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International Journal of Architectural Heritage
Conservation, Analysis, and Restoration
Volume 15, 2021 - Issue 3
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Research Article

Identification of Bio-Minerals and Their Origin in Lime Mortars of Ancient Monument: Thanjavur Palace

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Pages 426-436 | Received 16 Oct 2018, Accepted 21 May 2019, Published online: 05 Jun 2019

References

  • Alba-Lois, L. and C. Segal-Kischinevzky. 2010. Yeast fermentation and the making of beer and wine. Nature Education 3 (9):17.
  • Albright, J. N. 1971. Mineralogical notes vaterite stability. American Mineralogist: Journal of Earth and Planetary Materials 56 (3–4_Part_1):620–24.
  • Castanier, S., G. Le Metayer-Levrel, and J. P. Perthuisot. 2000. Bacterial roles in the precipitation of carbonate minerals. In Microbial sediments, ed. Robert E. Riding and Stanley M. Awramik, 32–39. Berlin, Heidelberg: Springer.
  • Cezar, T. 1998. Calcium oxalate: A surface treatment for limestone. Journal of Conservation and Museum Studies 4. doi: 10.5334/jcms.4982.
  • Chahal, N., R. Siddique, and A. Rajor. 2012. Influence of bacteria on the compressive strength, water absorption and rapid chloride permeability of fly ash concrete. Construction and Building Materials 28 (1):351–56. doi:10.1016/j.conbuildmat.2011.07.042.
  • Chandra, S. 2003. History of architecture and ancient building materials in India: Part I & Part II (in single volume). New Delhi: Tech Books International.
  • Chenna, R., H. Sugawara, T. Koike, R. Lopez, T. J. Gibson, D. G. Higgins, and J. D. Thompson. 2003. Multiple sequence alignment with the clustal series of programs. Nucleic Acids Research 31 (13):3497–500. doi:10.1093/nar/gkg500.
  • Dhami, N. K., M. S. Reddy, and A. Mukherjee. 2014. Application of calcifying bacteria for remediation of stones and cultural heritages. Frontiers in Microbiology 5:304. doi:10.3389/fmicb.2014.00547.
  • Eckel, E. C., and L. Cements. 1922. Plasters: Their materials, manufacture, and properties. New York: John Wiley Sons.
  • Elert, K., C. Rodriguez-Navarro, E. S. Pardo, E. Hansen, and O. Cazalla. 2002. Lime mortars for the conservation of historic buildings. Studies in Conservation 47 (1):62–75.
  • Fang, S., H. Zhang, B. Zhang, G. Wei, G. Li, and Y. Zhou. 2013. A study of the Chinese organic–Inorganic hybrid sealing material used in “Huaguang No. 1” ancient wooden ship. Thermochimica Acta 551:20–26. doi:10.1016/j.tca.2012.10.010.
  • Fiori, C., M. Vandini, S. Prati, and G. Chiavari. 2009. Vaterite in the mortars of a mosaic in the Saint Peter basilica, Vatican (Rome). Journal of Cultural Heritage 10 (2):248–57. doi:10.1016/j.culher.2008.07.011.
  • Gangu, K. K., G. R. Tammineni, A. S. Dadhich, and S. B. Mukkamala. 2014. Control of phase and morphology of calcium oxalate crystals by natural polysaccharide, gum Arabic. Molecular Crystals and Liquid Crystals 591 (1):114–22. doi:10.1080/15421406.2013.836880.
  • Gram, H. C. J.1884. Dansih Bacteriologist, Gram stain research. Encyclopedia Britannica. https://www.britannica.com/biography/Hans-Christian-Joachim-Gram.
  • Groot, C. J. W. P., G. Ashall, and J. J. Hughes. 2004. Characterisation of old mortars with respect to their repair—Final report of RILEM TC 167-COM. Accessed http://www. rilem. net/reports. php.
  • Hearn, N. 1998. Self-sealing, autogenous healing and continued hydration: What is the difference? Materials and Structures 31 (8):563. doi:10.1007/BF02481539.
  • Hess, D., D. J. Coker, J. M. Loutsch, and J. Russ. 2008. Production of oxalates in vitro by microbes isolated from rock surfaces with prehistoric paints in the lower Pecos region, Texas. Geoarchaeology: An International Journal 23 (1):3–11. doi:10.1002/(ISSN)1520-6548.
  • Huynh, N. N. T., N. M. Phuong, N. P. A. Toan, and N. K. Son. 2017. Bacillus subtilis HU58 Immobilized in micropores of diatomite for using in self-healing concrete. Procedia Engineering 171:598–605. doi:10.1016/j.proeng.2017.01.385.
  • IS: 6932 (Part V) − 1973. 1973. Methods of tests for building limes, Determination of unhydrated oxide. New Delhi: Bureau of Indian Standards.
  • IS: 712-1984. 1984. Specification for building limes. New Delhi, India: Bureau of Indian Standards.
  • IS: 7874 (Part I) – 1975. 1975. Methods of tests for animal feeds and feeding stuffs. New Delhi, India: Bureau of Indian.
  • Jada, A., and K. Jradi. 2006 February. Role of polyelectrolytes in crystallogenesis of calcium carbonate. In Macromolecular symposia, Vols. 233, No. 1, ed. Martin Weber, 147–51. Weinheim, Germany: WILEY‐VCH Verlag. doi:10.1002/masy.200690011.
  • Jasiczak, J., and K. Zielinski. 2006. Effect of protein additive on properties of mortar. Cement and Concrete Composites 28 (5):451–57. doi:10.1016/j.cemconcomp.2005.12.007.
  • Kovács, I., B. Udvardi, G. Falusi, M. Földvári, T. Fancsik, P. Kónya, E. Bodor, J. Mihály, C. Németh, G. Czirják, et al. 2015. Az ATR FTIR spektrometriagyakorlatialkalmazásanéhány—Elsősorbanföldtani—Esettanulmánybemutatásával. FöldtaniKözlöny 145 (2):173–173.
  • Krishnapriya, S., and D. V. Babu. 2015. Isolation and identification of bacteria to improve the strength of concrete. Microbiological Research 174:48–55. doi:10.1016/j.micres.2015.03.009.
  • Kumar, P., R. C. Dubey, and D. K. Maheshwari. 2012 Sep 6. Bacillus strains isolated from rhizosphere showed plant growth promoting and antagonistic activity against phytopathogens. Microbiological Research 167 (8): 493–99. doi: 10.1016/j.micres.2012.05.002.
  • Leopold, L. F., N. Leopold, H. A. Diehl, and C. Socaciu. 2011. Quantification of carbohydrates in fruit juices using FTIR spectroscopy and multivariate analysis. Journal of Spectroscopy 26 (2):93–104. doi:10.1155/2011/285890.
  • Lubelli, B., T. G. Nijland, and R. P. J. Van Hees. 2011. Self-healing of lime-based mortars: Microscopy observations on case studies. Heron 56 (1/2):75–91.
  • Malkaj, P., J. Kanakis, and E. Dalas. 2004. The effect of leucine on the crystal growth of calcium carbonate. Journal of Crystal Growth 266 (4):533–38. doi:10.1016/j.jcrysgro.2004.02.114.
  • Manoli, F., J. Kanakis, P. Malkaj, and E. Dalas. 2002. The effect of aminoacids on the crystal growth of calcium carbonate. Journal of Crystal Growth 236 (1–3):363–70. doi:10.1016/S0022-0248(01)02164-9.
  • Maravelaki-Kalaitzaki, P., A. Bakolas, I. Karatasios, and V. Kilikoglou. 2005. Hydraulic lime mortars for the restoration of historic masonry in Crete. Cement and Concrete Research 35 (8):1577–86. doi:10.1016/j.cemconres.2004.09.001.
  • Martínez-Molina, W., E. M. Alonso-Guzmán, H. L. Chávez-García, J. C. Arteaga-Arcos, A. A. Torres-Acosta, J. A. Bedolla-Arroyo, C. L. Gómez, and A. AchaPalomares. 2014. Influence of the organic and mineral additions in the porosity of lime mortars. In Advanced materials research Vol. 887, 830–37. Trans Tech Publications.
  • Mathara, J. M., U. Schillinger, P. M. Kutima, S. K. Mbugua, and W. H. Holzapfel. 2004. Isolation, identification and characterisation of the dominant microorganisms of kulenaoto: The Maasai traditional fermented milk in Kenya. International Journal of Food Microbiology 94 (3):269–78. doi:10.1016/j.ijfoodmicro.2004.01.008.
  • Meli, R., and R. Sánchez-Ramírez. 2007. Criteria and experiences on structural rehabilitation of stone masonry buildings in Mexico City. International Journal of Architectural Heritage 1 (1):3–28. doi:10.1080/15583050601123118.
  • Monte, M. 2003. Oxalate film formation on marble specimens caused by fungus. Journal of Cultural Heritage 4 (3):255–58. doi:10.1016/S1296-2074(03)00051-7.
  • Moropoulou, A., A. Bakolas, and K. Bisbikou. 1995. Characterization of ancient, byzantine and later historic mortars by thermal and X-ray diffraction techniques. Thermochimica Acta 269:779–95. doi:10.1016/0040-6031(95)02571-5.
  • Nene, A. S. 2012. Building materials and construction techniques of ancient india. New Delhi: Ganga Publications.
  • Nonakaran, S. H., M. Pazhouhandeh, A. Keyvani, F. Z. Abdollahipour, and A. Shirzad. 2015 Dec 1. Isolation and identification of Pseudomonas azotoformans for induced calcite precipitation. World Journal of Microbiology and Biotechnology 31 (12): 1993–2001. doi: 10.1007/s11274-015-1948-5.
  • Palin, D., V. Wiktor, and H. M. Jonkers. 2015. Autogenous healing of marine exposed concrete: Characterization and quantification through visual crack closure. Cement and Concrete Research 73:17–24. doi:10.1016/j.cemconres.2015.02.021.
  • Prinsloo, L. C. 2007. Rock hyraces: A cause of San rock art deterioration? 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 (5):496–503. doi:10.1002/(ISSN)1097-4555.
  • Ravi, R., and S. Thirumalini. 2019. Effect of natural polymers from cissus glauca roxb on the mechanical and durability properties of hydraulic lime mortar. International Journal of Architectural Heritage 13 (2):229–43.
  • Ravi, R., S. Thirumalini, and N. Taher. 2018. Analysis of ancient lime plasters—Reason behind longevity of the Monument Charminar, India a study. Journal of Building Engineering 20:30–41. doi:10.1016/j.jobe.2018.04.010.
  • Rodriguez-Navarro, C., A. Suzsauki, and E. Ruiz-Agudo. 2013. Alcohol dispersions of calcium hydroxide nanoparticles for stone conservation. Langmuir 29 (36):11457–70. doi:10.1021/la4017728.
  • Rodriguez-Navarro, C., C. Jimenez-Lopez, A. Rodriguez-Navarro, M. T. Gonzalez-Munoz, and M. Rodriguez-Gallego. 2007. Bacterially mediated mineralization of vaterite. Geochimica Et Cosmochimica Acta 71 (5):1197–213. doi:10.1016/j.gca.2006.11.031.
  • Ruiz-Agudo, E., A. Burgos-Cara, C. Ruiz-Agudo, A. Ibañez-Velasco, H. Cölfen, and C. Rodriguez-Navarro. 2017. A non-classical view on calcium oxalate precipitation and the role of citrate. Nature Communications 8 (1):768. doi:10.1038/s41467-017-00756-5.
  • Schultze-Lam, S., D. Fortin, B. S. Davis, and T. J. Beveridge. 1996. Mineralization of bacterial surfaces. Chemical Geology 132 (1–4):171–81. doi:10.1016/S0009-2541(96)00053-8.
  • Siddique, R., V. Nanda, E. H. Kadri, M. I. Khan, M. Singh, and A. Rajor. 2016. Influence of bacteria on compressive strength and permeation properties of concrete made with cement baghouse filter dust. Construction and Building Materials 106:461–69. doi:10.1016/j.conbuildmat.2015.12.112.
  • Singh, M., and B. R. Arbad. 2015. Characterization of 4th–5th century AD earthen plaster support layers of Ajanta mural paintings. Construction and Building Materials 82:142–54. doi:10.1016/j.conbuildmat.2015.02.043.
  • Singh, M., S. V. Kumar, S. A. Waghmare, and P. D. Sabale. 2016. Aragonite–Vaterite–Calcite: Polymorphs of CaCO3 in 7th century CE lime plasters of Alampur group of temples, India. Construction and Building Materials 112:386–97. doi:10.1016/j.conbuildmat.2016.02.191.
  • Taylor, H. F. 1997. Cement chemistry. New York: Thomas Telford.
  • TC 203-RHM (Jan Erik Lindqvist) JanErik. Lindqvist@ CBI. SE, 2009. Rilem TC 203-RHM: Repair mortars for historic masonry. Testing of hardened mortars, a process of questioning and interpreting. Materials and Structures, 42:853–865.
  • Thirumalini, P., and S. K. Sekar. 2014. Effect of microbiologically induced CaCO 3 precipitationby addition of kadukai and jaggery in Lime mortar. International Journal of Applied Engineering Research 9:6149–57.
  • Thirumalini, S., R. Ravi, and M. Rajesh. 2018. Experimental investigation on physical and mechanical properties of lime mortar: Effect of organic addition. Journal of Cultural Heritage 31:97–104. doi:10.1016/j.culher.2017.10.009.
  • Thirumalini, S., R. Ravi, S. K. Sekar, and M. Nambirajan. Dec 2015a. Knowing from the past–Ingredients and technology of ancient mortar used in Vadakumnathan temple, Tirussur, Kerala, India. Journal of Building Engineering 1(4):101–12. doi: 10.1016/j.jobe.2015.09.004.
  • Thirumalini, S., and S. K. Sekar.2015. Heritage Lime Mortar Characterization and Simulation. Ph.D. thesis, School of Mechanical and Building Sciences, VIT University, India.
  • Thirumalini, S., S.S k, B. Bhuvaneshwari, and N. Iyer. 2015. Bio-inorganic composites as repair mortar for heritage structures. Journal of Structural Engineering 42 (4): 294–304.
  • Ventolà, L., M. Vendrell, P. Giraldez, and L. Merino. 2011. Traditional organic additives improve lime mortars: New old materials for restoration and building natural stone fabrics. Construction and Building Materials 25 (8):3313–18. doi:10.1016/j.conbuildmat.2011.03.020.
  • Wang, J., H. M. Jonkers, N. Boon, and N. De Belie. 2017. Bacillus sphaericus LMG 22257 is physiologically suitable for self-healing concrete. Applied Microbiology and Biotechnology 101 (12):5101–14.
  • Wiktor, V., and H. M. Jonkers. 2011 Aug 1. Quantification of crack-healing in novel bacteria-based self-healing concrete. Cement and Concrete Composites 33 (7): 763–70. doi: 10.1016/j.cemconcomp.2011.03.012.
  • Yang, F., B. Zhang, C. Pan, and Y. Zeng. 2009. Traditional mortar represented by sticky rice lime mortar—One of the great inventions in ancient China. Science in China Series E: Technological Sciences 52 (6):1641–47. doi:10.1007/s11431-008-0317-0.

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