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 10586 members. Every month hundreds of thousands of visitors use our website as an information source.
 
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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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Seit dem Al­ter­tum ist Smaragd auf­grund sein­er Schön­heit und sein­er ungewöhn­lich leb­haft grü­nen Farbe als Edel­stein begehrt. Je­doch - nach dem Spruch "Es ist nicht alles Gold, was glänzt" - sind nicht alle "Edel­steine" mit dies­er at­trak­tiv­en Farbe auch tat­säch­lich Smaragd gewe­sen. In der Geschichte f ... moreSeit dem Altertum ist Smaragd aufgrund seiner Schönheit und seiner ungewöhnlich lebhaft grünen Farbe als Edelstein begehrt. Jedoch - nach dem Spruch "Es ist nicht alles Gold, was glänzt" - sind nicht alle "Edelsteine" mit dieser attraktiven Farbe auch tatsächlich Smaragd gewesen. In der Geschichte finden sich dafür zahlreiche Beispiele. Immer wieder wurden neu entdeckte Mineralien, die mit bekannten und als Edelstein geschätzten Steinen in Farbe und Charakteristika übereinstimmten, fälschlich als echt gehandelt und verarbeitet. Eines dieser Mineralien, welches wegen seiner Farbe sehr lange als Smaragd galt, ist Dioptas. Ein Mineralienportrait geschrieben von Peter Seroka.
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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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... ist ein spezielles Licht­mikroskop, welch­es lin­ear po­larisiertes Licht mit Po­larisa­toren erzeugt und analysiert. So wird die Dop­pel­brechung bei op­tisch ani­sotropen Min­eralen deut­lich sicht­bar, aber auch op­tische Ak­tiv­itäten kön­nen bes­timmt wer­den.. Es di­ent Pet­ro­graphen für die kris­tal­lop­tische A ... more... ist ein spezielles Lichtmikroskop, welches linear polarisiertes Licht mit Polarisatoren erzeugt und analysiert. So wird die Doppelbrechung bei optisch anisotropen Mineralen deutlich sichtbar, aber auch optische Aktivitäten können bestimmt werden.. Es dient Petrographen für die kristalloptische Analyse (das mikroskopische Studium) der Gesteine, ihrer Minerale und ihres Gefüges.

Durchsichtige Minerale der Gesteine werden in Dünnschliffen (ca. 0,02 mm) oder als Pulver untersucht. Zu den optischen Eigenschaften, die in dem zu untersuchenden Mineral bestimmt werden können, gehört neben dem Brechungsindex oder den Hauptbrechungsindizes auch die Doppelbrechung (Birefringenz), welche mit Hilfe des Polarisationsmikroskopes im durchfallenden Licht bestimmt wird.

Wichtiges Zubehör ist der Universaldrehtisch mit Achse (u.a. 4-achsig) normal zum Schliff, Hilfs-, Vertikal- und Horizontalachse. Mit dieser Methode können selbst kleinste Kristallkörner von einigen hundertstel Millimetern, die in Dünnschliffen als durchsichtige Einschlüsse vorkommen, genau ...
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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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... durch Min­er­alien­samm­ler und son­stige In­for­ma­tion­squellen ist im­mer wied­er von einem Ver­bund­berg­w­erk Marien­schacht/Jo­han­nesschacht die Rede, Min­er­al­stufen wer­den ent­sprechend so ange­boten oder sind auch so beschriftet, aber ei­nen Ver­bund hat es zwischen der Grube Marien­schacht und der Grube Jo­han ... more... durch Mineraliensammler und sonstige Informationsquellen ist immer wieder von einem Verbundbergwerk Marienschacht/Johannesschacht die Rede, Mineralstufen werden entsprechend so angeboten oder sind auch so beschriftet, aber einen Verbund hat es zwischen der Grube Marienschacht und der Grube Johannesschacht nicht gegeben, denn von einem Verbund wird nur dann gesprochen, wenn zwei noch tätige Bergwerke miteinander verbunden werden und das war hier nicht der Fall, weil die Grube Johannesschacht bereits stillgelegt war und die Tagesanlagen abgerissen wurden. Eine Umfahrung des Baufeldes der Grube Johannesschacht fand deshalb statt, weil sich die Grundstücke und somit auch das untertägige Grubenfeld der Grube Johannesschacht bereits im ...
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