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Paterakis.etal:1996 Paterakis, Alice Boccia; Nunberg, Sarah (1996): The stabilization of archaeological pottery in an excavation study collection through relative humidity control and through desalination. In:: Le dessalement des matériaux poreux. 7es journées d'études de la SFIIC, Poitiers, 9 - 10 mai 1996,Section Française de I'lnstitut International de Conservation (SFIIC), Champs-sur-Marne 137-143.
Paterakis.etal:2015 Paterakis, A.; Steiger, M. (2015): Salt efflorescence on pottery in the Athenian Agora: A closer look. In: Studies in Conservation, 60 (), 172-184, https://doi.org/10.1179/2047058413Y.0000000113
Paterakis:1987 Paterakis, Alice Boccia (1987): A comparative study of soluble salts in contaminated ceramics. In: Grimstad, K. (Hrsg.):,Los Angeles 1017-1021.
Paterakis:1987a Paterakis, Alice Boccia (1987): The deterioration of ceramics by soluble salts and methods for monitoring their removal. In: Black, J. (Hrsg.): Recent Advances in the Conservation and Analysis of Artifacts. Jubilee Conservation Conference, London 6 - 10 july 1987,Summer Schools Press, University of London 67-72.
Paterakis:1990 Paterakis, Alice Boccia (1990): The Desalination of Salt Contaminated Ceramics. MA, Queen's University, Kingston, Ontario, Canada
Paterakis:1990a Paterakis, Alice Boccia (1990): A preliminary study of salt efflorescence in the collection of the ancient Agora, Athens, Greece. In: Grimstad, K (Hrsg.): ICOM Committee for Conservation, 9th triennial meeting, Dresden, German Democratic Republic, 26-31 August 1990: preprints, 675-679.
Paterakis:1995 Paterakis, Alice Boccia (1995): Efflorescence testing on pottery. In::,TECHNA, Faenza, Italy 661-668.
Paterakis:1998 Paterakis, Alice Boccia (1998): The desalination of consolidated ceramics. In:: Glass, ceramics and related materials: interim meeting of the ICOM-CC working group, September 13-16, 1998, Vantaa, Finland,EVTEK Institute of Arts and Design. Department of conservation studies 144-153.
Paterakis:1999 Paterakis, Alice Boccia (1999): Those evasive salt crystals. In:: ICOM Committee for Conservation, Triennial meeting (12th), Lyon, 29 August - 3 September 1999: preprints. Vol. 2, 799-802.
Pathak.etal:2016 Pathak, A.D.; Nedea, S.; Zondag, H.; Rindt, C.; Smeulders, D. (2016): A DFT-based comparative equilibrium study of thermal dehydration and hydrolysis of CaCl2 hydrates and MgCl2 hydrates for seasonal heat storage . In: Physical Chemistry Chemical Physics, 18 (), Webadresse
Patton:1982 Patton, John B. (1982): Moisture - the enemy of masonry. In: Gauri, K. L.; Gwinn, J. A. (Hrsg.): Proceedings of the International Congress on the Deterioration and Preservation of Stone Objects, Louisville, July 7-9, 1982,The University of Louisville 337.
Pauly:1976 Pauly, J.-P. (1976): Le Rôle des chlorures dans les maladies alvéolaire et desquamante. In: Skoulikidis, T. (Hrsg.): Proceedings of the 2nd International Symposium on Deterioration of Building Stones, Athens 1976,Universite Technique Nationale 79-91.
Pauly:1976a Pauly, Jean-Pierre (1976): Maladie Alveolaire Conditions de Formation et D'Evolution. In: Rossi-Manaresi, Raffaella (Hrsg.): The Conservation of Stone I, Proceedings of the International Symposium, Bologna, June 1975,Centro per la conservazione delle sculture all'aperto, Bologna 55-80.
Pauly:1976b Pauly, J. P. (1976): Le Role des Chlorures dans les Maladies Alveolaire et Desquamante. In: Skoulikidis, T. (Hrsg.): 2nd International Symposium on the Deterioration of Building Stone,Universite Technique Nationale 79-91.
PaviaSantamaria:1997 , Sara; Bolton, J. R. (1997): The susceptibility of historic brick masonry to decay. In: Journal of architectural conservation, 3 (2), 58-67
Pavlik.etal:2011 Pavlík, Z.; Pavlíková, M.; Fiala, L.; Benešová, H.; Cerný ,R. (2011): Investigation of the coupled moisture and salt transport in sandstone depending on the type of ions. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 71-77.
Paz-Garcia.etal:2011 Paz-García, J.M.; Johannesson, B.; Ottosen, L.M.; Ribeiro, A.B.; Rodriguez-Maroto, J.M. (2011): Influence of the Chemical Interactions on the Removal Rate of Different Salts in Electrokinetic Desalination Processes. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 373-380.
Pedro:1957 Pedro, Georges (1957): Mécanisme de la désaggrégation du granite et de la lave de Volvic, sous l'influenfe des sels de cristallisation.. In: Acadédes Des Sciences, 245 (3), 333-335
Pedro:1957a Pedro, Georges (1957): Nouvelle recherches sur l'influence des sels dans la désagregation des roches. In: Academie des Sciences a Paris Comptes Rendus, 244 (), 2822-2824
Pel.etal:1993 Pel, L.; Ketelaars, A. A. J.; Adan, O. C. G.; Well, A. A. van (1993): Determination of moisture diffusivity in porous media using scanning neutron radiography. In: Int. J. Heat Mass Transfer, 36 (5), 1261-1267, 10.1016/S0017-9310(05)80095-X
Pel.etal:1995 Pel, L.; Kopinga, K.; Bertram, G.; Lang, G. (1995): Water-Absorption in a Fired-Clay Brick Observed by NMR Scanning. In: Journal of Physics D Applied Physics, 28 (4), 675-680, 10.1088/0022-3727/28/4/009
Pel.etal:1995a Pel, L.; Kopinga, K.; Brocken, H. (1995): Determination of moisture profiles in porous building materials by NMR. In: Schickert, G.; Wiggenhauser, H. (Hrsg.): International symposium on Non-destructive testing in civil engineering (NDT-CE) Vol 1, September 1995, Berlin,German Society for Non-Destructive Testing (DGZfP) 189-196.
Pel.etal:1996 Pel, L.; Brocken, H.; Kopinga, K. (1996): Determination of moisture diffusivity in porous media using moisture concentration profiles. In: International Journal of Heat Mass Transfer, 39 (6), 1273-1280
Pel.etal:1998 Pel, L.; Hazrati, K.; Kopinga, K.; Machand, J. (1998): Water absorption in mortar determined by NMR. In: Magnetic Resonance Imaging, 16 (4), 525-528, 10.1016/S0730-725X(98)00061-7
Pel.etal:2000 Pel, L.; Kopinga, K.; Kaasschieter, E. F. (2000): Saline absorption in calciumsilicate brick observed by NMR-scanning. In: Journal of Physics D: Applied Physics, 33 (11), 1380, 10.1088/0022-3727/33/11/318
Pel.etal:2001 Pel, L.; Huinink, H.; Kopinga, K.; Rijniers, L.A.; Kaasschieter, E.F. (2001): Ion transport in porous media studied by NMR. In: Magnetic Resonance Imaging, 19 (3), 549-550
Pel.etal:2010 Pel, Leo; Sawdy, Alison; Voronina, V. (2010): Physical principles and efficiency of salt extraction by poulticing. In: Journal of Cultural Heritage, 11 (1), 59-67, Webadresse
Pel.etal:2012 Pel, Leo; Gonçalves, Teresa Diaz (Hrsg.) (2012): Abstracts and programm of the workshop CRYSPOM III, Crystallization in Porous Materials, in Tróia Portugal,4-7 September 2012, , Webadresse.
Pel.etal:2014 Pel, L.; Gupta, S. (2014): Paradoxical drying due to salt crystallization; the effect of ferrocyanide. In: Hilde De Clercq (Hrsg.): Proceedings of SWBSS 2014 3rd International Conference on Salt Weathering of Buildings and Stone Sculptures,KIK-IRPA, Royal Institute for Cultural Heritage Brussels 77-87, 10.5165/hawk-hhg/264.
Pel.etal:2014a Pel, L.; Gupta, S.; Steiger, M. (2014): The effect of ferrocyanide ions on sodium chloride crystallization in salt mixtures as studied by NMR. In: Hilde De Clercq (Hrsg.): Proceedings of SWBSS 2014 3rd International Conference on Salt Weathering of Buildings and Stone Sculptures,KIK-IRPA, Royal Institute for Cultural Heritage Brussels 89-100, https://doi.org/10.5165/hawk-hhg/265.
Pel.etal:2017 Pel, Leo; Pishkari, Raheleh (2017): Wick action in cultural heritage. In: Laue, Steffen (Hrsg.): Proceedings of SWBSS 2017. Fourth International Conference on Salt Weathering of Buildings and Stone Sculptures, University of Applied Sciences Potsdam, Germany, 20-22 September 2017,Verlag der Fachhochschule Potsdam 33-38, 10.5165/hawk-hhg/318.
Pel:1995 Pel, L. (1995): Moisture transport in porous building materials. Dissertation, Ph.D. thesis, Eindhoven University of Technology
Peleg.etal:1989 Peleg, M.; Burla, E.; Cohen, I.; Luria, M. (1989): Deterioration of Jerusalem limestone from air pollutants: field observations and laboratory simulation. In: Environmental Monitoring & Assessment, 12 (2), 191-201
Pelikan:1967 Pelikan, J. B. (1967): Action of Salt on the Stone and Mortar of the Charles IV Bridge, Prague. In: Pamatkova Pece, 5 (), 150-156
Pender:1994 Pender, R. (1994): An Investigation into the monitoring of the surface temperature of wall paintings (Summary), Diploma dissertation, Conservation of Wall Painting Department, Courtauld Institute of Art, London
Pender:1999 Pender, R. J. (1999): Towards monitoring moisture movement in the support materials of wall paintings. In: Proceedings of the 6th International Conference on Non-Destructive Testing and microanalysis, May 1999, Rom, (), 829-841
Peng.etal:2001 Peng, C.; Chan, C. K. (2001): The water cycles of water-soluble organic salts of atmospheric importance. In: Atmospheric Environment, 35 (7), 1183-1192, 10.1016/S1352-2310(00)00426-X
Perander.etal:1983 Perander, T.; Niemen, T. (1983): Neue Theorien der Ziegelverwitterung. In: 1. Int. Koll. Werkstoffwiss. & Bausanierung, Esslingen, 6-8. 9. 1983, (), 367-371
Perander.etal:1984 Perander, T.; Raman, T. (1984): Deterioration of old brickwork due to salt effects and brickwork preservation. In: International Conference on the Durability of Building Materials ansComponents, Espoo, Finland, 12-15 August, 1984, 2 (), 463-477
Perez-Rodriguez.etal:1992 Perez-Rodriguez, J. L.; Rodriguez-Rubio, P.; Maqueda, C.; Jimenez de Haro, M. C. (1998): Effect of pollution on polychromed ceramic statues. In: Atmospheric Environment, 32 (6), 993-998
Perez.etal:1995 Perez, J. L.; Bello, M. A.; Villegas, R.; Vale, J. F. (1995): Comparison Between Several Spanish Treated Stones Submitted to Salt Crystallization and Freeze/Thaw Accelerated Weathering Tests. In::,ICCROM 443-450.
PerezYJorba:1978 Perez Y Jorba, M.; Dallas, J. P.; Collongues, R.; Bahezre, C.; Martin, J. C. (1978): Study on the alteration of ancient stained-glass windows using scanning electron micros-copy and microprobe. In: Silic. Ind, 43 (4), 89-99
Perito.etal:2000 Perito, B.; Biagiotti, L.; Daly, S.; Galizzi, A.; Tiano, P.; Mastromei, G. (2000): Bacterial Genes Involved in Calcite Crystal Precipitation. In: Ciferri, O. , Tiano, P.; Mastromei, G. (Hrsg.):, Kluwer/Plenum: New York., 219-230.
Perry.etal:1997 Perry, S.H.; Duffy, A.P. (1997): The short-term effects of mortar joints on salt movement in stone. In: Atmospheric Environment, 31 (9), 1297-1305
Pescari.etal:2023 Pescari, S.; Budău, L.; Beatrice Vîlceanu, C. (2023): Rehabilitation and restauration of the main façade of historical masonry building –Romanian National Opera Timisoara. In: Case Studies in Construction Materials, 18 (), 01838, Webadresse
Pessoa.etal:1996 Pessoa, J. Costa; Antunes, J. L. Farinha; Figueiredo, M. O.; Fortes, M. A. (1996): Removal and analysis of soluble salts from ancient tiles. In: Studies in Conservation, 41 (3), 153-160
Petersen.etal:1982 Peterson, G. L. (1982): Products of experimental salt weathering. In: 78th annual Meeting of the Geological Society of America, Cordilleran Section, April 19-21, Anaheim, CA, USA, 14 (4), 224
Petersen.etal:1992 Petersen, K.; Hammer, I. (1992): Biodeterioration of romanesque wall paintings under salt stress in the Nonnberg Abbey, Salzburg, Austria. In:: Preprint of the 2nd International Conference on Biodeterioration of Cultural Property, 5 - 8 October 1992, Yokohama, Japan,.
Petersen.etal:1995 Petersen, K.; Yun, Y.; Krumbein, Wolfgang E. (1995): On the occurrence of alkalitolerant and alkaliphilic microorganisms on wall paintings and their interaction in restoration/consolidation. In:: proceedings of the 3rd international conference on biodeterioration of cultural property,Office of Archaeology and National Museums, Conservation Science Division 371-386.
Petersen:1980 Peterson, G. L. (1980): Sediment size reduction by salt weathering in arid environments. In: Ash, S. R. (Hrsg.): Geological Society of America, Rocky Mountain Section, 33rd annual meeting (May 16-17: Ogden, UT, USA), 301.
Petersen:1990 (1990): Bericht zu den Schadensbildern der Wandmalereien Sigwardskirche Idensen unter mikrobiellen Aspekten.
Peterson.etal:2006 Peterson R. C., Wang R. (2006): Crystal molds on Mars: Melting of a possible new mineral species to create Martian chaotic terrain. In: Geology, 34 (11), 957-960
Peterson:1982a Peterson, Sten (Hrsg.) (1982): Lime water consolidation, ICCROM, Rome
Petit.etal:1981 Petit, Jean; Valot, Henri; Coignard, Roland (1981): Extration de sels solubles presents dans les pierres une application insolite des microondes. In: Rossi-Manaresi, Raffaella (Hrsg.): The Conservation of Stone II; Preprints of the contributions to the International Symposium, Bologna 1981,Centro Conservazione Sculture All'Aperto 535-543.
Petkovic.etal:2005 Petković, J.; Pel, L.; Huinink, H.P.; Kopinga, K.; van Hees, R.P.J. (2005): Salt Transport and Crystallization in Plaster Layers: a Nuclear Magnetic Resonance Study. In: Bauinstandsetzen und Baudenkmalpflege, 11 (2), 97-104
Petzet:1996 Petzet, Michael (Hrsg.) (1996): Salzschäden an Wandmalereien, Bayerischen Landesamtes für Denkmalpflege
Philip.etal:1957 Philip, J. R.; De Vries, D. A. (1957): Moisture movement in porous materials under temperature gradients. In: Transactions of the American Geophysical Union, 38 (), 222-232
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Pilinis.etal:1987 Pilinis, C.; Seinfeld, J. H. (1987): Continued development of a general equilibrium model for inorganic multicomponent atmospheric aerosols. In: Atmospheric Environment, 21 (11), 2453-2466
Pina.etal:2000 Pina, C. M.; Enders, M.; Putnis, A. (2000): The composition of solid solutions crystallising from aqueous solutions: The influence of supersaturation and growth mechanisms. In: Chemical Geology, 168 (3), 195-210
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Pique:1991 Piqué, F. (1991): The Deliquescence of Calcium Nitrate and its Implications for Wall Painting Conservation. dissertation, Courtauld Institute of Art, University of London
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Pitzer:1991 Pitzer, K.S. (Hrsg.) (1991): Activity coefficients in electrolyte solutions, CRC Press, Boca Raton
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Platford:1975 Platford, R. F. (1975): Thermodynamics of the system H2O-NaCl-MgCl2-Na2SO4-MgSO4 at 25 degrees C. In: Mar. Chem., 3 (4), 261-270
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Plummer:1982 Plummer, L. N. (1982): The solubilities of calcite, aragonite and vaterite in CO2-H2O solutions between 0 and 90°C, and an evaluation of the aqueous model for the system CaCO3-CO2-H2O. In: Geochimica et Cosmochimica et Acta, 46 (6), 1011-1040
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Posern.etal:2015 Posern, K.; Linnow, K.; Niermann, M.; Kaps, C.; Steiger, M. (2015): Thermochemical investigation of the water uptake behavior of MgSO4 hydrates in host materials with different pore size. In: Thermochimica Acta, 611 (), 1-9, Webadresse, https://doi.org/10.1016/j.tca.2015.04.031
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Price:2000 European Commission. Directorate-General XII, Science, Research, Development (Hrsg.) Price, C. (2000): An expert chemical model for determining the environmental conditions needed to prevent salt damage in porous materials : protection and conservation of the European cultural heritage, Archetype Publications Ltd
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Price:2007 Price, C. (2007): Predicting environmental conditions to minimise salt damage at the Tower of London: a comparison of two approaches. In: Environmental Geology, 52 (2), 369-374, Webadresse, https://doi.org/10.1007/s00254-006-0477-9
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