Skip to main content
Top

2019 | OriginalPaper | Chapter

Laboratory Evaluation of Nanoparticles for Consolidation of Limestone in Archaeological Site of Jerash

Authors : Ruba Alomary, Mustafa Al-Naddaf, Wassef Al Sekhaneh

Published in: Conservation of Architectural Heritage

Publisher: Springer International Publishing

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Limestones have been widely used in the construction of archaeological and heritage structures in Jordan. These stone structures are facing degradation due to many deterioration factors. Exposure to atmospheric conditions results in deterioration in historic monuments. Limestone conservation identifies emerging issues and challenges that have to be investigated in detail. In this study, limestone deterioration and the development of its consolidation treatments by synthesizing nano-sized particles of calcium hydroxide that dispersed in an alcoholic medium were investigated through an examination of limestone from the archaeological site of Jerash and another fresh limestone sample. Many properties were observed before and after the treatment, to examine the performance of nano-lime as a consolidant. All of the tests were conducted in laboratory conditions. When most of the conservation interventions relied on using organic materials, which were later proven to be harmful to stone on long term, a pressing demand is calling on representing new smart materials by using nano-lime for limestone consolidation; due to their improved mechanical properties, their physicochemical compatibility as consolidant materials follow the principle of authenticity of historic monuments (Wharton 1995). Results have shown that the application of nano-lime prepared in propanol-1 significantly improved the mechanical properties of the treated limestone. Compressive strength increased about 48% for archaeological and 38% for fresh samples, while the drilling increased by 500% for fresh and 84% for archaeological limestones; it has no significant change on porosity, although water uptake value (w-value) decreased 20%.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literature
go back to reference Abu-Jaber, Nizar, al Saad, Ziad, & Smadi, Nihad. (2009). The quarryscapes of Gerasa (Jarash), Jordan. Geological Survey of Norway, Special Publication(12), 67–77. Abu-Jaber, Nizar, al Saad, Ziad, & Smadi, Nihad. (2009). The quarryscapes of Gerasa (Jarash), Jordan. Geological Survey of Norway, Special Publication(12), 67–77.
go back to reference Al-Share, Raed, Momani, Wasef, Obeidat, Asem, & Mansour, Nassar. (2012). Natural Stone in Jordan: Characteristics, Specifications and Importance in interior Architecture. American Journal of Scientific Research(82), 83–94. Al-Share, Raed, Momani, Wasef, Obeidat, Asem, & Mansour, Nassar. (2012). Natural Stone in Jordan: Characteristics, Specifications and Importance in interior Architecture. American Journal of Scientific Research(82), 83–94.
go back to reference Ambrosi, Moira, Dei, Luigi, Giorgi, Rodorico, Neto, Chiara, & Baglioni, Piero. (2001). Colloidal particles of Ca (OH) 2: properties and applications to restoration of frescoes. Langmuir, 17(14), 4251–4255. Ambrosi, Moira, Dei, Luigi, Giorgi, Rodorico, Neto, Chiara, & Baglioni, Piero. (2001). Colloidal particles of Ca (OH) 2: properties and applications to restoration of frescoes. Langmuir, 17(14), 4251–4255.
go back to reference Amoroso, Giovanni Giuseppe, & Fassina, Vasco. (1983). Stone decay and conservation: atmospheric pollution, cleaning, consolidation and protection: Elsevier Science Publishers. Amoroso, Giovanni Giuseppe, & Fassina, Vasco. (1983). Stone decay and conservation: atmospheric pollution, cleaning, consolidation and protection: Elsevier Science Publishers.
go back to reference Baglioni, Piero, & Chelazzi, David. (2013). Nanoscience for the Conservation of Works of Art: Royal Society of Chemistry. Baglioni, Piero, & Chelazzi, David. (2013). Nanoscience for the Conservation of Works of Art: Royal Society of Chemistry.
go back to reference Baglioni, Piero, Chelazzi, David, & Giorgi, Rodorico. (2014). Nanotechnologies in the conservation of cultural heritage: a compendium of materials and techniques: Springer. Baglioni, Piero, Chelazzi, David, & Giorgi, Rodorico. (2014). Nanotechnologies in the conservation of cultural heritage: a compendium of materials and techniques: Springer.
go back to reference Baglioni, Piero, & Giorgi, Rodorico. (2006). Soft and hard nanomaterials for restoration and conservation of cultural heritage. Soft Matter, 2(4), 293–303. Baglioni, Piero, & Giorgi, Rodorico. (2006). Soft and hard nanomaterials for restoration and conservation of cultural heritage. Soft Matter, 2(4), 293–303.
go back to reference Bhattacharjee, Sourav. (2016). DLS and zeta potential–What they are and what they are not? Journal of Controlled Release, 235, 337–351. Bhattacharjee, Sourav. (2016). DLS and zeta potential–What they are and what they are not? Journal of Controlled Release, 235, 337–351.
go back to reference Chipera, Steve J, & Bish, David L. (2002). FULLPAT: a full-pattern quantitative analysis program for X-ray powder diffraction using measured and calculated patterns. Journal of Applied Crystallography, 35(6), 744–749. Chipera, Steve J, & Bish, David L. (2002). FULLPAT: a full-pattern quantitative analysis program for X-ray powder diffraction using measured and calculated patterns. Journal of Applied Crystallography, 35(6), 744–749.
go back to reference D’Armada, Paul, & Hirst, Elizabeth. (2012). Nano-lime for consolidation of plaster and stone. Journal of architectural conservation, 18(1), 63–80. D’Armada, Paul, & Hirst, Elizabeth. (2012). Nano-lime for consolidation of plaster and stone. Journal of architectural conservation, 18(1), 63–80.
go back to reference Daniele, V, & Taglieri, G. (2011). Ca(OH)2 nanoparticle characterization: microscopic investigation of their application on natural stones. WIT Transactions on Engineering Sciences, 72, 55–66. Daniele, V, & Taglieri, G. (2011). Ca(OH)2 nanoparticle characterization: microscopic investigation of their application on natural stones. WIT Transactions on Engineering Sciences, 72, 55–66.
go back to reference Daniele, Valeria, Taglieri, Giuliana, & Quaresima, Raimondo. (2008). The nanolimes in Cultural Heritage conservation: Characterisation and analysis of the carbonatation process. Journal of cultural heritage, 9(3), 294–301. Daniele, Valeria, Taglieri, Giuliana, & Quaresima, Raimondo. (2008). The nanolimes in Cultural Heritage conservation: Characterisation and analysis of the carbonatation process. Journal of cultural heritage, 9(3), 294–301.
go back to reference Doehne, Eric. (2006). ESEM applications: From cultural heritage conservation to nano-behaviour. Microchimica Acta, 155(1–2), 45–50. Doehne, Eric. (2006). ESEM applications: From cultural heritage conservation to nano-behaviour. Microchimica Acta, 155(1–2), 45–50.
go back to reference Fitzner, Bernd, & Heinrichs, Kurt. (2001). Damage diagnosis at stone monuments-weathering forms, damage categories and damage indices. ACTA-UNIVERSITATIS CAROLINAE GEOLOGICA(1), 12–13. Fitzner, Bernd, & Heinrichs, Kurt. (2001). Damage diagnosis at stone monuments-weathering forms, damage categories and damage indices. ACTA-UNIVERSITATIS CAROLINAE GEOLOGICA(1), 12–13.
go back to reference Giorgi, Rodorico, Dei, Luigi, & Baglioni, Piero. (2000). A new method for consolidating wall paintings based on dispersions of lime in alcohol. Studies in conservation, 45(3), 154–161. Giorgi, Rodorico, Dei, Luigi, & Baglioni, Piero. (2000). A new method for consolidating wall paintings based on dispersions of lime in alcohol. Studies in conservation, 45(3), 154–161.
go back to reference Hansen, Eric, Doehne, Eric, Fidler, John, Larson, John, Martin, Bill, Matteini, Mauro,… de Tagle, Alberto. (2003). A review of selected inorganic consolidants and protective treatments for porous calcareous materials. Studies in Conservation, 48(sup1), 13–25. Hansen, Eric, Doehne, Eric, Fidler, John, Larson, John, Martin, Bill, Matteini, Mauro,… de Tagle, Alberto. (2003). A review of selected inorganic consolidants and protective treatments for porous calcareous materials. Studies in Conservation, 48(sup1), 13–25.
go back to reference Johnson, JB, Montgomery, Melanie, Thompson, GE, Wood, GC, Sage, PW, & Cooke, MJ. (1996). The influence of combustion-derived pollutants on limestone deterioration: 1. The dry deposition of pollutant gases. Corrosion science, 38(1), 105–131. Johnson, JB, Montgomery, Melanie, Thompson, GE, Wood, GC, Sage, PW, & Cooke, MJ. (1996). The influence of combustion-derived pollutants on limestone deterioration: 1. The dry deposition of pollutant gases. Corrosion science, 38(1), 105–131.
go back to reference Kazemi, Elham, Ghamari, Mohammad Amin Khojasteh, & Neshanifam, Shokuh. (2016). The Application of Nanotechnology against Humidity in the Building Preservation of Tabriz Historical and Traditional City, Case Study: Blue Mosque, Tabriz. Kazemi, Elham, Ghamari, Mohammad Amin Khojasteh, & Neshanifam, Shokuh. (2016). The Application of Nanotechnology against Humidity in the Building Preservation of Tabriz Historical and Traditional City, Case Study: Blue Mosque, Tabriz.
go back to reference Price, Clifford A, & Doehne, Eric. (2011). Stone conservation: an overview of current research: Getty Publications. Price, Clifford A, & Doehne, Eric. (2011). Stone conservation: an overview of current research: Getty Publications.
go back to reference Rodriguez-Navarro, Carlos, Suzuki, Amelia, & Ruiz-Agudo, Encarnacion. (2013). Alcohol dispersions of calcium hydroxide nanoparticles for stone conservation. Langmuir, 29(36), 11457–11470. Rodriguez-Navarro, Carlos, Suzuki, Amelia, & Ruiz-Agudo, Encarnacion. (2013). Alcohol dispersions of calcium hydroxide nanoparticles for stone conservation. Langmuir, 29(36), 11457–11470.
go back to reference Siegesmund, Siegfried, & Snethlage, Rolf. (2011). Stone in architecture. Springer, 4th ed. doi, 10(1007), 978–973. Siegesmund, Siegfried, & Snethlage, Rolf. (2011). Stone in architecture. Springer, 4th ed. doi, 10(1007), 978–973.
go back to reference Smith, BJ, & Přikryl, R. (2007). Diagnosing decay: the value of medical analogy in understanding the weathering of building stones. Geological Society, London, Special Publications, 271(1), 1–8. Smith, BJ, & Přikryl, R. (2007). Diagnosing decay: the value of medical analogy in understanding the weathering of building stones. Geological Society, London, Special Publications, 271(1), 1–8.
go back to reference Wharton, A. J. (1995). Refiguring the Post Classical City: Dura Europos, Jerash, Jerusalem and Ravenna (p. 71). Cambridge: Cambridge University Press. Wharton, A. J. (1995). Refiguring the Post Classical City: Dura Europos, Jerash, Jerusalem and Ravenna (p. 71). Cambridge: Cambridge University Press.
Metadata
Title
Laboratory Evaluation of Nanoparticles for Consolidation of Limestone in Archaeological Site of Jerash
Authors
Ruba Alomary
Mustafa Al-Naddaf
Wassef Al Sekhaneh
Copyright Year
2019
DOI
https://doi.org/10.1007/978-3-030-10871-7_4