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.
 
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.
 
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At the site Palioka­mariza Mine No. 18 (Pla­ka, Lavri­on, At­ti­ca, Greece), yel­low, nee­dle-like ura­ni­um min­er­als were ob­served grow­ing on gyp­sum. Un­der UV light (365 nm), two dist­inct flu­o­res­cence col­ors ap­peared: short­er, thin­n­er nee­dles glowed bright green, while longer, well-formed nee­dles glowed yel ... moreAt the site Paliokamariza Mine No. 18 (Plaka, Lavrion, Attica, Greece), yellow, needle-like uranium minerals were observed growing on gypsum. Under UV light (365 nm), two distinct fluorescence colors appeared: shorter, thinner needles glowed bright green, while longer, well-formed needles glowed yellow...

This study illustrates a notable epitaxial relationship between Boltwoodite (green luminescent) and Sklodowskite (yellow luminescent) on a gypsum matrix, discovered at Lavrion, Greece. Luminescent differentiation under UV, combined with spectroscopic and EDX analyses, revealed the intergrowth of the two uranium silicates—providing insight into their growth and crystallization behavior
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This is the most com­pre­hen­sive syn­op­sis re­lat­ed to the his­to­ry, the min­er­al­o­gy, the ex­ploi­ta­tion and the most ac­tu­al eco­nom­ic and po­lit­i­cal re­sumé on rare earth el­e­ments and their min­er­als to be found in the in­ter­net. REE be­long to the most im­por­tant raw ma­te­rials of the 21st cen­tu­ry, which are used ... moreThis is the most comprehensive synopsis related to the history, the mineralogy, the exploitation and the most actual economic and political resumé on rare earth elements and their minerals to be found in the internet. REE belong to the most important raw materials of the 21st century, which are used in a large number of key technologies. However, due to the fact that almost 97% of the world's REE are mined and produced in China, REE have become an ongoing political issue, mainly amongst technology providing countries like the US, Japan and Western Europe.

This portrait tries to explain the characteristics of REE and their role for our modern world. Written and investigated by Peter Seroka. (Article in german)
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Der Oden­wald ge­hört zu den Varis­ci­den – ein Ge­birge welch­es bei der Kol­li­sion der Paläo-Konti­nente Gond­wa­na und Eu­rameri­ka im mittleren Kar­bon, vor et­wa 360-290 Mio. Jahren ent­s­tand. Im Zuge der variszischen Oro­ge­nese bilde­ten sich neben dem Oden­wald un­ter an­derem das Rheinische Schie­fer­ge­birge, Har ... moreDer Odenwald gehört zu den Varisciden – ein Gebirge welches bei der Kollision der Paläo-Kontinente Gondwana und Euramerika im mittleren Karbon, vor etwa 360-290 Mio. Jahren entstand. Im Zuge der variszischen Orogenese bildeten sich neben dem Odenwald unter anderem das Rheinische Schiefergebirge, Harz, Schwarzwald, Erzgebirge und der Spessart. Diese Aufbrüche des Grundgebirges sind Teil der sogenannten Mitteldeutschen Kristallinschwelle – eine Reihe von mehr oder weniger isolierten Kristallingebieten - die von der Haardt im Pfälzerwald über den kristallinen Odenwald und Spessart, das Ruhlaer Kristallin und Kyffhäuser bis nach Osteuropa verlaufen.
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Ara­g­onite is a cal­ci­um car­bo­nate, chem­i­cal­ly iden­ti­cal with calcite. The min­er­al calcite, how­ev­er, dif­fers from Ara­g­onite due to its in­ter­nal crys­tal struc­ture. While the crys­tal sys­tem of calcite is trig­o­n­al, the sys­tem of ara­g­onite is rhom­bic. Dense mass­es of small ara­g­onite crys­tals are dif­fi­cul ... moreAragonite is a calcium carbonate, chemically identical with calcite. The mineral calcite, however, differs from Aragonite due to its internal crystal structure. While the crystal system of calcite is trigonal, the system of aragonite is rhombic. Dense masses of small aragonite crystals are difficult to distinguish from calcite, but they are larger, they show a distinct habit.

A lot of chapters in this portrait will give you much more details about this interesting mineral. Written and investigated by Peter Seroka. (Article in german)
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Die Bil­dung der Achate am Kar­ren­berg ist äußerst kom­plex und hoch­in­teres­sant. Erkenn­bar wird dies zum ei­nen an der Ab­folge der Min­er­al­i­sa­tio­nen im Man­del­bereich. In der di­rek­ten Umge­bung der größeren Man­deln kann man mit viel Glück ei­nen klei­nen Graphitein­sch­luss aus­ma ein Bei­targ von u.a. Klaus Sch ... moreDie Bildung der Achate am Karrenberg ist äußerst komplex und hochinteressant. Erkennbar wird dies zum einen an der Abfolge der Mineralisationen im Mandelbereich. In der direkten Umgebung der größeren Mandeln kann man mit viel Glück einen kleinen Graphiteinschluss ausma ein Beitarg von u.a. Klaus Schäfer chen, der von einigen Sammlern durch angenommene Bildung von Kohlenstoffgasen als mitverantwortlich für die Hohlraumbildung angesehen wird. Diese Graphiteinschlüsse wurden bei der Bildung des Schlotes, als dieser durch tiefer gelegen karbonische Schichten brach, mitgerissen. Die von aussen nach .... Ein Beitrag von Klaus Schäfer
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Edelsteintage Konstanz
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