This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.
Salazar A., (ed.), Cultural Heritage Applications: Archaeological Ceramics and Building Restoration (2013). In: On Statistical Pattern Recognition in Independent Component Analysis Mixture Modelling, Springer Theses, Vol. 4, Springer-Verlag, Berlin, Heidelberg, pp. 129–153Search in Google Scholar
Krapukaityte A., Tautkus S., Kareiva A., Zalieckiene E., (2008). Thermal analysis—a powerful tool for the characterization of pottery, Chemija 19, 4–8.Search in Google Scholar
Rathossi C., Tsolis-Katagas P.C., Katagas C., (2004). Technology and composition of Roman pottery in northwestern Peloponnese, Greece, Applied Clay Science 24, 313–326.Search in Google Scholar
Ion R.M., I Dumitriu, RC Fierascu, ML Ion, SF Pop, C Radovici, RI Bunghez, Thermal and mineralogical investigations of historical ceramic: A case study, Journal of Thermal Analysis and Calorimetry 104 (2), (2011) 487-493.Search in Google Scholar
Ion R.M., ML Ion, R Fierascu, S Serban, I Dumitriu, C Radovici, I Bauman, Thermal analysis of Romanian ancient ceramics, Journal of thermal analysis and calorimetry 102 (1), (2009) 393-398.Search in Google Scholar
IonR.M., R.C.Fierăscu, S. Teodorescu, I. Fierăscu, I.R. Bu nghez, D. Ţurcanu-Caruţiu, M.L. Ion, Ceramic materials based on clay minerals in cultural heritage study, Clays, Clay Minerals and Ceramic Materials Based on Clay Minerals (2016), 159-184, 10.5772/61633Search in Google Scholar
Ion RM, AE Pungoi, L Iancu, RM Grigorescu, G Vasilievici, AI Gheboianu, Compositional and Microstructural Investigations of Prehistoric Ceramics from Southern Romania (Middle Neolithic Pottery), Appl. Sci. 14, 5755, 2024Search in Google Scholar
Ungureanu, D. N., Angelescu, N., Ion, R. M., Stoian, E. V., & Rizescu, C. Z. (2011). Synthesis and characterization of hydroxyapatite nanopowders by chemical precipitation. Recent Researches in Communications, Automation, Signal Processing, Nanotechnology, Astronomy and Nuclear Physics, 296-301.Search in Google Scholar
Kingery W.D., A note on the determination of the differential thermal analysis of archaeological ceramics, Archaeometry 16 (1974) 109–112.Search in Google Scholar
Tite M.S., Maniatis Y., (1975). Examination of ancient pottery using the scanning electron microscope, Nature 257 (1975) 122–123.Search in Google Scholar
Ghedini N., Sabbioni C., Pantani M., (2003). Thermal analysis in cultural heritage safeguard: an application, Termochimica Acta 406, 105–113.Search in Google Scholar
Fessas D., Signorelli M., Schiraldi A., Kennedy C.J., Wess T.J., Hassel B., Nielsen K., (2006). Thermal analysis on parchments I: DSC and TGA combined approach for heat damage assessment, Termochimica Acta 447, 30–35.Search in Google Scholar
Branda F., Luciani G., Costantini A., Piccioli C., (2003). Interpretation of the thermogravimetric curves of ancient Pozzolanic concretes, Archaeometry 43, 447–453.Search in Google Scholar
Drebushchak V.A., Mylnikova L.N., Drebushchak T.N., Bodyrev V.V., (2005). The investigation of ancient pottery—application of thermal analysis, Journal of Thermal Analysis and Calorimetry 82, 617–626.Search in Google Scholar
Papadopoulou D.N., Lalia-Kantouri M., Kantiranis N., Stratis J.A., (2006). Thermal and mineralogical contribution to the ancient ceramics and natural clays characterization, Journal of Thermal Analysis and Calorimetry 84, 39–45.Search in Google Scholar
Maniatis Y., Tite M.S., (1978/9). Examination of Roman and Medieval Pottery Using the Scanning Electron Microscope, Acta Praehistoria et Archaeologica 9/10 (1978/9) 125–130.Search in Google Scholar
Mothe C.G., Ambrosio R.M.C., (2007). Processes occurring during the sintering of porous ceramic materials by TG/DSC, Journal of Thermal Analysis and Calorimetry 87, 819–822.Search in Google Scholar
da Costa M.L., Kern D.C., Pinto A.H.E., da Trindade Souza J.R. (2004), The ceramic artifacts in archaeological black earth (terra preta) from Lower Amazon Region, Brazil: chemistry and geochemical evolution, Acta Amazonia 34(3) 375–386.Search in Google Scholar
da Costa M.L., Rios G.M., Carvalho da Silva M.M., da Silva G.J., Molano-Valdes U., (2011). Mineralogy and chemistry of archaeological ceramic fragments from archaeological Dark Earth site in Colombian Amazon, Rem: Revista Escola de Minas 64, 17–23.Search in Google Scholar
González-García F., Romero-Acosta V., García-Ramos G., González-Rodríguez M., (1990). Firing transformations of mixtures of clays containing illite, kaolinite and calcium carbonate used by ornamental tile industries, Applied Clay Science 5, 361–375.Search in Google Scholar