1. Abbasnejad Seresty, R. (2009). Iron Archaeometallurgy in the Triangle of the Sirdjān, Neiriz and Shahr- e- Bābak . The International Journal of Humanities. Volume 16, Issue 1. [
DOI:10.1017/S0940739109990282]
2. Ashkenazi D., Cvikel D, Stern A., Pasternak A, Barkai O, Aronson A., & Kahanov Y. (2014). Archaeometallurgical investigation of joining processes of metal objects from shipwrecks: three test cases. Metal-lography, Microstructure, and Analysis. ; 3:349-62. [
DOI:10.1007/s13632-014-0153-5]
3. Aslani, H. (1995). Structural studies in tracing bronze technology, practical technology, conservation and restoration of Tasme Jan ram statue. Thesis of the undergraduate restoration course, Isfahan Art University. [ in Persian].
4. Bakhshandehfard, H.R. (2010). Technical Survey of Historical Metal Objects in Conservation. Publications of Isfahan University of Arts. [ in Per-sian].
5. Bakhshandehfard, H.R. (2020). Conservation Treatment Methods for Copper and Bronze Artifacts. Publications of Isfahan University of Arts. [ in Persian].
6. Balassone G, Boni M, Di Maio G., & Villa IM. (2009). Characterization of metallic artefacts from the Iron Age culture in Campania (Italy): a multi-analytical study. Periodico di mineralogia.;78(1):45-63.
7. Bani-Hani M, Abd-Allah R., & El-Khouri L. (2012). Archeaometallur-gical finds from Barsinia, Northern Jordan: Microstructural char-acterization and conservation treatment. Journal of cultural herit-age.;13(3):314-25. [
DOI:10.1016/j.culher.2011.12.005]
8. Chitty WJ, Dillmann P, L'Hostis V., & Lombard C. (2005). Long-term corrosion resistance of metallic reinforcements in concrete-a study of corrosion mechanisms based on archaeological artefacts. Corrosion Science. Jun 1;47(6):1555-81. [
DOI:10.1016/j.corsci.2004.07.032]
9. Deshpande P.P., & Dhokey NB. (2008). Metallographical investigations of iron objects in ancient Vidharbha region of Maharashtra. Transactions of the Indian Institute of Metals. Apr;61(2-3):135-7. [
DOI:10.1007/s12666-008-0013-6]
10. Dillmann, P., L'Héritier, M., et al. (2007). Corrosion of iron archaeo-logical artefacts: Characterisation and mechanisms. Corrosion Science.
11. Dillmann, P., et al. (2011). Long-term corrosion of archaeological iron in soil. Journal of Nuclear Materials.
12. Ehsani, M. T. (2007)Seven thousand years of metalworking art in Iran. Third edition. Tehran: Scientific and Cultural Publishing Company; 1386. [ in Persian].
13. Eliyahu, M., Barkai, O., Goren, Y., Eliaz, N., Kahanov ,Y., & Ashkenazi, D. (2011). The iron anchors from the Tantura F shipwreck: typo-logical and metallurgical analyses. Journal of Archaeological Science. 1;38(2):233-45. [
DOI:10.1016/j.jas.2010.08.023]
14. Ferrer Eres ,MA., Valle-Algarra, FM., Gimeno Adelantado, JV., Pe-ris-Vicente, J., Soriano Piñol , MD., & Mateo-Castro, R. (2008). Archaeometric study on polymetallic remains from the archaeo-logical dig in Lixus (Larache, Morocco) by scanning electron mi-croscopy and metallographic techniques. Microchimica Acta. 162:341-9. [
DOI:10.1007/s00604-007-0926-5]
15. Figueiredo ,E., Araújo M. D., Silva, R.J., Senna-Martinez, J.C., & Vaz ,J.I. (2011). Characterization of Late Bronze Age large size shield nails by EDXRF, micro-EDXRF and X-ray digital radiography. Applied Radiation and Isotopes.;69(9):1205-11. [
DOI:10.1016/j.apradiso.2011.04.027]
16. Jafari , A., Oudbashi ,O., & Abedini Iraqi ,M. (2015). Microscopic studies on ancient iron objects obtained from archaeological excavations in northern Iran. Archaeological researches of Iran.7(15):131-47. [ in Per-sian]. [
DOI:10.22084/NBSH.2017.13218.1579]
17. Jegdić ,b., polić-radovanović ,s., ristić s., & Alil , a .(2012). Corrosion stability of corrosion products on an archaeological iron artefact. International journal of conservation science. 1;3(4).
18. Koleini, F., Prinsloo ,L.C., Schoeman, M.H., Pikirayi, I., & Chirikure, S. (2013). Characterization of the corrosion layer on iron archaeo-logical artefacts from K2 (825-1220 AD), an archaeological site in South Africa. Studies in conservation. 1;58(3):274-82. [
DOI:10.1179/2047058412Y.0000000044]
19. Lorenz S.(2008). Archäometrische untersuchungen am hortfund von Bazgir, Iran (Doctoral dissertation, Diplomarbeit-/Magister, Institute für Archämetries, Fakultät für Werkstoffwissenschaft und Werkstofftechnologie, TU Bergakademie Freibreg, Betreuer: Ernst Pernicka).
20. Mokhtar, N.A., Saidin ,M., & Abdullah, J. (2011). The ancient iron smelting in Sg. Batu, Bujang valley, Kedah. In Postgraduate student forum presentation, Chinese University of Hong Kong, China.
21. Moshtagh Khorasani, M. (2009). Bronze and iron weapons from Luristan. Legat Verlag .
22. Pigott, V.C. (2004). Hasanlu and the Emergence of Iron in Early 1st Millen-nium BC Western Iran. Persia's Ancient Splendour, Mining, Handicraft and Archaeology.
23. Pleiner, R. (2000). Iron in Archaeology: The European Bloomery Smelters. Prague: Archeologický ústav AV ČR.
24. Rahjo, Z. (2016). Archeological studies on the iron objects discovered from the archaeological site of Tahig Khomein, M.A thesis, Art University of Isfahan: Faculty of Conservation and Restoration. [ in Persian].
25. Reguer, S., Neff, D., Bellot‐Gurlet ,L., & Dillmann ,P. (2007). Deteri-oration of iron archaeological artefacts: micro‐Raman investigation on Cl‐containing corrosion products. Journal of Raman Spectroscopy: An International Journal for Original Work in all Aspects of Raman Spectroscopy, Including Higher Order Processes, and also Brillouin and Rayleigh Scattering. ;38(4):389-97. [
DOI:10.1002/jrs.1659]
26. Robbiola ,L., Blengino, J. M., & Fiaud, C. (1998). Morphology and mechanisms of formation of natural patinas on archaeological Cu-Sn alloys. Corrosion Science.;40(12):2083-111. [
DOI:10.1016/S0010-938X(98)00096-1]
27. Robbiola, L., & Fiaud ,C. (1993). Corrosion structures of long-term burial Cu-Sn alloys: influence of the selective dissolution of copper. Metallurgical Research & Technology (Revue de Métal-lurgie).;(6):157-62.
28. Robbiola ,L., & Portier, R. (2006). A global approach to the authenti-cation of ancient bronzes based on the characterization of the alloy-patina-environment system. Journal of Cultural Heritage.;7(1):1-2. [
DOI:10.1016/j.culher.2005.11.001]
29. Scott, D. A. (1991). Metallography and Microstructure of Ancient and Historic Metals (No. 77). Los Angeles, CA: The Getty Conservation Institute.
30. Scott, D. A,. (2009). Iron and steel in art. Corrosion, colorants, conserva-tion. Eggert, Gerhard - ISBN 10: 1904982050 - ISBN 13: 9781904982050 - Archetype
31. Selwyn L. S., Sirois, P. I., & Argyropoulos ,V. (1999). The corrosion of excavated archaeological iron with details on weeping and akaga-neite. Studies in conservation.;44(4):217-32. [
DOI:10.1179/sic.1999.44.4.217]
33. Sevin, V., Özfırat, A., & Kavaklı, E. (1997) . Van-Karagündüz Mound Excavations Studies. Bulletin, 63(238), pp.847-881. [
DOI:10.37879/belleten.1999.847]
34. Thiele. S., Fuchs B.M., Ramaiah. N., & Amann, R. (2012). Microbial community response during the iron fertilization experiment LOHAFEX. Applied and Environmental Microbiology. 15;78(24):8803-12. [
DOI:10.1128/AEM.01814-12]
35. Turner , C.W., & Lisheng, Chi . (2012). formation of corrosion products of carbon steel under condenser operating conditions International Atomic. Energy Agency. https://inis.iaea.org › NCLCollection Store.
36. Tylecote, R. F. (1987). The Early History of Metallurgy in Europe. London: Longman.
37. Yalçın, Y .(2006). Iron in the Hittites, Uluburun Ship 3000 Years Ago World Trade, Ü.Yalçın-C.Pulak -R.Slotta, Ege Publications, Istanbul, 495-504.
38. Zimmermann- Yıldırım (2010).T. Zimmermann -T. Yıldırım, "Çorum Arkeoloji Müzesinde Bulunan İTÇ Maden Buluntularının Xrf Analizi", XXXV. ARST, 99-104