Publications by Year: 2025

2025
Papoutsa A, Kontos G, Voudouris P, Vasilatos C, Economou-Eliopoulos M. Critical metal (REE-Y-U-Th) enrichment in the hydrothermal breccia of Villia/Plaka area, Lavrion, Greece. In: Mediterranean Geosciences Union 5th Annual Meeting. ; 2025.
Roulia M, Vasilatos C, Kypritidou Z, Anastasatou M, Papoutsa A, Aspiotis K. Characterization and Valorization of Olive Kernel Residue Combustion By-Products for Sustainable Energy and Resource Management. In: Mediterranean Geosciences Union 5th Annual Meeting. ; 2025.
Argyraki A, Kypritidou Z, Papoutsa A, Kozirakis D. Phase composition of renal stones in Greece: Insights from X-ray Diffraction and Raman Spectroscopy. In: SEGH 2025 40th International Conference on Geochemistry and Health. ; 2025. pp. 58.
Dimou E, Papoutsa A, Pletsas V, Zegkinoglou N, Kilias S, Nomikou P, Polymenakou P. Biogenicity of Arsenic Sulfide Biomorphous Structures in Deep-Sea Hydrothermal Vents, Kolumbo Arc Volcano: Morphological, Mineralogical and Geochemical Evidence. In: 17th International Congress of the Geological Society of Greece. ; 2025.
Papoutsa A, Kilias S, Zegkinoglou N, Pletsas V, Avoukatou R, Nomikou P, Polymenakou P, Somogyi A, Ahmad Q. Effects of boiling and seawater mixing on hyper-enrichment of antimony in active polymetallic seafloor massive sulfide hydrothermal diffusers at the Aegean Kolumbo volcano. In: 17th International Congress of the Geological Society of Greece. ; 2025.
Economou-Eliopoulos M, Kanellopoulos C, Papoutsa A, Markopoulos T, Zaccarini F, Perraki M. Chemistry, Raman Spectroscopy and Micro-Textures of Theophrastite and Other Ni-Minerals from the Vermion Fe-Ni-Laterites, Greece: Genetic Significance. Minerals [Internet]. 2025;15. WebsiteAbstract
A small, strongly schistose Ni-laterite occurrence at the Vermion ophiolite (40°26′ Ν, 22°10′ Ε), Northen Greece, along a strong shear zone, is characterized by relatively high Ni, Co and Mn contents, magnetite as the dominant mineral, garnet (grossularite), theophrastite [β-Ni(OH)2], otwayite-like phase (ideally Ni2CO3(OH)2.H2O), (Ni, Co, Mn)-hydroxides, and Ni-phyllosilicates. New analytical data, including black-white and color back-scattered electron images (BSEIs), elemental mapping and scanning, and Raman Spectroscopy, alongside silicates and hydroxides revealed the presence of varying silica content (less than 1 to 29 wt.%) in theophrastite and in (Ni, Co, Mn ± Fe)-hydroxides, although the X-ray powder diffraction data correspond to those of pure hydroxides. The gradual stacking of fine fibrous otwayite-like crystals to the boundaries of successive thin layers and within layers themselves, results in porous mineral phases of varying density shifting towards more compact mineral with increasing residence time. The presented data suggest that a potential explanation of the presence of Si in theophrastite may be the precipitation of Si after initial Ni-hydroxyl-carbonate fine crystals deposition. A potential sequence of the stability of Ni-minerals at Vermion may be as follows: Hydroxyl-carbonates < [β-Ni(OH)2] (theophrastite) < (Ni, Co, Mn)(OH)2 < Ni-phyllosilicates; this may be a significant factor for Ni-exploration in Ni-larerite deposits.