Minerals which are deposited by fumarole exhalations
Fumarole formation of tazieffite [de ] acicular crystals (black) at Mutnovsky , Kamchatka . An electron micrograph , colour enhanced by optical microscopy, depicted width: 700 microns.
Fumarole minerals (or fumarolic minerals ) are minerals which are deposited by fumarole exhalations. They form when gases and compounds desublimate or precipitate out of condensates, forming mineral deposits. They are mostly associated with volcanoes (as volcanic sublimate or fumarolic sublimate ) following deposition from volcanic gas during an eruption or discharge from a volcanic vent or fumarole ,[ 1] but have been encountered on burning coal deposits as well. They can be black or multicoloured and are often unstable upon exposure to the atmosphere.
Native sulfur , in this context called brimstone, is a common sublimate mineral and various halides , sulfides and sulfates occur in this environment associated with fumaroles and eruptions. A number of rare minerals are fumarole minerals, and at least 240 such minerals are known from Tolbachik volcano in Kamchatka , Russia. Other volcanoes where particular fumarole minerals have been discovered are Vulcano in Italy and Bezymyanny also in Russia.
Origin and appearance
Fumarole minerals in SEM images, from Mutnovsky volcano in Kamchatka. An electron micrograph , colour enhanced by optical microscopy, depicted width: 700 microns. In fumaroles , minerals either form through desublimation from fumarole gases or through interactions of fumarole gases with country rock . The former are known as sublimates and the latter as incrustations. Some such deposits may also form through the interaction between liquid fumarole condensates and country rock and are not always formed by desublimation. Repeated cycles of primary deposition and secondary alteration may occur. Volcanic gases such as hydrogen chloride , hydrogen fluoride , sulfur dioxide and water can transport large amounts of elements, thus contributing to geochemical cycles on the surface and the formation of ore deposits at depth. When these exhalations reach the atmosphere and cool, the minerals contained in them tend to precipitate out.[ 9]
Volcanic fumarole minerals (as volcanic sublimate or fumarolic sublimate) form following deposition from volcanic gas during an eruption or discharge from a volcanic vent or fumarole .[ 1] Burning coal produces enough heat to partially melt rocks and to generate exhalations of the mineral components embedded in coal. Coal seam fires often deposit fumarolic minerals over areas of a few square metres which can be detected by airborne hyperspectral imagery.[ 11] Coal fires can mobilize toxic trace elements . Fumarole minerals have also been found in Gusev crater on Mars [ 13] and possibly in a sample returned from the Moon by the probe Chang'e-5 .[ 14]
Fumarole deposits have been used to identify heat flow anomalies and to reconstruct ore genesis processes.
Fumarole exhalations are often black or multicoloured, and tend to develop typical zonations. Common components are sulfur compounds and elemental sulfur.[ 9] In the Valley of Ten Thousand Smokes in Alaska the fumarole minerals form both thin crusts in the vents, mixtures with tephra deposits and coloured outcrops and mounds at the sites of former fumaroles. Deposits at Tolbachik volcano have shapes likef crusts, small plates[ 17] and globules.[ 18]
Typical components of fumarole minerals are halides , oxides , sulfates and sulfides , with the exact composition different between volcanoes, individual vents at volcanoes and different temperatures of the same vent. Fumarolic minerals are often unstable and are eroded or decompose,[ 22] in the Valley of Ten Thousand Smokes in Alaska it took less than a century for almost all fumarole mineral deposits to disappear[ 23] although others remained and were later used to identify former fumarole vents. Thus, many fumarole minerals are rare and many rare minerals are fumarole minerals.[ 25] Some fumarolic minerals have been found in extinct Cenozoic volcanoes and could exist in Archean rocks as well, however. Unique textures occur such as bubble-like structures, which may form when the liquid that deposits the minerals evaporates.
Volcanoes
Electron micrograph images of fumarolic minerals at Mutnovsky volcano, Kamchatka
Research on the mineralogy of fumarole minerals has been conducted in Central America, Russia and Europe, with detailed publications on Izalco in El Salvador ,[ 28] Eldfell in Iceland ,[ 29] Vesuvius where research goes back to the early 19th century[ 30] and Vulcano in Italy, Mount Usu in Japan, Kudryavy and Tolbachik in Russia, Kilauea and Mount St. Helens in the United States. Sulfur deposits containing fumarolic desublimates are found at Guallatiri and Lastarria volcanoes in the Central Volcanic Zone of the Andes.[ 31] Kudryavy volcano in the Kurils is particularly known for the numerous mineralizations its fumaroles have produced and for the presence of rhenium -rich precipitates. Among the elements found there are copper -gold -silver alloys. Various sulfate -based minerals have been identified at the Salton Buttes in California .[ 34] Fumarolic minerals have also been reported from the Western Andes in Bolivia.[ 35]
The most fumarolic minerals have been found at Tolbachik volcano in Kamchatka , Russia; Tolbachik also has one of the most diverse mineral assemblages in the world, with a number of "endemic " minerals.[ 36] The high temperature and oxidizing regime of exhalations which transport the elements at Tolbachik facilitates mineral deposition. A large assemblage of silicates and a number of copper -zinc selenite chlorides [ 39] and copper-based fumarolic minerals were discovered at Tolbachik volcano, Kamchatka , Russia . Many of these include polymeric CuO4 units. About 240 minerals have been identified at Tolbachik, close to a record,[ 40] 40 of them only incompletely studied. Elemental gold linked to chlorides at Tolbachik has been interpreted as gold transported by chlorine-rich oxidizing environments.[ 42] Specimens of fumarole minerals from Tolbachik and Kudryavy are hosted by the Fersman Mineralogical Museum in Moscow .[ 43]
Historical lava flows of Vesuvius volcano contain fumarolic minerals.[ 44] Various fumarole minerals have been discovered at Vulcano volcano in Italy, where the mineralogy has changed since 1987 and 1990 due to hotter fumarole exhalations, yielding increased sulfate and sulfur salt concentrations. Fumarolic minerals have also been encountered in multiple mud volcanoes in Siberia .[ 47]
Minerals discovered in fumarole areas
Mineral
Formula
Location
Date described
Ref
Abramovite
Pb2 SnInBiS7
Kudryavy, Russia
2008
[ 48]
Allochalcoselite
Cu+ Cu2+ 5 PbO2 (SeO3 )2 Cl5
[ 49]
Aluminocoquimbite
AlFe(SO4 )* 3 H2 O
Grotta del' Alume, Vulcano, Italy
2010
[ 50]
Aluminopyracmonite
(NH4 )3 Al(SO4 )3
La Fossa, Vulcano, Italy
2018
[ 51]
Arsmirandite
Na18 Cu2+ 12 Fe3+ O8 (AsO4 )8 Cl5
Arsenatnaya fumarole, Tolbachik, Russia
2020
Axelite
Na14 Cu7 (AsO4 )8 F2 Cl2
Arsenatnaya fumarole, Tolbachik, Russia
2022
[ 52]
Baliczunicite
Bi2 O(SO4 )2
La Fossa, Vulcano, Italy
2013
Belomarinaite
KNaSO4
Toludskoe lava field, Tolbachik, Russia
2019
[ 53]
Belousovite
KZn(SO4 )Cl
Yadovitaya fumarole, Second Scoria Cone, Tolbachik, Russia
2018
[ 54]
Blossite
α‑Cu2+ 2 V5+ 2 O7
Izalco, El Salvador
1987
[ 28]
Bubnovaite
K2 Na8 Ca(SO4 )6
Naboko cone, Tolbachik, Russia
[ 55]
Burnsite
KCdCu7 O2 (SeO3 )2 Cl9
Tolbachik
2002?
Cadmoindite
CdIn2 S4
Kudryavy, Russia
2004
Calciolangbeinite
K2 Ca2 (SO4 )3
Arsenatnaya fumarole, Tolbachik, Russia
2022
[ 58]
Campostriniite
(Bi3+ , Na)3 (NH, 4 K)2 Na2 (SO4 )· 6 H2 O
La Fossa, Vulcano, Italy
2015
[ 59]
Cannizzarite
Pb46 Bi54 (S, Se)127
La Fossa, Vulcano, Italy
[ 60]
Cesiodymite
CsKCu5 O(SO4 )5
Second Scoria Cone, Tolbachik, Russia
2018
[ 61]
Chubarovite
KZn2 (BO3 )Cl2
Arsenatnaya fumarole, Tolbachik, Russia
2015
[ 62]
Cryptocalcite
K2 Cu5 O(SO4 )5
Second Scoria Cone, Tolbachik, Russia
2018
[ 61]
Cuprodobrovolskyite
Na4 Cu(SO4 )3
Second Scoria Cone, Tolbachik
2023
[ 63]
Cupromolybdite
Cu3 O(MoO4 )2
New Tolbachik scoria cones, Tolbachik, Russia
2012
[ 64]
D'ansite
Na21 Mn2+ (SO4 )10 Cl
Vesuvius and Vulcano, Italy
2012
[ 65]
Demartinite
K2 SiF6
La Fossa, Vulcano, Italy
2007
[ 66]
Demicheleite
BiSI and BiSBr
La Fossa, Vulcano, Italy
2010 and 2008
[ 67] [ 68]
Dobrovolskyite
Na4 Ca(SO4 )3
Great Tolbachik fissure eruption, Kamchatka peninsula, Russia
2021
[ 69]
Elasmochloite
Na3 Cu6 BiO4 (SO4 )
[ 70]
Eldfellite
NaFe(SO4 )2
[ 71]
Ermakovite
(NH4 )(As2 O3 )2 Br
Fan-Yagnob coal deposit, Tajikistan
2022
[ 72]
Grigorievite
Cu3 Fe3+ 2 Al2 (VO4 )
Second Scoria Cone, Tolbachik, Russia
2015
Hermannjahnite
CuZn(SO4 )2
Naboko scoria cone, Tolbachik, Russia
2018
[ 74]
Karpovite
Tl2 VO(SO4 )2 (H2 O)
First Cinder Cone, Tolbachik, Russia
2018
[ 75]
Knasibfite
K3 Na4 [SiF6 ]3 [BF4 ]
La Fossa, Vulcano, Italy
2008
[ 76]
Koksharovite
CaMg2 Fe3+ 4 (VO4 )6
Bezymyanny , Russia
2015
Kristjánite
KNa2 H(SO4 )2
Fimmvörðuháls, Iceland
2010
[ 77]
Kudriavite
(Cd, Pb)Bi2 S4
Kudryavy, Russia
2004
Lehmannite
Na18 Cu2+ 12 TiO8 (AsO4 )8 FCl5
Arsenatnaya fumarole, Tolbachik
2020
Leonardsenite
MgAlF5 (H2 O)2
Eldfell, Heimaey , Iceland
2015
Lesyukite
Al2 (OH)5 Cl20− * H2 O
First Cone, Tolbachik, Russia
2007 or earlier
Lucabindiite
(K, NH4 )As4 O6 (Cl, Br)
La Fossa, Vulcano, Italy
2010–2011
[ 79]
Majzlanite
K2 Na(ZnNa)Ca(SO4 )4
Yadovitaya fumarole, Tolbachik, Russia
2019
[ 80]
Manuelarossiite
CaPbAlF7
Vesuvius volcano, Italy
2024?
[ 81]
Medvedevite
KMnV2 O6 Cl* (H2 O)2
Toludskoe lava field, Tolbachik, Russia
2020
[ 82]
Napoliite
Pb2 OFCl
Vesuvius, 1994 rocks
2010-2020
[ 83]
Nishanbaevite
KAl2 O(AsO4 )(SO4 )
Arsenatnaya fumarole, Tolbachik, Russia
2022
[ 84]
Oskarssonite
AlF3
Eldfell , Iceland
2018
[ 29]
Ozerovaite
Na2 KAl3 (AsO4 )4
Second Cinder Cone, Tolbachik, Russia
2019
[ 85]
Paradimorphite
As4 S3
Solfatara, Campi Flegrei, Italy
2022
[ 86]
Parageorgbokiite
b- Cu5 O2 (SeO3 )2 Cl2
Yadovitaya fumarole, Tolbachik, Russia
2007
[ 87]
Parascandolaite
KMgF3
Vesuvius, Italy
2014
[ 88]
Parawulffite
K5 Na3 Cu8 O4 (SO4 )8
Arsenatnaya fumarole, Tolbachik, Russia
2014
[ 89]
Petrovite
Na10 CaCu2 (SO4 )8
Second Scoria Cone, Tolbachik, Russia
2020
[ 18]
Pliniusite
Ca5 (VO4 )3 F
Tolbachik, Russia
2022
[ 90]
Prewittite
KPb1.5 Cu6 Zn(SeO3 )2 O2 Cl10
Second Scoria Cone, Tolbachik, Russia
2013
[ 39]
Pseudolyonsite
Cu3 (VO4 )2
New Tolbachik scoria cones, Tolbachik, Russia
2011
[ 91]
Puninite
Na2 Cu3 O(SO4 )3
Second scoria cone, Tolbachik, Russia
2017
[ 92]
Rhabdoborite
Mg12 (V, Mo, W)4/3 O6 [(BO3 )6–x (PO4 )x F2–x ]
Arsenatnaya fumarole, Tolbachik, Russia
2020
[ 93]
Russoite
NH4 ClAs3+ 2 O3 (H2 O)0.5
Solfatara , Phlegrean Fields , Italy
2018
[ 94]
Ryabchikovite
CuMg(Si2 O6 )
Arsenatnaya, Tolbachik
2023
[ 95]
Sbacchiite
Ca2 AlF7
Vesuvius, Italy
2019
[ 96]
Shcherbinaite
V2 O5
Izalco , El Salvador
1983
[ 97]
Stoiberite
Cu5 V2 O10
"Y fumarole", Izalco, El Salvador
1979
[ 98]
Therasiaite
(NH4 )3 KNa2 Fe2+ Fe3+ (SO4 )3 Cl5
La Fossa, Vulcano, Italy
2014
[ 99]
Thermessaite
(NH4 )2 AlF3 (SO4 )
La Fossa, Vulcano, Italy
2021
[ 100]
Topsøeite
FeF3 (H2 O)3
Hekla , Iceland
2018
[ 101]
Wulffite
K3 NaCu4 O2 (SO4 )4
Arsenatnaya fumarole, Tolbachik, Russia
2014
[ 89]
Vasilseverginite
Cu9 O4 (AsO4 )2 (SO4 )2
Arsenatnaya fumarole, Tolbachik, Russia
2021
[ 102]
Wrightite
K2 Al2 O(AsO4 )2
Second Scoria Cone, Tolbachik, Russia
1983
[ 103]
Yavapaiite
KFe(SO4 )2
[ 71]
Ziminaite
Fe3+ VO4
Bezymyanny, Russia
2018
[ 104]
Zincobradaczekite
NaCuCuZn2 (AsO4 )3
Yadovitaya fumarole, Tolbachik, Russia
2020
[ 105]
Gallery
Scanning electron microscope images of fumarole minerals
Fumarole minerals in natural colours
Fumarole minerals in natural colours, Mutnovsky, Kamchatka
Fumarole minerals in natural colours, Tolbachik, Kamchatka
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