Mineralienatlas (name for mineral atlas) is the platform for people interested in mineralogy, geology, palaeontology and mining since 2001. We operate a significant database for minerals, fossils, rocks and their localities. Mineralienatlas is not limited to a section. We bring together information and inform comprehensive.

To complete our information constantly, we need your support. With us, everyone can and should participate. Currently Mineralienatlas is used and expanded by 10458 members. Every month hundreds of thousands of visitors use our website as an information source.
 
Geolitho Foundation non-profit GmbH
Geolitho Foundation non-profit GmbH is the non-profit supporter of the Mineral Atlas (Mineralienatlas), the Lithotheque, the Geolitho Collection Management and the Marketplace and Store by collectors for collectors. The Foundation promotes public education in the field of mineralogy, geology, paleontology and mining by operating, maintaining and further expanding earth science projects.
 
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... Among the most spec­tac­u­lar finds are the fan­tas­tic light blue calcites from the Ju­lia mine in Bil­bao, which en­rap­tured col­lec­tors' hearts to about the mid-1970s. At about the same time the zinc mine Las Man­fo­ras at Ali­va sup­plied ex­cel­lent, highl lus­trous Calcites, of­ten as­so­ci­at­ed with the worl ... more... Among the most spectacular finds are the fantastic light blue calcites from the Julia mine in Bilbao, which enraptured collectors' hearts to about the mid-1970s. At about the same time the zinc mine Las Manforas at Aliva supplied excellent, highl lustrous Calcites, often associated with the world's best red Sphalerites. ...

Amonsgt the forms of calcite the pinacoid is unique as it consists of exactly two parallel and oriented perpendicular to the c-axis surfaces. All other Calcite forms have either six or twelve areas. The pinacoid is an open form, with which it can not really include space; so the pinacoid must accompany other forms on the calcite crystal ...

A mineral portrait written by Peter Seroka with contributions from Ingo Löffler, Edgar Müller, Rainer Albert, William Waltermann (written in German)
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Min­er­al por­trait gar­netThis portrait mainly deals with the 6 classic garnets, their amazing history, the world’s best known classic and modern localities and deposits and their use as a gems or abrasives. It also deals with the common belief related to the non-existence of blue garnets and its refutation proven by new finds. A separate chapter deals with synthetic garnets. But it also deals with the mix up of definitions, groupings and old and unnecessary terms, which have finally been terminated or brought to a common denominator.

In 2012 the IMA (CNMNC) has defined garnets as members of the Garnet Supergroup, which include all minerals isostructural with garnet regardless of what elements occupy the four atomic sites; i.e. the supergroup includes several chemical classes . Those minerals are closely related to each other and may form a series with each other. Some garnets form intermediary minerals between each member, and may even be intergrown within a single crystal.

With the publication of the new nomenclature of the garnet supergroup, the term “garnet group” does not have its meaning anymore and the intermediate working term “Garnet superstructural group” has been replaced by “Garnet Supergroup”.
There are 32 approved species and 5 “candidate” species waiting on approval. The 32 species are subdivided by their Z-charge into 29 species, which belong to 5 groups and to 3 single representative species.
One of those 5 groups is the “Garnet group”, consisting of the 6 former (classic) garnets Pyrope, Grossular, Spessartine, Almandine, Uvarovite and Andradite plus 8 rarer garnets , as Menzerite-(Y), Eringaite, Goldmanite, Momoiite, Knorringite, Calderite, Majorite and Morimotoite.
This por­trait main­ly deals with the 6 clas­sic gar­nets, their amaz­ing his­to­ry, the world’s best known clas­sic and mod­ern lo­cal­i­ties and de­posits and their use as a gems or abra­sives. It al­so deals with the com­mon be­lief re­lat­ed to the non-ex­is­tence of blue gar­nets and its refu­ta­tion proven by new ... moreThis portrait mainly deals with the 6 classic garnets, their amazing history, the world’s best known classic and modern localities and deposits and their use as a gems or abrasives. It also deals with the common belief related to the non-existence of blue garnets and its refutation proven by new finds. A separate chapter deals with synthetic garnets. But it also deals with the mix up of definitions, groupings and old and unnecessary terms, which have finally been terminated or brought to a common denominator.

In 2012 the IMA (CNMNC) has defined garnets as members of the Garnet Supergroup, which include all minerals isostructural with garnet regardless of what elements occupy the four atomic sites; i.e. the supergroup includes several chemical classes . Those minerals are closely related to each other and may form a series with each other. Some garnets form intermediary minerals between each member, and may even be intergrown within a single crystal.

With the publication of the new nomenclature of the garnet supergroup, the term “garnet group” does not have its meaning anymore and the intermediate working term “Garnet superstructural group” has been replaced by “Garnet Supergroup”.
There are 32 approved species and 5 “candidate” species waiting on approval. The 32 species are subdivided by their Z-charge into 29 species, which belong to 5 groups and to 3 single representative species.
One of those 5 groups is the “Garnet group”, consisting of the 6 former (classic) garnets Pyrope, Grossular, Spessartine, Almandine, Uvarovite and Andradite plus 8 rarer garnets , as Menzerite-(Y), Eringaite, Goldmanite, Momoiite, Knorringite, Calderite, Majorite and Morimotoite.
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Wer Cölestin zuerst ent­deckte und wo­her das Ty­plokal­itäts­ma­te­rial herkam, ist nicht ganz klar. Of­fiziell wurde das Min­er­al 1781 vom französichen Ge­olo­gen Dolomieu auf Sizilien ent­deckt, an­dere Quellen sprechen von ein­er Er­stbeschrei­bung im Jahr 1791, wobei das Orig­i­nal­ma­te­rial faseriger blauer Cöles ... moreWer Cölestin zuerst entdeckte und woher das Typlokalitätsmaterial herkam, ist nicht ganz klar. Offiziell wurde das Mineral 1781 vom französichen Geologen Dolomieu auf Sizilien entdeckt, andere Quellen sprechen von einer Erstbeschreibung im Jahr 1791, wobei das Originalmaterial faseriger blauer Cölestin von Belliwood, Blair County, Pennsylvania gewesen sein soll.

Das Mineral wurde bereits Ende des 19. Jahrhunderts in England und Deutschland bergmännisch abgebaut, wobei der Hauptverwendungszweck die Restentzuckerung von Melasse und die Herstellung von Feuerwerk war. Zwischen 1880 und 1920 deckten die Gruben in der Avon Gorge bei Bristol in SW-England 90% des Welt-Cölestinbedarfs. Aus drei Lagerstätten bei Yate, nördlich von Bristol, wurde Cölestin bis Mitte der 1930er Jahre gefördert.
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orundsyn­th­e­sen fin­d­en sich im Han­del als Sch­melzbir­nen, in der Regel der Länge nach ges­pal­ten sind, um die in­neren Span­nun­gen im Kris­tall zu lösen. Sie be­sitzen ei­nen kreis­run­den Quer­sch­nitt. Ab und an erken­nt man im Quer­sch­nitt auch eine trig­o­nale Sym­me­trie. Wird das Ma­te­rial durch Tem­pern von den ... moreorundsynthesen finden sich im Handel als Schmelzbirnen, in der Regel der Länge nach gespalten sind, um die inneren Spannungen im Kristall zu lösen. Sie besitzen einen kreisrunden Querschnitt. Ab und an erkennt man im Querschnitt auch eine trigonale Symmetrie. Wird das Material durch Tempern von den Spannungen befreit, sind die Korundbirnen komplett und im Querschnitt rund oder eher abgerundet dreiseitig. Synthetische Spinellbirnen sind in der Regel komplett und besitzen einen annähernd quadratischen, aber abgerundeten Querschnitt. In der Nähe des Keimes finden selten abgerundete Oktaederflächen. Ein Beitrag von Klaus Schäfer
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https://vfmg.de/der-aufschluss/
Die 63. Rhein-Neckar-Mineralienbörse in Walldorf