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 10587 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.
 
Edelsteintage Konstanz
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... Wenn die Körn­er plat­ten­för­mige (lam­i­nae) Ges­talt haben, so bezeich­net man diese Ag­gre­gate, je nach Größe, als schup­pig oder blät­trig (lamel­lar). Die in­di­vi­du­ellen Plat­ten sind im All­ge­mei­nen par­al­lel, kön­nen aber auch um ein ge­mein­sames Zen­trum ge­bo­gen sein und konzen­trische For­men bil­den. Wenn ... more... Wenn die Körner plattenförmige (laminae) Gestalt haben, so bezeichnet man diese Aggregate, je nach Größe, als schuppig oder blättrig (lamellar). Die individuellen Platten sind im Allgemeinen parallel, können aber auch um ein gemeinsames Zentrum gebogen sein und konzentrische Formen bilden. Wenn die Platten dünn und trennbar sind, bezeichnet man die Aggregate als blättrig oder schieferig. Wenn ein Mineral aus kleinen Schuppen besteht, wird es als glimmerartig bezeichnet. Beispiele: Calcit und Gips (rosettenartig), Glimmer (charakteristisch glimmerartig),Talk und manche Hämatitaggregate (schuppig) ... ein Beitrag von Perter Seroka
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Sil­ver and sil­ver min­er­als are amongst the most de­sir­abe ob­jects since the be­gin­n­ing of min­er­al col­lect­ing. Sil­ver wires and curls from Kongs­berg and Freiberg are the coro­na­tion of each min­er­al col­lec­tion. Beau­ti­ful pyrar­gyrites and proustites en­hance each col­lec­tor's heat­beat.

How­ev­er, sil­ver is ... moreSilver and silver minerals are amongst the most desirabe objects since the beginning of mineral collecting. Silver wires and curls from Kongsberg and Freiberg are the coronation of each mineral collection. Beautiful pyrargyrites and proustites enhance each collector's heatbeat.

However, silver is not only the essence of high-end collecting but has contributed essentially to the history of mankind. Uncountable remain the millions of greek and phenician slaves, middle age european miners and millions of indios who have left their lives for silver.

Silver is one of the seven metals known since thousands of years, already been mentioned in the bible. Mountains of slag in Asia Minor, Arabia and on the agaen islands prove technologies to produce silver from lead ore; knowledges people had been acquainted with since at least 4.000 year B.C. Since the antiquity silver had been used to make finery and ornaments, however, most of this metal was used to stamp coins. The monetary system of many countries was based on silver; the one, who owned silver, was able to finance wars. One of the main pillars of power of Athens, Rome, the Phenicians, the church, the kings and queens of Castilia, the Austrian house of Habsburg and, last not least, of the Americans had been their control over the richest silver mines and the wars, which they made by paying their soldiery with silver coins.
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Das El­e­ment Tan­tal wurde 1802 vom sch­wedischen Chemik­er An­ders Gus­tav EKE­BERG so­wohl in einem Tan­talit-Erz aus Kim­i­to in Finn­land als auch in Yt­tro­tan­talit aus Yt­ter­by in Sch­we­den ge­fun­den. Er tren­nte ein sehr beständi­ges Oxid (Tan­tal(V)-oxid) ab, das sich in kein­er Säure löste. Be­nan­nt ist es nach ... moreDas Element Tantal wurde 1802 vom schwedischen Chemiker Anders Gustav EKEBERG sowohl in einem Tantalit-Erz aus Kimito in Finnland als auch in Yttrotantalit aus Ytterby in Schweden gefunden. Er trennte ein sehr beständiges Oxid (Tantal(V)-oxid) ab, das sich in keiner Säure löste. Benannt ist es nach Tantalos, einer Figur aus der griechischen Mythologie. Diesen Namen wählte Ekeberg, um auf das Unvermögen, auch bei großer Menge an Säure nichts von dieser aufnehmen zu können, anzuspielen.

Etwas früher, im Jahr 1801, beschrieb der englische Chemiker Charles HATCHETT seine Analyse eines Minerals namens Columbit, benannt nach seinem Fundort in Nordamerika (zu dieser Zeit allgemein als Columbia bezeichnet). Das von ihm untersuchte Referenzmuster des Minerals hatte im Britischen Museum bereits seit 1753 gelegen. Er beschrieb das Mineral als "...einen schweren schwarzen Stein mit goldenen Streifen..." . Als Quelle des Minerals gab er Mr. Winthrop an, den ersten Gouverneur von Connecticut. Hattchet berichtete, dass das Mineral ...

...ein Beitrag 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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The former "Eisen­ham­mer" (iron ham­mer) to He­im­buchen­thal has to show a very in­ter­est­ing his­to­ry. The ham­mer mill estab­lished at the be­gin­n­ing of the 18th cen­tu­ry reached at the end of the 18th cen­tu­ry in the pos­ses­sion of the fam­i­ly Rexroth un­der whose gui­dance the com­pany came to the full blos­som. ... moreThe former "Eisenhammer" (iron hammer) to Heimbuchenthal has to show a very interesting history. The hammer mill established at the beginning of the 18th century reached at the end of the 18th century in the possession of the family Rexroth under whose guidance the company came to the full blossom. The squires showed a high social engagement which was reflected in the reimbursement of the workers, but also in the enlargement of the entrance ways. In specially constructed schools up to 30 children were teaches on the hammer mill property. On one, from oaks surrounded cemetery the late squires and their members were buried. In 1891 the company was discontinued and the hammer mill was converted into a court estate. From the industrial monument all buildings except the great smithy are even today in a very good state.

(Full text in german)
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... Ei­gen­tüm­lich ist hi­er insbe­son­dere, daß die aus­ge­bilde­ten Flußs­patkris­talle ( es wurde bis jet­zt fast nur das Hex­aed­er ge­fun­den ), im­mer stark verun­reinigt sind, während das kris­tal­line Gang­ma­te­rial weit höhere Rein­heit be­sitzt. Die Verun­reini­gung ge­ht soweit, daß z.B. Kupfer­kies, Pyrit, Quarz o ... more... Eigentümlich ist hier insbesondere, daß die ausgebildeten Flußspatkristalle ( es wurde bis jetzt fast nur das Hexaeder gefunden ), immer stark verunreinigt sind, während das kristalline Gangmaterial weit höhere Reinheit besitzt. Die Verunreinigung geht soweit, daß z.B. Kupferkies, Pyrit, Quarz oder Ton im Innern der in Intervallen aufgebauten Kristalle gefärbte Schichten bildet. Es scheinen hier erst die zuletzt in die Höhe gestiegenen Lösungen so intensiv mit Sulfiden verunreinigt gewesen zu sein. Außerdem sind die Kristalle meist treppenartig gelagert, was durch die stengelige Ausbildung der Unterlage bedingt ist... Ein Beitrag von Michael Kommer
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