992, Hawai'i Volcanoes National Park, Hawaii, Hawaiian Islands, USA
Precipitation of salt on the volcanic rocks in Salar de Uyuni, The world's largest salt flat in Bolivia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/precipitation-of-salt-on-the-volcanic-rocks-in-salar-de-uyuni-the-worlds-largest-salt-flat-in-bolivia-image619709979.html
RM2Y066B7–Precipitation of salt on the volcanic rocks in Salar de Uyuni, The world's largest salt flat in Bolivia
Israel, Dead Sea, salt crystalizing on plants caused by water evaporation Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/israel-dead-sea-salt-crystalizing-on-plants-caused-by-water-evaporation-image438716219.html
RF2GDN70B–Israel, Dead Sea, salt crystalizing on plants caused by water evaporation
Precipitate of potassium dichromate crystals. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/precipitate-of-potassium-dichromate-crystals-image240682449.html
RFRYG0WN–Precipitate of potassium dichromate crystals.
Salt precipitation in eroded black oxidized limestone cavities near Mediterranean sea. July, Can Pastilla, Mallorca Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-salt-precipitation-in-eroded-black-oxidized-limestone-cavities-near-77950612.html
RMEEPXPC–Salt precipitation in eroded black oxidized limestone cavities near Mediterranean sea. July, Can Pastilla, Mallorca
Detail of precipitated sulphur / sulfur minerals on surface of tailings waste from nearby mines on outskirts of Potosi, Bolivia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/detail-of-precipitated-sulphur-sulfur-minerals-on-surface-of-tailings-waste-from-nearby-mines-on-outskirts-of-potosi-bolivia-image591630359.html
RM2WAF2FK–Detail of precipitated sulphur / sulfur minerals on surface of tailings waste from nearby mines on outskirts of Potosi, Bolivia
Mineral water stream covered the slope with travertine deposits, Cross Pass, Gudauri, Georgia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mineral-water-stream-covered-the-slope-with-travertine-deposits-cross-pass-gudauri-georgia-image348001865.html
RM2B64RX1–Mineral water stream covered the slope with travertine deposits, Cross Pass, Gudauri, Georgia
Specimen illustrations for a monograph on clay stones by J.M. Arms Sheldon, c1900. (Among the books published by American entomologist, educator, historian and museum curator Jennie Maria Arms Sheldon is "Concretions from the Champlain Clays of the Connecticut Valley" [1900]. A concretion is a hard, compact mass of matter formed by the precipitation of mineral cement within the spaces between particles, It is found in sedimentary rock or soil). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/specimen-illustrations-for-a-monograph-on-clay-stones-by-jm-arms-sheldon-c1900-among-the-books-published-by-american-entomologist-educator-historian-and-museum-curator-jennie-maria-arms-sheldon-is-quotconcretions-from-the-champlain-clays-of-the-connecticut-valleyquot-1900-a-concretion-is-a-hard-compact-mass-of-matter-formed-by-the-precipitation-of-mineral-cement-within-the-spaces-between-particles-it-is-found-in-sedimentary-rock-or-soil-image482039059.html
RM2K06NMK–Specimen illustrations for a monograph on clay stones by J.M. Arms Sheldon, c1900. (Among the books published by American entomologist, educator, historian and museum curator Jennie Maria Arms Sheldon is "Concretions from the Champlain Clays of the Connecticut Valley" [1900]. A concretion is a hard, compact mass of matter formed by the precipitation of mineral cement within the spaces between particles, It is found in sedimentary rock or soil).
A huge, rushing waterfall seen through atmospheric rain among a dense, green forest. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-huge-rushing-waterfall-seen-through-atmospheric-rain-among-a-dense-green-forest-image356418305.html
RF2BKT755–A huge, rushing waterfall seen through atmospheric rain among a dense, green forest.
Close-Up of Rust and Corrosion Textures on Metal Surface Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/close-up-of-rust-and-corrosion-textures-on-metal-surface-image575247517.html
RF2TBTP25–Close-Up of Rust and Corrosion Textures on Metal Surface
WY05047-00.....WYOMING -Dead trees in the Lower Terraces of Mammoth Hot Springs, Yellowstone National Park. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/wy05047-00wyoming-dead-trees-in-the-lower-terraces-of-mammoth-hot-springs-yellowstone-national-park-image480547705.html
RM2JWPRE1–WY05047-00.....WYOMING -Dead trees in the Lower Terraces of Mammoth Hot Springs, Yellowstone National Park.
Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-precipitation-geoforms-in-the-mining-reservoir-of-gossan-at-riotinto-huelva-image467932212.html
RF2J5848M–Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva
Crystallized salt rocks along the shores of the Dead Sea, Israel. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/crystallized-salt-rocks-along-the-shores-of-the-dead-sea-israel-image335857146.html
RM2AEBH62–Crystallized salt rocks along the shores of the Dead Sea, Israel.
Geological Vein, illustration showing vertical gash veins of lead ore (shaded) within galena (unshaded). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-geological-vein-illustration-showing-vertical-gash-veins-of-lead-ore-38935059.html
RFC79J1R–Geological Vein, illustration showing vertical gash veins of lead ore (shaded) within galena (unshaded).
Blue water drops. Watercolor style marker illustration. Isolated hand drawn picture with sky elements. Falling raindrop. Clipart for prints, clothes Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/blue-water-drops-watercolor-style-marker-illustration-isolated-hand-drawn-picture-with-sky-elements-falling-raindrop-clipart-for-prints-clothes-image615235836.html
RF2XMXBGC–Blue water drops. Watercolor style marker illustration. Isolated hand drawn picture with sky elements. Falling raindrop. Clipart for prints, clothes
Silica sinter deposit and hotsprings at El Tatio geothermal field, Antofagasta region, Chile Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/silica-sinter-deposit-and-hotsprings-at-el-tatio-geothermal-field-antofagasta-region-chile-image466916433.html
RF2J3HTJW–Silica sinter deposit and hotsprings at El Tatio geothermal field, Antofagasta region, Chile
Coralloidal aragonite. Aragonite is a carbonate mineral formed by precipitation or biological processes. The sample comes from Macael, Almeria, Andalu Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/coralloidal-aragonite-aragonite-is-a-carbonate-mineral-formed-by-precipitation-or-biological-processes-the-sample-comes-from-macael-almeria-andalu-image559088922.html
RF2RDGKHE–Coralloidal aragonite. Aragonite is a carbonate mineral formed by precipitation or biological processes. The sample comes from Macael, Almeria, Andalu
Cooled lava with cracks, folds, and mineral precipitation, taken in 1992, Hawai'i Volcanoes National Park, Hawaii, Hawaiian Islands, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/cooled-lava-with-cracks-folds-and-mineral-precipitation-taken-in-1992-hawaii-volcanoes-national-park-hawaii-hawaiian-islands-usa-image600455552.html
RF2WTW354–Cooled lava with cracks, folds, and mineral precipitation, taken in 1992, Hawai'i Volcanoes National Park, Hawaii, Hawaiian Islands, USA
Tourist at Upper Geyser Basin, Yellowstone National Park, Wyoming, USA; Wyoming, United States of America Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tourist-at-upper-geyser-basin-yellowstone-national-park-wyoming-usa-wyoming-united-states-of-america-image565807218.html
RF2RTEMTJ–Tourist at Upper Geyser Basin, Yellowstone National Park, Wyoming, USA; Wyoming, United States of America
Travertine is a sedimentary rock formed by calcium carbonate precipitation on mineral springs. This photo was taken in Cascada de la Hiedra, Teruel pr Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/travertine-is-a-sedimentary-rock-formed-by-calcium-carbonate-precipitation-on-mineral-springs-this-photo-was-taken-in-cascada-de-la-hiedra-teruel-pr-image570495521.html
RF2T448T1–Travertine is a sedimentary rock formed by calcium carbonate precipitation on mineral springs. This photo was taken in Cascada de la Hiedra, Teruel pr
A close-up of salt crystallized on the sand on the ground, desert, nature Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-close-up-of-salt-crystallized-on-the-sand-on-the-ground-desert-nature-image488229368.html
RF2KA8NF4–A close-up of salt crystallized on the sand on the ground, desert, nature
Salt precipitation in eroded black oxidized limest Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-salt-precipitation-in-eroded-black-oxidized-limest-103512005.html
RMG0BAH9–Salt precipitation in eroded black oxidized limest
Evaporites are sedimentary rocks formed by precipitation when water evaporate. This evaporite is mainly composed by sylvite or sylvine. This photo was Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/evaporites-are-sedimentary-rocks-formed-by-precipitation-when-water-evaporate-this-evaporite-is-mainly-composed-by-sylvite-or-sylvine-this-photo-was-image570495116.html
RF2T4489G–Evaporites are sedimentary rocks formed by precipitation when water evaporate. This evaporite is mainly composed by sylvite or sylvine. This photo was
Mineral water stream covered the slope with travertine deposits, Cross Pass, Gudauri, Georgia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mineral-water-stream-covered-the-slope-with-travertine-deposits-cross-pass-gudauri-georgia-image348001869.html
RM2B64RX5–Mineral water stream covered the slope with travertine deposits, Cross Pass, Gudauri, Georgia
Mineral deposits with feet on walkway with algae deposits from hot springs (sintering), Emerald Terrace, Orakei Korako Cave and Thermal Park, Rotorua, Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mineral-deposits-with-feet-on-walkway-with-algae-deposits-from-hot-springs-sintering-emerald-terrace-orakei-korako-cave-and-thermal-park-rotorua-image545874906.html
RM2PM2N0A–Mineral deposits with feet on walkway with algae deposits from hot springs (sintering), Emerald Terrace, Orakei Korako Cave and Thermal Park, Rotorua,
travertine terraces at mammoth hot springs in yellowstone national park, wyoming Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/travertine-terraces-at-mammoth-hot-springs-in-yellowstone-national-park-wyoming-image504849857.html
RM2M99W41–travertine terraces at mammoth hot springs in yellowstone national park, wyoming
geothermal area Vondugil Landmannalaugar Iceland Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/geothermal-area-vondugil-landmannalaugar-iceland-image6489273.html
RMA5NMYA–geothermal area Vondugil Landmannalaugar Iceland
WY05046-00.....WYOMING -Dead trees in the Lower Terraces of Mammoth Hot Springs, Yellowstone National Park. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/wy05046-00wyoming-dead-trees-in-the-lower-terraces-of-mammoth-hot-springs-yellowstone-national-park-image480547570.html
RM2JWPR96–WY05046-00.....WYOMING -Dead trees in the Lower Terraces of Mammoth Hot Springs, Yellowstone National Park.
Precipitation and settling ponds containing sulphuric acid at Parys Mountain near Amlwch Isle of Anglesey North Wales UK Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-precipitation-and-settling-ponds-containing-sulphuric-acid-at-parys-23102329.html
RMB9GB75–Precipitation and settling ponds containing sulphuric acid at Parys Mountain near Amlwch Isle of Anglesey North Wales UK
Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-precipitation-geoforms-in-the-mining-reservoir-of-gossan-at-riotinto-huelva-image467932210.html
RF2J5848J–Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva
Travertine is a sedimentary rock, a type of limestone (calcium carbonate), deposited by mineral springs. This photo was taken in Collegats, Lleida, Ca Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/travertine-is-a-sedimentary-rock-a-type-of-limestone-calcium-carbonate-deposited-by-mineral-springs-this-photo-was-taken-in-collegats-lleida-ca-image559925335.html
RF2REXPDB–Travertine is a sedimentary rock, a type of limestone (calcium carbonate), deposited by mineral springs. This photo was taken in Collegats, Lleida, Ca
Geological Vein, illustration showing two veins splitting two separate layers of quartz into four portions. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-geological-vein-illustration-showing-two-veins-splitting-two-separate-38935041.html
RFC79J15–Geological Vein, illustration showing two veins splitting two separate layers of quartz into four portions.
Mammoth Hot Springs, Yellowstone NP, 20th Century Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-mammoth-hot-springs-yellowstone-np-20th-century-135093708.html
RMHRP1B8–Mammoth Hot Springs, Yellowstone NP, 20th Century
Parys Opencast copper mine Anglesey North Wales Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-parys-opencast-copper-mine-anglesey-north-wales-19602557.html
RMB3TY79–Parys Opencast copper mine Anglesey North Wales
Uranium, radioactive ore on isolated white background, mineral and energy resource , macro photography Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/uranium-radioactive-ore-on-isolated-white-background-mineral-and-energy-resource-macro-photography-image554149791.html
RF2R5FKKY–Uranium, radioactive ore on isolated white background, mineral and energy resource , macro photography
Yellow precipitation of sulphur at a secondary source of the hot springs of Main near Madaba just before the Dead Sea, jordan Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/yellow-precipitation-of-sulphur-at-a-secondary-source-of-the-hot-springs-of-main-near-madaba-just-before-the-dead-sea-jordan-image185298418.html
RFMND20J–Yellow precipitation of sulphur at a secondary source of the hot springs of Main near Madaba just before the Dead Sea, jordan
Salt precipitation in eroded black oxidized limestone cavities near Mediterranean sea. July, Can Pastilla, Mallorca. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-salt-precipitation-in-eroded-black-oxidized-limestone-cavities-near-78891460.html
RFEG9PT4–Salt precipitation in eroded black oxidized limestone cavities near Mediterranean sea. July, Can Pastilla, Mallorca.
Calcrete Carbonate, also Hardpan, Duricrust, Caliche, Estrie, Quebec Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/calcrete-carbonate-also-hardpan-duricrust-caliche-estrie-quebec-image344343274.html
RM2B065A2–Calcrete Carbonate, also Hardpan, Duricrust, Caliche, Estrie, Quebec
Cannon Ball Concretions, Theodore Roosevelt National Park, ND, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-cannon-ball-concretions-theodore-roosevelt-national-park-nd-usa-135165479.html
RMHRW8XF–Cannon Ball Concretions, Theodore Roosevelt National Park, ND, USA
Caves of Han are a network of underground caves in Han Sur Lesse close to Rochefort, Wallonia, Belgium. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/caves-of-han-are-a-network-of-underground-caves-in-han-sur-lesse-close-to-rochefort-wallonia-belgium-image424948401.html
RF2FKA20H–Caves of Han are a network of underground caves in Han Sur Lesse close to Rochefort, Wallonia, Belgium.
Salt precipitation in eroded black oxidized limest Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-salt-precipitation-in-eroded-black-oxidized-limest-103511999.html
RMG0BAH3–Salt precipitation in eroded black oxidized limest
Cannon Ball Concretions, Theodore Roosevelt National Park, ND, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-cannon-ball-concretions-theodore-roosevelt-national-park-nd-usa-135165455.html
RMHRW8WK–Cannon Ball Concretions, Theodore Roosevelt National Park, ND, USA
Mineral water stream covered the slope with travertine deposits, Cross Pass, Gudauri, Georgia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mineral-water-stream-covered-the-slope-with-travertine-deposits-cross-pass-gudauri-georgia-image348001859.html
RM2B64RWR–Mineral water stream covered the slope with travertine deposits, Cross Pass, Gudauri, Georgia
Mineral deposits with feet on walkway with algae deposits from hot springs (sintering), Emerald Terrace, Orakei Korako Cave and Thermal Park, Rotorua, Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mineral-deposits-with-feet-on-walkway-with-algae-deposits-from-hot-springs-sintering-emerald-terrace-orakei-korako-cave-and-thermal-park-rotorua-image545875039.html
RM2PM2N53–Mineral deposits with feet on walkway with algae deposits from hot springs (sintering), Emerald Terrace, Orakei Korako Cave and Thermal Park, Rotorua,
Cannon Ball Concretions, Theodore Roosevelt National Park, ND, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-cannon-ball-concretions-theodore-roosevelt-national-park-nd-usa-135165453.html
RMHRW8WH–Cannon Ball Concretions, Theodore Roosevelt National Park, ND, USA
WY05049-00.....WYOMING -Dead trees in the Lower Terraces of Mammoth Hot Springs, Yellowstone National Park. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/wy05049-00wyoming-dead-trees-in-the-lower-terraces-of-mammoth-hot-springs-yellowstone-national-park-image480548169.html
RM2JWPT2H–WY05049-00.....WYOMING -Dead trees in the Lower Terraces of Mammoth Hot Springs, Yellowstone National Park.
Gyokusendo Limestone Cave, Okinawa World, Okinawa, Japan, Asia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-gyokusendo-limestone-cave-okinawa-world-okinawa-japan-asia-32397085.html
RMBTKPPN–Gyokusendo Limestone Cave, Okinawa World, Okinawa, Japan, Asia
Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-precipitation-geoforms-in-the-mining-reservoir-of-gossan-at-riotinto-huelva-image467932204.html
RF2J5848C–Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva
Travertine is a sedimentary rock, a type of limestone (calcium carbonate), deposited by mineral springs. This photo was taken in Collegats (Noguera Pa Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/travertine-is-a-sedimentary-rock-a-type-of-limestone-calcium-carbonate-deposited-by-mineral-springs-this-photo-was-taken-in-collegats-noguera-pa-image559925330.html
RF2REXPD6–Travertine is a sedimentary rock, a type of limestone (calcium carbonate), deposited by mineral springs. This photo was taken in Collegats (Noguera Pa
Geological Vein, illustration showing quartz vein (center) splitting a baryte layer into two, vintage engraved illustration. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-geological-vein-illustration-showing-quartz-vein-center-splitting-38934995.html
RFC79HYF–Geological Vein, illustration showing quartz vein (center) splitting a baryte layer into two, vintage engraved illustration.
Angel Terrace, Yellowstone NP, 20th Century Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-angel-terrace-yellowstone-np-20th-century-135093712.html
RMHRP1BC–Angel Terrace, Yellowstone NP, 20th Century
Parys Opencast copper mine Anglesey North Wales Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-parys-opencast-copper-mine-anglesey-north-wales-19584426.html
RMB3T43P–Parys Opencast copper mine Anglesey North Wales
Uranium, radioactive ore on isolated white background, mineral and energy resource , macro photography Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/uranium-radioactive-ore-on-isolated-white-background-mineral-and-energy-resource-macro-photography-image550371943.html
RF2PYBH0R–Uranium, radioactive ore on isolated white background, mineral and energy resource , macro photography
The ore deposits of Utah . bonate monheimite. The relative pro-portion of the metals in the mineral is probablydependent on their relative concentration inthe solution. The carbonate thus formed maysubsequently alter to limonite, calamine, hy-drozincite, aurichalcite, and probably otherminerals. If the solutions in their downward journeydo not encounter limestone but traversequartzite or other siliceous materials themetials show little tendency to precipitate andare probably either carried away in solutionor are so dispersed before precipitation that 1 Knopf, Adolph, Mineral resources of the I Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-ore-deposits-of-utah-bonate-monheimite-the-relative-pro-portion-of-the-metals-in-the-mineral-is-probablydependent-on-their-relative-concentration-inthe-solution-the-carbonate-thus-formed-maysubsequently-alter-to-limonite-calamine-hy-drozincite-aurichalcite-and-probably-otherminerals-if-the-solutions-in-their-downward-journeydo-not-encounter-limestone-but-traversequartzite-or-other-siliceous-materials-themetials-show-little-tendency-to-precipitate-andare-probably-either-carried-away-in-solutionor-are-so-dispersed-before-precipitation-that-1-knopf-adolph-mineral-resources-of-the-i-image338078382.html
RM2AJ0PBX–The ore deposits of Utah . bonate monheimite. The relative pro-portion of the metals in the mineral is probablydependent on their relative concentration inthe solution. The carbonate thus formed maysubsequently alter to limonite, calamine, hy-drozincite, aurichalcite, and probably otherminerals. If the solutions in their downward journeydo not encounter limestone but traversequartzite or other siliceous materials themetials show little tendency to precipitate andare probably either carried away in solutionor are so dispersed before precipitation that 1 Knopf, Adolph, Mineral resources of the I
Salt precipitation in eroded black oxidized limestone cavities near saline environment in Majorca in the Mediterranean ocean. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-salt-precipitation-in-eroded-black-oxidized-limestone-cavities-near-173791204.html
RFM2MTCM–Salt precipitation in eroded black oxidized limestone cavities near saline environment in Majorca in the Mediterranean ocean.
Precipitated salt on the floor at Salar de Uyuni in Bolivia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/precipitated-salt-on-the-floor-at-salar-de-uyuni-in-bolivia-image619252382.html
RM2XYDAME–Precipitated salt on the floor at Salar de Uyuni in Bolivia
Vitamin C crystal photographed in polarised light. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/vitamin-c-crystal-photographed-in-polarised-light-image6852290.html
RMA857T3–Vitamin C crystal photographed in polarised light.
pamukkale travertine,Traverten is a versatile, slip formed by chemical reaction post-precipitation due to various causes and environments. Geological Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/pamukkale-travertinetraverten-is-a-versatile-slip-formed-by-chemical-reaction-post-precipitation-due-to-various-causes-and-environments-geological-image178238868.html
RFM9YDDT–pamukkale travertine,Traverten is a versatile, slip formed by chemical reaction post-precipitation due to various causes and environments. Geological
Journey to Thrihnukagigur volcano, magma chamber with ore inclusions, Iceland Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/journey-to-thrihnukagigur-volcano-magma-chamber-with-ore-inclusions-iceland-image402238223.html
RF2EABEXR–Journey to Thrihnukagigur volcano, magma chamber with ore inclusions, Iceland
A view of Soda Dam a magnificent natural dam formed in the Jemez River Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-a-view-of-soda-dam-a-magnificent-natural-dam-formed-in-the-jemez-river-17607995.html
RMB0J34Y–A view of Soda Dam a magnificent natural dam formed in the Jemez River
Mineral water stream covered the slope with travertine deposits, Cross Pass, Gudauri, Georgia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mineral-water-stream-covered-the-slope-with-travertine-deposits-cross-pass-gudauri-georgia-image348001811.html
RM2B64RT3–Mineral water stream covered the slope with travertine deposits, Cross Pass, Gudauri, Georgia
dead sea coastline at jordan Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-dead-sea-coastline-at-jordan-53471145.html
RFD2YPYN–dead sea coastline at jordan
Cannon Ball Concretions, Theodore Roosevelt National Park, ND, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-cannon-ball-concretions-theodore-roosevelt-national-park-nd-usa-135165454.html
RMHRW8WJ–Cannon Ball Concretions, Theodore Roosevelt National Park, ND, USA
feather on blue stones Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-feather-on-blue-stones-49942214.html
RMCW71PE–feather on blue stones
Israel, Dead Sea, salt crystalization caused by water evaporation Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/israel-dead-sea-salt-crystalization-caused-by-water-evaporation-image230869434.html
RFRBH08X–Israel, Dead Sea, salt crystalization caused by water evaporation
Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-precipitation-geoforms-in-the-mining-reservoir-of-gossan-at-riotinto-huelva-image467932198.html
RF2J58486–Chemical precipitation geoforms in the mining reservoir of Gossan at Riotinto, Huelva
Mound and Minerva Terrace in the Mammoth Hot Springs Area, Yellowstone National Park Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mound-and-minerva-terrace-in-the-mammoth-hot-springs-area-yellowstone-national-park-image371074665.html
RF2CFKWEH–Mound and Minerva Terrace in the Mammoth Hot Springs Area, Yellowstone National Park
Parys Opencast copper mine Anglesey North Wales Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-parys-opencast-copper-mine-anglesey-north-wales-19600088.html
RMB3TT34–Parys Opencast copper mine Anglesey North Wales
Uranium, radioactive ore on isolated white background, mineral and energy resource , macro photography Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/uranium-radioactive-ore-on-isolated-white-background-mineral-and-energy-resource-macro-photography-image553204825.html
RF2R40JB5–Uranium, radioactive ore on isolated white background, mineral and energy resource , macro photography
The Quarterly journal of the Geological Society of London . by rivers; while in other cases they may havebeen inland lakes formed solely by river-waters, which may,however, have dissolved—from the rocks within their drainage-areas—oceanic salts that were deposited in earlier geological ages. If to these conditions we add change in temperature, also earth-movements which would at times cause one basin to open intoanother or cause diversion in river-drainage, and alteration inclimatic conditions, we have all the circumstances necessary forthe precipitation of mineral salts contemporaneously with Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-quarterly-journal-of-the-geological-society-of-london-by-rivers-while-in-other-cases-they-may-havebeen-inland-lakes-formed-solely-by-river-waters-which-mayhowever-have-dissolvedfrom-the-rocks-within-their-drainage-areasoceanic-salts-that-were-deposited-in-earlier-geological-ages-if-to-these-conditions-we-add-change-in-temperature-also-earth-movements-which-would-at-times-cause-one-basin-to-open-intoanother-or-cause-diversion-in-river-drainage-and-alteration-inclimatic-conditions-we-have-all-the-circumstances-necessary-forthe-precipitation-of-mineral-salts-contemporaneously-with-image338421202.html
RM2AJGBKE–The Quarterly journal of the Geological Society of London . by rivers; while in other cases they may havebeen inland lakes formed solely by river-waters, which may,however, have dissolved—from the rocks within their drainage-areas—oceanic salts that were deposited in earlier geological ages. If to these conditions we add change in temperature, also earth-movements which would at times cause one basin to open intoanother or cause diversion in river-drainage, and alteration inclimatic conditions, we have all the circumstances necessary forthe precipitation of mineral salts contemporaneously with
Green mossy rock Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-image-green-mossy-rock-163861751.html
RMKEGF9B–Green mossy rock
PHILIPPINES, Palawan, Sabang, an enormous stalagtite hangs from the ceiling of the Underground River Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-image-philippines-palawan-sabang-an-enormous-stalagtite-hangs-from-the-ceiling-164305207.html
RFKF8MY3–PHILIPPINES, Palawan, Sabang, an enormous stalagtite hangs from the ceiling of the Underground River
Veins of gypsum in Fumanya, Barcelona, Catalonia, Spain. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/veins-of-gypsum-in-fumanya-barcelona-catalonia-spain-image559089021.html
RF2RDGKN1–Veins of gypsum in Fumanya, Barcelona, Catalonia, Spain.
pamukkale travertine,Traverten is a versatile, slip formed by chemical reaction post-precipitation due to various causes and environments. Geological Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/pamukkale-travertinetraverten-is-a-versatile-slip-formed-by-chemical-reaction-post-precipitation-due-to-various-causes-and-environments-geological-image178298917.html
RFMA262D–pamukkale travertine,Traverten is a versatile, slip formed by chemical reaction post-precipitation due to various causes and environments. Geological
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