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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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Ge­ol­o­gisch ge­se­hen ist der Kais­er­s­tuhl ein junges vulkanisch­es Ge­birge ähn­lich der Eifel und dem He­gau. Im Alt­ter­tiär vor ca. 60 Mio. Jahren wurde mit dem Absinken des Ober­rhein­tal­grabens ein Prozess abgeschlossen, der bere­its in der un­teren Kreide mit dem Be­ginn der al­pidischen Fal­tung be­gon­nen hat ... moreGeologisch gesehen ist der Kaiserstuhl ein junges vulkanisches Gebirge ähnlich der Eifel und dem Hegau. Im Alttertiär vor ca. 60 Mio. Jahren wurde mit dem Absinken des Oberrheintalgrabens ein Prozess abgeschlossen, der bereits in der unteren Kreide mit dem Beginn der alpidischen Faltung begonnen hatte: Heraushebung und Überdehnung des variszisch-mesozischen (Trias + unterer Jura) Gebirgsblockes Schwarzwald-Vogesen-Odenwald. Vor etwa 27 Mio. Jahren kam es dann in den am stärksten abgesenkten Teilen des Oberrheintalgrabens am Kaiserstuhl, aber auch in der Eifel, am Hegau, bei Urach und im Odenwald zu einem basischen Vulkanismus.
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In­di­ca­tor stoneA Scandinavian indicator stone is a glacial erratic composed of a characteristic rock type derived from a small known source area in Scandinavia. This term not only applies to igneous and metamorphic rocks but also to some sedimentary rocks. The Jotnian Sandstone and most of the Palaeozoic limestones, and the Old Red Sandstone are not included in the definition, although the presence of these and other rocks provide some evidence about the source area(s) of erratics and should certainly not be neglected in a stone count. In all cases we recommend including the whole assemblage of erratics/stones in such account. This makes it possible to use several methods of Interpretation. However, it should be pointed out that the practise used in the past, whereby each researcher had her/his own method of interpreting stone counts, has proved to be unsatisfactory. We demonstrate on the bases of over 2000 counts of indicator stones that we have carried out on assemblages mostly from Lower Saxony and Schleswig-Holstein, but also from other N.German states and neighbouring countries, that the TGZ method (LÜTTIG 1958) yields the most reliable results. In addition to this method, the sources of individual indicator stones may be plotted on a so-called circle map and can be integrated with possible source data and the relative frequencies of other erratics in the assemblage. Some rock types are more suitable as indicator stones then others. It is unwise to use clearly unsuitable rock types; this would considerably reduce the reliability of the method and lead to erroneous results.
A Scan­di­na­vian in­di­ca­tor stone is a gla­cial er­rat­ic com­posed of a char­ac­teris­tic rock type de­rived from a small known source area in Scan­di­navia. This term not on­ly ap­plies to ig­neous and me­ta­mor­ph­ic rocks but al­so to some sed­i­men­tary rocks. The Jot­nian Sand­s­tone and most of the Palaeo­zoic lime­s­tone ... moreA Scandinavian indicator stone is a glacial erratic composed of a characteristic rock type derived from a small known source area in Scandinavia. This term not only applies to igneous and metamorphic rocks but also to some sedimentary rocks. The Jotnian Sandstone and most of the Palaeozoic limestones, and the Old Red Sandstone are not included in the definition, although the presence of these and other rocks provide some evidence about the source area(s) of erratics and should certainly not be neglected in a stone count. In all cases we recommend including the whole assemblage of erratics/stones in such account. This makes it possible to use several methods of Interpretation. However, it should be pointed out that the practise used in the past, whereby each researcher had her/his own method of interpreting stone counts, has proved to be unsatisfactory. We demonstrate on the bases of over 2000 counts of indicator stones that we have carried out on assemblages mostly from Lower Saxony and Schleswig-Holstein, but also from other N.German states and neighbouring countries, that the TGZ method (LÜTTIG 1958) yields the most reliable results. In addition to this method, the sources of individual indicator stones may be plotted on a so-called circle map and can be integrated with possible source data and the relative frequencies of other erratics in the assemblage. Some rock types are more suitable as indicator stones then others. It is unwise to use clearly unsuitable rock types; this would considerably reduce the reliability of the method and lead to erroneous results.
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... Der Er­stere, der edle To­pas, ist durch­sichtig und durch­schei­nend, von starkem Glas­glanze, und am häu­fig­sten von gel­ber, be­son­ders wein­gel­ber, Farbe, aber auch wasser­hell, graulich-, grün­lich- und gel­blich­weiß, oder Berg- und Se­la­don­grün. Bei dem Säch­sischen ist die wein­gelbe Farbe die herrschend ... more... Der Erstere, der edle Topas, ist durchsichtig und durchscheinend, von starkem Glasglanze, und am häufigsten von gelber, besonders weingelber, Farbe, aber auch wasserhell, graulich-, grünlich- und gelblichweiß, oder Berg- und Seladongrün. Bei dem Sächsischen ist die weingelbe Farbe die herrschende und von allen Graden der Höhe; bei dem brasilianischen die honiggelbe. Die Übergänge ins rosenrothe, meergrüne, bläuliche etc. sind oft nur schwach, doch so merklich, daß man sie gewahrt. Er kommt gewöhnlich als vier= oder achtseitige Säule vor, die beim Brasilianischen mit vier, sechs auch acht Flächen zugespitzt, beim Sächsischen aber meistentheils mit einer sechsseitigen Fläche abgestumpft ist. Die Seitenflächen der Kristalle sind stets in der Länge gestreift; die übrigen Flächen aber glatt. Der Querbruch ist gerad= und vollkommenblättrig, der Längenbruch hingegen kleinmuschlig. In der Härte folgt er auf den Saphir und ritzt den Bergkristall... Ein Beitrag von Peter Seroka
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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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One of Mada­gas­car's ge­o­log­i­cal spe­cial­ties are the so-called Ts­in­gy: bizarre, at first sight hos­tile Karst land­s­capes, though form, due to the in­ac­ces­si­bil­i­ty, a refu­gial area for some spe­cies. The word Ts­in­gy means "walk­ing one tip-toes" or "where one can­not walk bare-foot" in Mala­gasy lan­guage, an ... moreOne of Madagascar's geological specialties are the so-called Tsingy: bizarre, at first sight hostile Karst landscapes, though form, due to the inaccessibility, a refugial area for some species. The word Tsingy means "walking one tip-toes" or "where one cannot walk bare-foot" in Malagasy language, an accurate description for the partially razor-sharp rock formations which can reach 20 m in height and with ends which can be as thin as pencils.

Best known and most impressive are the Tsingy of Bemaraha in the West of the island and the Tsingy of Ankarana in the North, both widespread Karst areas. In the North, as well, about 10 km south of the city of Antsiranana, one can find the Red Tsingy which have been washed out of the lateritic layer of earth.
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Hel­go­land, was im nied­erdeutschen "Heiliges Land" be­deutet, ist Deutsch­lands einzige Hoch­seeinsel, wen­n­gleich sie die Kri­te­rien ein­er solchen nicht er­füllt. Die ca. 2 km2 große Insel liegt mit­samt ihr­er kleineren Nach­barinsel, der Düne, ca. 60 km vor der Elb­mün­dung in der Deutschen Bucht (Ger­manisch ... moreHelgoland, was im niederdeutschen "Heiliges Land" bedeutet, ist Deutschlands einzige Hochseeinsel, wenngleich sie die Kriterien einer solchen nicht erfüllt. Die ca. 2 km2 große Insel liegt mitsamt ihrer kleineren Nachbarinsel, der Düne, ca. 60 km vor der Elbmündung in der Deutschen Bucht (Germanisches Becken), wie dieser Teil der östlichen Nordsee genannt wird. Die Insel ist neben den beiden dänischen Inseln Møn und Seeland, und der Kreideinsel Rügen in der Ostsee ebenfalls aus festem Gestein aufgebaut, was sie deutlich von den aus Lockersedimenten aufgebauten Nordfriesischen Inseln unterscheidet. Mit 245 Millionen Jahre altem Gestein ist sie zugleich auch die älteste Insel. Die auffällige Rotfärbung des Inselgesteins wurde durch intensive lateritische Verwitterung und die Oxidation von Eisen hervorgerufen. Ihr Alter, das Erscheinungsbild und die isolierte Lage macht sie also zu etwas besonderem, weshalb ihr jedes Jahr ca. eine halbe Million Menschen einen Besuch abstatten. Sie ist aber ... Ein Beitrag von René Gervers und Sebastian Möller
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„Was soll nur aus mein­er Mi­cro­mount-Samm­lung wer­den, wenn ich selbst ein­mal nicht mehr sam­meln kann? Sie en­thält doch Stücke von ein­ma­liger Äs­thetik, von längst er­losch­e­nen Fund­stellen oder größter Sel­ten­heit. Das alles dro­ht un­terzuge­hen, weil nach mir nie­mand den Wert erken­nt, der in den zunächst ... more„Was soll nur aus meiner Micromount-Sammlung werden, wenn ich selbst einmal nicht mehr sammeln kann? Sie enthält doch Stücke von einmaliger Ästhetik, von längst erloschenen Fundstellen oder größter Seltenheit. Das alles droht unterzugehen, weil nach mir niemand den Wert erkennt, der in den zunächst unscheinbar wirkenden Döschen steckt.“ Dieser Gedanke wird bei vielen Sammlern von Micromounts diskutiert. Dabei wird die oben genannte Befürchtung immer wieder geäußert. Weniger häufig wird eine andere Frage offen angesprochen, die aber dennoch viele Sammler bewegt: „Soll meine Sammlerleistung, ein wichtiger Teil meines Lebens, gänzlich in Vergessenheit geraten?“
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