Journal of

GEOsciences

  (Formerly Journal of the Czech Geological Society)

< previous | issue | next >
 
Received: 29 November 2021
Accepted: 10 June 2022
Online: 27 September 2022
H. Editor: J. Cempírek
 
  full text (PDF, 1.76 MB)
 
Export to RIS
Export to BibTeX
Export to Mendeley
 

Original paper

Daniela Mauro, Cristian Biagioni, Ulf Hålenius, Henrik Skogby, Valentina Dottorini, Ferdinando Bosi

Nickel- and Fe3+-rich oxy-dravite from the Artana Mn prospect, Apuan Alps (Tuscany, Italy)

Journal of Geosciences, volume 67 (2022), issue 2, 141 - 150

DOI: http://doi.org/10.3190/jgeosci.346



Bačík P, Fridichová J (2021) Cation partitioning among crystallographic sites based on bond-length constraints in tourmaline-supergroup minerals. Amer Miner 106: 851-861
http://doi.org/10.2138/am-2021-7804

Baksheev IA, Kudryavtseva OE (2004) Nickeloan tourmaline from the Berezovskoe gold deposit, Middle Urals, Russia. Canad Mineral 42: 1065-1078
http://doi.org/10.2113/gscanmin.42.4.1065

Benvenuti M, Lattanzi P, Tanelli G (1989) Tourmalinite-associated Pb-Zn-Ag mineralization at Bottino, Apuane Alps, Italy: geologic setting, mineral textures, and sulfide chemistry. Econ Geol 84: 1277-1292
http://doi.org/10.2113/gsecongeo.84.5.1277

Benvenuti M, Costagliola P, Lattanzi P, Tanelli G (1991) Mineral chemistry of tourmalines from the Bottino mining district, Apuane Alps (Italy). Eur J Mineral 3: 537-548
http://doi.org/10.1127/ejm/3/3/0537

Biagioni C, Orlandi P, Camarda S, Chinellato M, Appiani R, Del Chiaro L, Sanguineti G (2019) Minerals from marbles of Carrara and the Apuan Alps. LoGisma Editore, Firenze, pp 1-144

Biagioni C, Bosi F, Mauro D, Skogby H, Dini A, Zaccarini F (2020) Dutrowite, IMA 2019-082. CNMNC Newsletter 53. Eur J Mineral 32: 209-213

Boccaletti M, Gosso G, Moratti G (1981) Indizi di paleocarsismo nel Marmo delle Alpi Apuane Settentrionali. Rend Soc Geol Ital 4: 315-316

Bonazzi P, Garbarino C, Menchetti S (1992) Crystal chemistry of piemontites: REE-bearing piemontite from Monte Brugiana, Alpi Apuane, Italy. Eur J Mineral 4: 23-33
http://doi.org/10.1127/ejm/4/1/0023

Bosi F (2013) Bond-valence constraints around the O1 site of tourmaline. Mineral Mag 77: 343-351
http://doi.org/10.1180/minmag.2013.077.3.08

Bosi F (2014) Bond valence at mixed occupancy sites. I. Regular polyhedra. Acta Crystallogr B70: 864-870
http://doi.org/10.1107/S2052520614017855

Bosi F (2018) Tourmaline crystal chemistry. Amer Miner 103: 298-306
http://doi.org/10.2138/am-2018-6289

Bosi F, Lucchesi S (2007) Crystal chemical relationships in the tourmaline group: structural constraints on chemical variability. Amer Miner 92: 1054-1063
http://doi.org/10.2138/am.2007.2370

Bosi F, Skogby H, Agrosì G, Scandale E (2012) Tsilaisite, NaMn3Al6(Si6O18) (BO3)3(OH)3OH, a new mineral species of the tourmaline supergroup from Grotta d’Oggi, San Pietro in Campo, island of Elba, Italy. Amer Miner 97: 989-994
http://doi.org/10.2138/am.2012.4019

Bosi F, Reznitskii L, Sklyarov EV (2013) Oxy-vanadium-dravite, NaV3(V4Mg2)(Si6O18)(BO3)3(OH)3O crystal structure and redefinition of the ’vanadium-dravite’ tourmaline. Amer Miner 98: 501-505
http://doi.org/10.2138/am.2013.4243

Bosi F, Skogby H, Reznitskii L, Hålenius U (2014) Vanadio-oxy-dravite, NaV3(Al4Mg2)(Si6O18)(BO3)3(OH)3O, a new mineral species of the tourmaline supergroup. Amer Miner 99, 218-224.
http://doi.org/10.2138/am.2014.4605

Bosi F, Andreozzi G, Agrosì G, Scandale E (2015a) Fluor-tsilaisite, NaMn3Al6(Si6O18)(BO3)3(OH)3F, a new tourmaline from San Piero in Campo (Elba, Italy) and new data on tsilaisitic tourmaline from the holotype specimen locality. Mineral Mag 79: 89-101
http://doi.org/10.1180/minmag.2015.079.1.08

Bosi F, Skogby H, Lazor P, Reznitskii L (2015b) Atomic arrangements around the O3 site in Al- and Cr-rich oxy-tourmalines: a combined EMP, SREF, FTIR and Raman study. Phys Chem Miner 42: 441-453
http://doi.org/10.1007/s00269-015-0735-z

Bosi F, Skogby H, Balić-Žunić T (2016) Thermal stability of extended clusters in dravite: a combined EMP, SREF and FTIR study. Phys Chem Miner 43: 395-407
http://doi.org/10.1007/s00269-016-0804-y

Bosi F, Reznitskii L, Hålenius U, Skogby H (2017) Crystal chemistry of Al-V-Cr oxy-tourmalines from Sludyanka complex, Lake Baikal, Russia. Eur J Mineral 29: 457-472
http://doi.org/10.1127/ejm/2017/0029-2617

Bosi F, Biagioni C, Pezzotta F, Skogby H, Hålenius U, Cempírek J, Hawthorne FC, Lussier AJ, Abdu YA, Day MC, Fayek M, Clark CM, Grice JD, Henry DJ (2020) Uvite, IMA 2019-113. CNMNC Newsletter No. 54. Mineral Mag 84: 359-365

Bosi F, Pezzotta F, Altieri A, Andreozzi GB, Ballirano P, Tempesta G, Cempírek J, Škoda R, Filip J, Čopjaková R, Novák M, Kampf AR, Scribner ED, Groat LA, Evans RJ (2022) Celleriite, (Mn2+2Al)Al6(Si6O18)(BO3)3(OH)3(OH), a new mineral species of the tourmaline supergroup. Amer Miner 107: 31-42
http://doi.org/10.2138/am-2021-7818

Brown ID, Altermatt D (1985) Bond-valence parameters obtained from a systematic analysis of the Inorganic Crystal Structure Database. Acta Crystallogr B41: 244-247

Bruker AXS Inc. (2016) APEX 3. Bruker Advanced X-ray Solutions, Madison, Wisconsin, USA.

Carmignani L, Kligfield R (1990) Crustal extension in the northern Apennines: the transition from compression to extension in the Alpi Apuane core complex. Tectonics 9: 1275-1303
http://doi.org/10.1029/TC009i006p01275

Challis A, Grapes R, Palmer K (1995) Chromian muscovite, uvarovite, and zincian chromite: products of regional metasomatism in Northwest Nelson, New Zealand. Canad Mineral 33: 1263-1284

Conti P, Carmignani L, Massa G, Meccheri M, Patacca E, Scandone P, Pieruccioni D (2019) Note illustrative della Carta Geologica d’Italia alla scala 1:50.000. Foglio 249 Massa Carrara. Servizio Geologico d’Italia, Roma, pp 1-290

D’Achiardi G. (1894) Le tormaline del granito elbano. Atti Soc Tosc Sci Nat Mem 13: 229-321

D’Achiardi G (1897) Le tormaline del granito elbano. Parte II. Atti Soc Tosc Sci Nat Mem 15: 3-74

Di Giovanni F (1981) I minerali del Monte Brugiana. Riv Mineral Ital 5: 67-70

Dutrow BL, Henry DJ (2011) Tourmaline: A geologic DVD. Elements 7: 301-306
http://doi.org/10.2113/gselements.7.5.301

Fazzuoli M, Sguazzoni G (1981) Presenza di facies tipo “Rosso Ammonitico” e di forme paleocarsiche al tetto dei marmi in località Pianellaccio (M. Pisanino - Alpi Apuane). Boll Soc Geol It 100: 556-566

Fellin MG, Reiners PW, Brandon MT, Wüthrich E, Balestrieri ML, Molli G (2007) Thermochronologic evidence for exhumational history of the Alpi Apuane metamorphic core complex, northern Apennines, Italy. Tectonics 26: TC6015.
http://doi.org/10.1029/2006TC002085

Franceschelli M, Puxeddu M, Carcangiu G, Gattiglio M, Pannuti F (1996) Breccia-hosted manganese-rich minerals of Alpi Apuane, Italy: A marine, redox-generated deposit. Lithos 37: 309-333
http://doi.org/10.1016/0024-4937(95)00026-7

Franceschelli M, Gianelli G, Pandeli E, Puxeddu M (2004) Variscan and Alpine metamorphic events in the northern Apennines (Italy): a review. Period Mineral 73: 43-56

Gagné OC, Hawthorne FC (2015) Comprehensive derivation of bond-valence parameters for ion pairs involving oxygen. Acta Crystallogr B71: 562-578
http://doi.org/10.1107/S2052520615016297

Gatta GD, Bosi F., McIntyre GJ, Skogby H (2014) First accurate location of two proton sites in tourmaline: A single-crystal neutron diffraction study of oxy-dravite. Mineral Mag 78: 681-692
http://doi.org/10.1180/minmag.2014.078.3.15

Gonzalez-Carreño T, Fernandez M, Sanz J (1988) Infrared and electron microprobe analysis in tourmalines. Phys Chem Miner 15, 452-460
http://doi.org/10.1007/BF00311124

Henry DJ, Dutrow BL (2001) Compositional zoning and element partitioning in nickeloan tourmaline from a metamorphosed karstbauxite from Samos, Greece. Amer Miner 86: 1130-1142
http://doi.org/10.2138/am-2001-1002

Henry DJ, Novák M, Hawthorne FC, Ertl A, Dutrow BL, Uher P, Pezzotta F (2011) Nomenclature of the tourmaline-supergroup minerals. Amer Miner 96: 895-913
http://doi.org/10.2138/am.2011.3636

Hughes JM, Rakovan J, Ertl A, Rossman GR, Baksheev I, Bernhardt H-J (2011) Dissymetrization in tourmaline: the atomic arrangement of sectorally-zoned triclinic Ni-bearing dravite. Canad Mineral 49: 29-40
http://doi.org/10.3749/canmin.49.1.29

Jan QM, Kemp DRC, Symes RF (1972) A chromian tourmaline from Swat, W. Pakistan. Mineral Mag 38: 756-759
http://doi.org/10.1180/minmag.1972.038.298.11

Jenkins HC (1970) Fossil manganese nodules from the West Sicilian Jurassic. Ecl geol Helv 63: 741-774

Kligfield R, Hunziker J, Dallmeyer R, Schamel S (1986) Dating of deformation phases using the K/Ar and 40Ar/39Ar techniques: Results from northern Apennines. J Struct Geol 8: 781-798
http://doi.org/10.1016/0191-8141(86)90025-8

Libowitzky E (1999) Correlation of O-H stretching frequencies and O-H···O hydrogen bond lengths in minerals. Monat Chem 130: 1047-1059
http://doi.org/10.1007/BF03354882

Mattson SM, Rossman GR (1984) Ferric iron in tourmaline. Phys Chem Miner 11: 225-234
http://doi.org/10.1007/BF00308137

Mattson SM, Rossman GR (1987) Fe2+-Fe3+ interactions in tourmaline. Phys Chem Miner 14: 163-171
http://doi.org/10.1007/BF00308220

Michailidis K, Slavounos S, Plimer I (1995) Chromian dravite from the chromite ores of Vavdos area, Chalkidiki peninsula, northern Greece. Neu Jb Mineral, Mh 1995: 513-528

Molli G, Meccheri M (2012) Structural inheritance and style of reactivation at mid-crustal levels: A case study from the Alpi Apuane (Tuscany, Italy) Tectonophys 579: 74-87
http://doi.org/10.1016/j.tecto.2012.06.044

Orlandi P (1990) Zibaldone di mineralogia italiana. Riv Mineral Ital 13: 137-144

Orlandi P, Dini A (2004) Die Mineralien der Buca della Vena-Mine, Apuaner Berge, Toskana (Italien). Lapis 29: 11-24

Pesquera A, Gil-Crespo PP, Torres-Ruiz F, Torres-Ruiz J, Roda-Robles E (2016) A multiple regression method for estimating Li in tourmaline from electron microprobe analyses. Mineral Mag 80: 1129-1133
http://doi.org/10.1180/minmag.2016.080.046a

Pouchou JL, Pichoir F (1985) “PAP” (jρZ) procedure for improved quantitative microanalysis. In: Armstrong JT (ed.) Microbeam Analysis . San Francisco Press, San Francisco, pp 104-106

Rozhdestvenskaya IV, Setkova TV, Vereshchagin OS, Shtukenberg AG, Shapovalov YuB (2012) Refinement of the crystal structures of synthetic nickel- and cobalt-bearing tourmalines. Crystallogr Rep 57: 57-63
http://doi.org/10.1134/S106377451106023X

Scribner ED, Cempírek J, Groat LA, Evans RJ, Biagioni C, Bosi F, Dini A, Hålenius U, Orlandi P, Pasero M (2021) Magnesio-lucchesiite, CaMg3Al6(Si6O18)(BO3)3(OH)3O, a new species of the tourmaline supergroup. Amer Miner 106: 862-871
http://doi.org/10.2138/am-2021-7496

Shannon RD (1976) Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides. Acta Crystallogr A32: 751-767
http://doi.org/10.1107/S0567739476001551

Sheldrick GM (2015) Crystal Structure Refinement with SHELXL. Acta Crystallogr C71: 3-8

Skogby H, Bosi F, Lazor P (2012) Short-range order in tourmaline: a vibrational spectroscopic approach to elbaite. Phys Chem Miner 39: 811-816
http://doi.org/10.1007/s00269-012-0536-6

Sulli A, Interbartolo F (2016) Subaerial exposure and drowning processes in a carbonate platform during the Mesozoic Tethyan rifting: The case of the Jurassic succession of Western Sicily (central Mediterranean). Sediment Geol 331: 63-77
http://doi.org/10.1016/j.sedgeo.2015.10.013

Taran MN, Lebedev AS, Platonov AN (1993) Optical absorption spectroscopy of synthetic tourmalines. Phys Chem Miner 20: 209-220
http://doi.org/10.1007/BF00200123

Usui A (1979) Nickel and copper accumulation as essential elements in 10-Å manganite of deep-sea manganese nodules. Nature 279: 411-413
http://doi.org/10.1038/279411a0

Vereshchagin OS, Frank-Kamenetskaya OV, Rozhdestvenskaya IV (2015) Crystal structure and stability of Ni-rich synthetic tourmaline. Distribution of divalent transition-metal cations over octahedral positions. Mineral Mag 79: 997-1006
http://doi.org/10.1180/minmag.2015.079.4.09

Vernadsky W (1913) Über die chemische Formel der Turmaline. Z Kristallogr Mineral 53: 273-288
http://doi.org/10.1524/zkri.1914.53.1.273

Vezzoni S, Biagioni C, D’Orazio M, Pieruccioni D, Galanti Y, Petrelli M, Molli G (2018) Evidence of Permian magmatism in the Alpi Apuane metamorphic complex (Northern Apennines, Italy): New hints for the geological evolution of the basement of the Adria plate. Lithos 318-319: 104-123
http://doi.org/10.1016/j.lithos.2018.08.003

Voudouris P, Mavrogonatos C, Graham I, Giuliani G, Tarantola A, Melfos V, Karampelas S, Katerinopoulos A, Magganas A. (2019) Gemstones of Greece: Geology and Crystallizing Environments. Minerals 9: 461
http://doi.org/10.3390/min9080461

Watenphul A, Burgdorf M, Schlüter J, Horn I, Malcherek T, Mihailova B (2016) Exploring the potential of Raman spectroscopy for crystallo-chemical analyses of complex hydrous silicates: II. Tourmalines. Amer Miner 101: 970-985
http://doi.org/10.2138/am-2016-5530

Wilson AJC (1992) International Tables for Crystallography. Volume C. Kluwer, Dordrecht.

Journal of Geosciences, Published by © Czech Geological Society, with support from the Czech Geological Survey.
Webdesign inspired by aTeo. Hosted at the server of the Institute of Petrology and Structural Geology, Charles University, Prague.
ISSN: 1803-1943 (online), 1802-6222 (print)
email: jgeosci(at)jgeosci.org
cover_rotated.gif, 15kB

SNIP (Scopus, 2023): 0.6

IF (WoS, 2023): 1.1

5 YEAR IF (WoS, 2023): 1.5

Policy: Open Access

ISSN: 1802-6222

E-ISSN: 1803-1943