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.

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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“garnet group” does not have its meaning anymore and the intermediate working term “Garnet superstructural group” has been replaced by “Garnet Supergroup”.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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... Für die hi­er vorgestellte Un­ter­suchung wur­den Spek­tren von Urano­phan, Sk­lo­dowsk­it und Urano­circ­it aus der Lit­er­a­tur herange­zo­gen. Bei den un­ter­sucht­en Min­er­alien wurde näm­lich fest­gestellt, dass auf dem gleichen Stück auftre­tende, an­dere Uranyl-Min­er­alien, die Mes­sung ver­fälschen kön­nen, wenn de ... more... Für die hier vorgestellte Untersuchung wurden Spektren von Uranophan, Sklodowskit und Uranocircit aus der Literatur herangezogen. Bei den untersuchten Mineralien wurde nämlich festgestellt, dass auf dem gleichen Stück auftretende, andere Uranyl-Mineralien, die Messung verfälschen können, wenn deren Lumineszenz nicht räumlich sicher abgeblockt werden kann. Beispielsweise beeinflusste in einer ersten Messung die vergleichsweise starke Lumineszenz von Uranocircit die Messung an einer Uranophan-Probe aus Menzenschwand. Aus diesem Grund ist es sinnvoll, die Spektren weiterer potentiell auftretender Mineralien wie Uranocircit mit in die Untersuchung aufzunehmen, um bei der Bestimmung der Mineralien solche Einflüsse aufspüren zu können... Ein Beitrag von Markus Noller und Martin Stark
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Weather­ing is a conti­nous pro­cess by which rocks are bro­ken down and de­com­posed by the ac­tion of hu­mid­i­ty (rain), wind, tem­per­a­ture changes, chem­i­cal agents, bac­te­ria and plants. Be­ing an in­te­gral part of the rocks cy­cle, weather­ing is the ini­tial stage to­wards de­nu­da­tion, which re­sults in gen­er­al l ... moreWeathering is a continous process by which rocks are broken down and decomposed by the action of humidity (rain), wind, temperature changes, chemical agents, bacteria and plants. Being an integral part of the rocks cycle, weathering is the initial stage towards denudation, which results in general lowering of the land surface. An essential feature is that it affects rocks in situ; no transportation is involved. This is the factor which dsitinguishes weathering from erosion. The two main types of weathering are mechanical and chemical. Climate plays a leading role in weathering, whereas chemical weathering is almost absent in arid regions. Effecrtive freeze-thaw cycles are confined to cold temperate and permafrost climates.

Erosion is part of the process of denudation which involves the wearing away of land surface by mechanical action of transported debris. Main cycles of erosion are glaciers, wind erosion, marine erosion.
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1496 ver­lei­ht Her­zog Al­brecht IV. Bergfrei­heit an Jörg Vall­dr­er, der den heute noch ex­istieren­den „Sil­ber­schacht“ an­fängt. Die Auf­sch­lüsse in dem Schacht waren ex­trem me­t­al­larm und da­her Ein­stel­lung der Tätigkeit­en. Um 1700 bere­its der er­ste Flußs­patab­bau. Die „Smaragde“ von Bach (und von Do­naus­tauf ... more1496 verleiht Herzog Albrecht IV. Bergfreiheit an Jörg Valldrer, der den heute noch existierenden „Silberschacht“ anfängt. Die Aufschlüsse in dem Schacht waren extrem metallarm und daher Einstellung der Tätigkeiten. Um 1700 bereits der erste Flußspatabbau. Die „Smaragde“ von Bach (und von Donaustauf) machten Schlagzeilen. 1702 Probeschürfe auf den Gang auf Eisen und Silber. 1703 legten erfahrene Bergleute aus Bodenwöhr und vom Rauschenberg das Schönfärbige Bergwerk mit dem "St. Barbarastollen" und dem "Dreifaltigkeitsstollen am Sandspach" (Länge 38,9 m) an, ohne jedoch auf Metallerze zu stoßen. 1704 nach Einmarsch kaiserlicher Truppen brachte diesen staatlichen Bergbau zum Erliegen... Ein Beitrag von Michael Kommer
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Olivine is not a se­parate min­er­al, but a mem­ber be­long­ing to the fors­terite-fay­alite mix­ing se­ries. Olivine be­longs to the olivin-groupe whose end-mem­bers are cal­cio-olivine and tephroite. Fors­terite is a mag­ne­si­um sil­i­cate; fay­alite an iron sil­i­cate. If com­mon­ly is spo­ken of olivine, it is usu­al­ly ... moreOlivine is not a separate mineral, but a member belonging to the forsterite-fayalite mixing series. Olivine belongs to the olivin-groupe whose end-members are calcio-olivine and tephroite. Forsterite is a magnesium silicate; fayalite an iron silicate. If commonly is spoken of olivine, it is usually a more or less iron-rich forsterite. The color of olivine is generally yellowish green, olive green to black. You will find much more interesting details in our portrait about this common mineral series.

Written and investigated by Peter Seroka. (Article in german)
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