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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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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Natür­liche Ze­olithe sind Gerüst-Alu­mi­nosi­likate der Al­ka­li- und Er­dal­ka­lime­t­alle, be­son­ders Ca, Na und K. Weniger häu­fig sind Ze­olithe, welche Ba, Sr, Cs, Li und Mg en­thal­ten. Bis heute sind 97 natür­liche Spezies bekan­nt, darun­ter die wichtig­sten Klinop­tilolith, Ch­ab­a­sit, Phil­lip­sit, Mor­denit, Lau ... moreNatürliche Zeolithe sind Gerüst-Aluminosilikate der Alkali- und Erdalkalimetalle, besonders Ca, Na und K. Weniger häufig sind Zeolithe, welche Ba, Sr, Cs, Li und Mg enthalten. Bis heute sind 97 natürliche Spezies bekannt, darunter die wichtigsten Klinoptilolith, Chabasit, Phillipsit, Mordenit, Laumontit, Stilbit, Heulandit, Analcim, Natrolith und Thomsonit. Charakteristisch für alle Zeolithe ist ihre dreidimensionale Aluminosilikat-Struktur mit variablen polyedrischen Gruppen, deren Struktur mit Wasser gefüllte relativ große Kanäle und Hohlräume zwischen diesen Polyedern enthält. Diese Hohlräume und Kanäle können Kationen (z.B. Metall-Ionen), Wasser und andere Moleküle enthalten, welche den Zeolithe ihre wichtigsten Eigenschaften als Molekularsiebe, Katalysatoren, Ionenaustauscher etc. verleihen.
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Am 13. Mai 1683 wurde laut dem Mu­tungs­reg­is­ter des Fürs­ten­tums Waldeck eine Mu­tung in der al­ten „Sil­berkuh­le“ auf Blei, Gold, Sil­ber und was sonst der Herr so beschert, ver­lie­hen. Die Grube wurde von Ber­gleuten aus Clausthal im Harz be­trieben. Es wurde über und auch Un­ter­tage, wahrschein­lich sil­berh ... moreAm 13. Mai 1683 wurde laut dem Mutungsregister des Fürstentums Waldeck eine Mutung in der alten „Silberkuhle“ auf Blei, Gold, Silber und was sonst der Herr so beschert, verliehen. Die Grube wurde von Bergleuten aus Clausthal im Harz betrieben. Es wurde über und auch Untertage, wahrscheinlich silberhaltiger Bleiglanz abgebaut. 1747 gab es nochmals einen Hinweis auf den dortigen Bergbau. Die Brüder Götte aus Giershagen schürften dann um 1890 in der Gegend nach Erzen und wurden in der Silberkuhle fündig. Sie fanden in dem Schreinermeister Jung aus dem Hannöverschen einen Geldgeber der 30.000 Mark in den Bergbau steckte. Im Jahre 1893 erfolgte die Verleihung und ein Jahr später 1894 die Vereinigung der Bergwerksfelder „Mathias 1 bis 12“ zu einem Bergwerksfeld. - Ein Bericht von Ingo Löffler
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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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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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