Derleme
BibTex RIS Kaynak Göster

Tarihi Taşların Sağlamlaştırılmasında Nano Teknoloji: Nano Kireç Örneği

Yıl 2024, Cilt: 6 Sayı: 2, 191 - 199, 30.12.2024
https://doi.org/10.58608/augsfd.1589639

Öz

Tarihi taşların korunması üzerine yapılan çalışmalar, 19. yüzyıla kadar uzanmakta, ancak etkili yöntemler halen geliştirilmeye çalışılmaktadır. Koruma çalışmalarında, taşın fiziksel, kimyasal ve estetik özelliklerini bozmadan dayanıklılığı artırmak temel hedeflerdir. Minimum müdahale, uyumlu malzeme kullanımı ve tekrar uygulanabilirlik bu çalışmalarda temel ilkeleri oluşturmaktadır. Günümüzde koruma çalışmalarında nano malzemelerin kullanımı dikkat çekmektedir. Özellikle nano kireç (nanolime), kalkerli taşlar (kireçtaşı, mermer vb), kireç harç ve sıvalarının sağlamlaştırılması ve onarılmasında umut verici sonuçlar vermektedir. Geleneksel ve yeni geliştirilen yöntemlerin birlikte kullanımı, tarihi taşların uzun vadeli korunması için gereklidir. Nano malzemeler kültürel mirasın sürdürülebilir korunmasında önemli bir potansiyele sahiptir.

Kaynakça

  • Ambrosi M., Dei L., Giorgi R., vd. (2001). Colloidal particles of Ca(OH)2: Properties and applications to
  • restoration of frescoes, Langmuir, 17(14), 4251–4255. Brajer, I., ve Kalsbeek, N. (1999). Limewater absorption and calcite crystal formation on a limewater-
  • impregnated secco wall painting. Studies in Conservation, 44(3), 145–156.
  • https://doi.org/10.1179/sic.1999.44.3.145
  • Caner, E. ve Caner-Saltık E.N. (2018). A practical method for preparing Ca (OH) 2 nanodispersions for the
  • consolidation of archaeological calcareous stones.
  • Mediterranean Archaeology and Archaeometry, 18(3), 63-70.
  • Caner Saltık E. N., Güney B. A., Akoğlu K. G., Caner E., Ergenç D., Dincer A. Ş. (2011). Development Of Repair
  • Mortars For The Ruined Stone Towers İn Perge Archaeological Park Site, Proceedings Of The International
  • Symposium Conservation Of Stone İn Parks. Gardens and Cemeteries, Paris, 257-266.
  • Charola, A.E., (1993). General report on prevention and treatment: Cleaning, biocides and mortars, Congres
  • International sur la Conservation de la Pierre et autres Materiaux, ACTES, UNESCO.
  • Clarke, B.L. ve Ashurst, J. (1972). Stone preservation experiments, Building Research Establishment.
  • Cölfen, H., (2003). Precipitation of carbonates: recent progress in controlled production of complex shapes.
  • Current Opinion in Colloid and Interface Science, 8, 23-31.
  • Daniele, V., Taglieri, G. (2012). Synthesis of Ca(OH)2 nanoparticles with the addition of Triton X-100. Protective
  • treatments on natural stones: Preliminary results. Journal of Cultural Heritage, 13(1), 40–46.
  • D'Armada, C., ve Hirst, B. (2012). Lime and its use in stone consolidation. Journal of Architectural
  • Conservation, 18(1), 35-47.
  • Fitzner, B., Heinrichs, K., Kownatzki, R. (1995). Weathering Forms-Classification and Mapping“, in:
  • Verwitterungsformen-Klassifizierung und Kartierung Denkmalpflege und Naturwissenschaft,
  • Natursteinkonservierung I, Förderprojekt des Bundes Ministeriums für Bildung, Wissenschaft, Forschung und
  • Technologie, Verlag Ernst & Sohn, Berlin.
  • Giorgi, R., ve Ambrossi, F. (2000). The application of nanotechnology in the preservation of cultural heritage.
  • Journal of Building Materials Science, 25(3), 312-324.
  • Liu T., Zhu Y., Zhang X., vd. (2010). Synthesis and characterization of calcium hydroxide nanoparticles by
  • hydrogen plasma-metal reaction method. Materials Letters, 64(23), 2575–2577.
  • López-Arce P., Gómez-Villalba L.S., Pinho L., vd. (2010). Influence of porosity and relative humidity on
  • consolidation of dolostone with calcium hydroxide nanoparticles: Effectiveness assessment with non-
  • destructive techniques. Materials Characterization, 61(2), 168–184.
  • Nanni, A., Dei, L., (2003). Ca(OH)2 nanoparticles from W/O microemulsions. Langmuir, 19(13), 933–938.
  • Price C. A., Ross K., (1988). A further appraisal of the ’lime technique’ for limestone consolidation, using a
  • radioactive tracer. Studies in Conservation, 33(4), 178–186.
  • Price, C. A. (1996). Stone conservation: an overview of current research. Getty Conservation Institute.
  • Roy, A., Bhattacharya, J. (2010). Synthesis of Ca(OH)2 nanoparticles by wet chemical method. Micro & Nano
  • Letters, 5, 131-134.
  • Salvadori, B., Dei, L. (2001). Synthesis of Ca(OH)2 nanoparticles from diols. Langmuir, 17(8), 2371–2374.
  • Samanta A., Chanda D. K., Sekhar-Das P., vd. (2016). Synthesis of nano calcium hydroxide in aqueous
  • medium. Journal American Ceramic Society, 795(37004), 787–795.
  • Sasse, H.R. ve Snethlage, R. (1997). Methods fort he Evaluation of Stone Conservation Treatments, Saving our
  • Architectural Heritage, N.R. Baer & R. Snethlage (Eds.), John Wiley&Sons.
  • Sasse, H.R., (1993). Care of monuments and quality assurance system : Incompatible or indispensable,
  • Congres International sur la Conservation de la Pierre et autres Materiaux, ACTES, UNESCO Paris.
  • Smith, L.B., Paloczi, G.T., Hansma, K.P., Levine, P.R. (2000). Discerning nature’s mechanisms for making complex
  • biocomposite crystals, Journal of Crystal Growth, 211, 116-121.
  • Tabasso, M., (1993). Materials for Stone Conservation. UNESCO, Congrès International sur la Conservation de
  • la Pierre et Autres Matériaux, Paris, 54-58.
  • Taglieri G., Daniele V., Del Re G. vd. (2015). A new and original method to produce Ca(OH)2 nanoparticles by
  • using an anion exchange resin. Advances in Nanoparticles, 4, 17–24.
  • Tavukçuoğlu, A. Caner-Saltık E. N., Akoğlu K. G., Caner E., Işıkloğlu M. (2011). In situ Examination of Nemrut Dağ
  • Sandstone and Limestone Statues by NDT Methods, Proceedings of the International Symposium
  • Conservation of stone in Parks, Gardens and Cemeteries, Paris, 204-213.
  • Tennent, N. H., (1994). The Role of the Conservation Scientist in Enhancing the Practice of Preventive
  • Conservation and the Conservation Treatment of Artifacts, in: “Durability and Change: The Science,
  • Responsability and Cost of Sustaining Cultural heritage”.W. E. Krumbein., P. Brimbelcombe, D. E. Cosgrove., S.
  • Staniforth (Eds.)., John Wiley & Sons.
  • Teutonico, J.M. (rapporteur), Charola, A.E., De Witte, E., Grassegger, G., Koestler, R.J., Tabasso, M.L., Sasse, H.R.,
  • Snethlage, R. (1997). Group Report: How can we ensure the responsible and effective use of treatments
  • (cleaning, consolidation, protection)? in N.S. Baer and R. Snethlage (eds), Saving Our Architectural Heritage:
  • The Conservation of Historic Stone Structures, Dahlem Workshop Report ES20, Chichester. Wiley.
  • Thiel, M.J. (Ed) (1993). International Congress on the Conservation of Stone and Other Materials, Acts.
  • Unesco-Rilem.
  • Tiano, P., Cantisani, E., Sutherland, I., Paget, J.M. (2006). Biomediated reinforcement of weathered calcareous
  • stones, Journal of Cultural Heritage, 7, 49-55.
  • Torraca, G. (1976). Treatments of Stone in Monuments : A review of principles and processes, in: The
  • Conservation of Stone, Proceedings of the International Symposium, Bologna, Ed.R. Rossi-Manaresi.
  • Wendler, E. (1997). New materials and Approaches for the conservation of stone, Saving Our Cultural
  • Heritage, Ed. By Baer and Snethlage, Berlin, 181-196.
  • Ziegenbalg, G., (2003). Verfahren zur verfestigenden Behandlung von mineralischen anorganischen
  • Baustoffen, Patent number: DE:10327514
Toplam 70 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Mimari Miras ve Koruma
Bölüm Derleme Makale
Yazarlar

Evin Caner 0000-0003-0499-7517

Yayımlanma Tarihi 30 Aralık 2024
Gönderilme Tarihi 22 Kasım 2024
Kabul Tarihi 5 Aralık 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 6 Sayı: 2

Kaynak Göster

APA Caner, E. (2024). Tarihi Taşların Sağlamlaştırılmasında Nano Teknoloji: Nano Kireç Örneği. Ankara Üniversitesi Güzel Sanatlar Fakültesi Dergisi, 6(2), 191-199. https://doi.org/10.58608/augsfd.1589639