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Stone Deterioration and Replacement of Natural Building Stones at the Cologne Cathedral - A Contribution to the Preservation of Cultural Heritage

Stone Deterioration and Replacement of Natural Building Stones at the Cologne Cathedral - A Contribution to the Preservation of Cultural Heritage
Author: Birte Johanna Graue
Publisher:
Total Pages: 0
Release: 2013
Genre:
ISBN:

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The present work deals with the deterioration of natural building stones as a function of mineralogical and petrophysical properties in different environmental and building-physical contexts. Taking Cologne cathedral as an example, the diversity of construction materials found in this monument and the resulting problems of the interference of these materials with each other in terms of their deterioration will be elucidated. Physical and chemical deterioration processes are empirically ascertained through laboratory testing and experiments, and are correlated to the specific petrophysical p...


Conservation of Building Stones

Conservation of Building Stones
Author: Anuradha V. Kumar
Publisher:
Total Pages: 256
Release: 2001
Genre: Architecture
ISBN:

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This Book Addresses Stone Deterioration Which Poses A Serious Challenge For Professionals Involved In The Conservation Of Cultural Heritage Sites. It Discusses In Detail Many Of The Available Conservation Materials And Treatments And Provides Specific Information On The Advantages And Limitations Of Each Treatment.


Building Stone Decay

Building Stone Decay
Author: European Geosciences Union. General Assembly
Publisher: Geological Society of London
Total Pages: 352
Release: 2007
Genre: Architecture
ISBN: 9781862392182

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Stone buildings and monuments form the cultural centres of many of the world's urban areas. Frequently these areas are prone to high levels of atmospheric pollution that promote a variety of aggressive stone decay processes. Because of this, stone decay is now widely recognised as a severe threat to much of our cultural heritage. An interdisciplinary approach between geologists, environmental scientists, chemists, material scientists, civil engineers, restorers and architects aims to strengthen the knowledge base dealing with the causes, consequences, prevention and solution of stone decay problems.


Fracture and Failure of Natural Building Stones

Fracture and Failure of Natural Building Stones
Author: Stavros K. Kourkoulis
Publisher: Springer Science & Business Media
Total Pages: 582
Release: 2007-06-17
Genre: Technology & Engineering
ISBN: 1402050771

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In this volume scientists from different disciplines present their experience and their scientific work in progress. These concern the properties of a series of stones that have been used for the erection of some of the most important stone monuments of international cultural heritage and are also used today for substitution of missing parts or completion of damaged ones. It deals with the subject globally and contains unpublished research results.


Natural Stone and World Heritage

Natural Stone and World Heritage
Author: Angela Ehling
Publisher: CRC Press
Total Pages: 173
Release: 2021-09-13
Genre: Science
ISBN: 1000436055

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There are many UNESCO World Heritage Sites in Germany. Most of them are built with natural stones. These sites are commonly presented to the public with a lot of information regarding historical, cultural and artistic aspects. Mostly, there is no focus on the main building material if it concerns natural stones. This work aims to show that it is precisely the natural stone that lends the sites their distinctive character. The used stones demonstrate the context and the interaction with the geology of the surrounding countryside as well as possibilities of transport and treatment. They reflect the culture and society at the time of the building phases. The second part of the work presents the most important stones that were used at these sites, along with their occurrences, aspects of quarrying in historical times and of course their petrographical, mineralogical and technical features. It is shown how these features influence the weathering of the stones and how restoration of stones is carried out. The book will serve as a useful source book for geologists, archaeologists, architects, representatives of the natural stone industry, historians and cultural heritage management professionals specifically, and for academic and nonacademic communities, travelers and tourism industry operators in general.


Conserving Stone Heritage

Conserving Stone Heritage
Author: Francesca Gherardi
Publisher: Springer Nature
Total Pages: 292
Release: 2022-01-12
Genre: Technology & Engineering
ISBN: 3030829421

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The design of treatments for the conservation of stone in historical buildings and works of art is a challenging task, as a deep understanding of the working properties and performance of the available products and methods is required to tackle complex decay patterns. The chapters in this book illustrate the state of the art on traditional and innovative materials and methods for stone conservation, examining current trends and future perspectives. Each of them is focused on describing the consequent phases that complement the spectrum of the conservation intervention: preliminary investigations, condition assessment, and mapping of the deterioration patterns; surface cleaning, with a specific focus on laser technology; consolidation; protection; repair mortars and grouts; and onsite assessment and monitoring of conservation treatments. The performance of the applied conservation interventions is criticized and discussed with an aim of providing the specialists with specific tools for stone conservation. This book intends to bridge the gap between laboratory studies and conservation interventions, by linking together the diverse scientific areas involved in the preservation of stone heritage. Different case studies are included, highlighting specific conservation challenges and their solutions in order to understand and overcome them. The aim is to guide conservators, conservation scientists and heritage stakeholders in the selection of compatible and sustainable materials and techniques for Conserving Stone Heritage.


Stone Conservation

Stone Conservation
Author: C. A. Price
Publisher: Getty Publications
Total Pages: 86
Release: 1996-09-05
Genre: Art
ISBN: 0892363894

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Is research in stone conservation “on the rocks?” This volume, part of the GCI's Research in Conservation series, offers an in-depth critical appraisal of the status of stone conservation research today, identifying areas of strength and weakness in the field as a whole. C. A. Price, a noted British archaeological conservation scientist, discusses recent research on the causes of stone decay, as well as current preventive measures, assessment tools, and treatment durability. He also reviews current research on methods of evaluating the effectiveness of these methodologies and treatments. The book includes a comprehensive survey of the literature, draws from conversations with professionals in the field, and provides recommendations for increasing the effectiveness of research, including the improvement of training, symposia, and research programs and the establishment of conservation policy.


Proceedings of the 9th International Congress on Deterioration and Conservation of Stone

Proceedings of the 9th International Congress on Deterioration and Conservation of Stone
Author: V. Fassina
Publisher: Elsevier
Total Pages: 691
Release: 2000-06-13
Genre: Science
ISBN: 0080530338

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The conservation of historic monuments, sites and structures constitutes an inter-professional discipline co-ordinating a range of aesthetic historic, scientific and technical methods. Conservation is a rapidly developing field, which, by its true nature, is a multidisciplinary activity with experts respecting one another's contributions and combining to form an effective team. Conservation is an artistic activity aided by scientific and historical knowledge. Main topics at this Congress included: - the most appropriate methodology for the assessment of the degree of weathering of stone - development of new methods and instruments for the diagnosis of the state of conservation, for the study of alteration mechanisms and for conservation treatments. - the definition of Technical European Standard Methods for the evaluation of conservation treatments of artistic and historic stone objects and monuments.


Sustained Care of the Cultural Heritage Against Pollution

Sustained Care of the Cultural Heritage Against Pollution
Author: José María Ballester
Publisher: Council of Europe
Total Pages: 236
Release: 2000-01-01
Genre: Political Science
ISBN: 9789287142337

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Deterioration of the cultural heritage as a result of pollution and other similar factor is a serious problem in a number of Eurpopean countries. This publication contains articles on this issue by experts, researchers and those involved in the policy-making side of cultural management. In particular, it highlights the need for long-term research and the importance of raising public awareness of our cultural heritage and its protection. [From CoE website]


Salt Deterioration of Historic Mortars in Tropical Climate: Analysis and Characterisation

Salt Deterioration of Historic Mortars in Tropical Climate: Analysis and Characterisation
Author: Isabela Wilfred Mtani
Publisher: kassel university press GmbH
Total Pages: 229
Release: 2016-01-01
Genre: Buildings
ISBN: 3737600740

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The contribution of this study to the general body of knowledge is in providing an understanding of the thermodynamic behaviour of soluble salt mixtures in historic buildings located in the tropical marine zone of Tanzania. This tropical zone is found in the eastern part of the country along the Indian Ocean coast. This research is geared towards informing the general public, most of whom believe that salt crystallisation is the main cause of historic buildings deteriorating. This belief emanates from the understanding that historic buildings in a marine environment are highly susceptible to salt crystallisation, more so because they tend to receive daily oceanic spray which contains salt. The problem is aggravated by the encroachment of the ocean on these buildings. Salt crystallisation on these structures is further complicated by air pollution owing to rapid urbanisation in these areas. It is worth noting that salt crystallisation is an extremely complex process and its effect depend on many variables including climate. Ten historic buildings involved in this study are located in three different areas of the country. Eight historic buildings are located in the tropical climate 1 - 200 m from the Indian Ocean, and two historic buildings are located in inland Tanzania 190 km and 589 km from the ocean. These two historic buildings experience a modified tropical climate and semi-arid climate. The criteria for selecting the buildings considered variations and the extent of salt deterioration in different parts of the country.

The main goal of the study was to embark on a detailed analysis of the salt deterioration on Tanzanian historic buildings which has not hitherto been fully investigated and to provide a sustainable solution to the problem through climate control. This solution is needed, since there is no approved conservation programme and as a result of existing government budgetary constraints, very little conservation research has been done on any site or monuments except those registered under UNESCO. The research results of this project contributes to solving the existing monument research gap, thereby stimulating the initiation of a sustainable restoration programme, together with the provision of the much needed government research tools. This research provides information on the type of construction and building materials used during the construction of these buildings. Such information is vital in salt analysis and in futurerestoration, conservation and consolidation of these buildings, which provides a substantial income to the country through the tourist industry. There are also other factors like the preservation of the history and culture of the country and job creation.

The abundance of chloride (Cl-) ions of magnesium (Mg2+), sodium (Na+), and potasium (K+) in these buildings as identified by this study explains the survival of the historic buildings in the tropical marine areas of Tanzania. These ions can lead to the formation of halite (NaCl), sylvite (KCl), bischofite (MgCl2•6H2O), ammonium chloride (NH4Cl) and antarcticite (CaCl2•6H2O), depending on their presence and quantity in the walls of historic buildings. The results of ECOS/RUNSALT program indicate that salt is not the major problem because the major ions hitherto detected form salts like halite and sylvite, are mostly in liquid form. Under a high evaporation rate these salts easily migrate to the surface of the building’s walls whereby a supersaturated solution is formed leading to surface crystallisation. The surface crystallisation is evident in salt profile analysis by photospectrometry, whereby the quantity of soluble salt ions decreases with depth. The detachment of protective rendering, the peeling off of paint and efflorescence in the investigated historic buildings in tropical marine areas of Tanzania is evidence of surface crystallisation. Mirabilite (Na2SO4•10H2O), gypsum (CaSO4•2H2O) and epsomite (MgSO4•7H2O) can crystallize in tropical areas. The SO42- and NO3- ions detected in these buildings are so scanty as not to cause ionic interactions needed for the formation of destructive sodium sulphate (Na2SO4) except in the Cooperation Building where SO42- is as high as 1.8 % w/w. However, this is not a trivial problem and should not be ignored, especially because of the destructive nature of Na2SO4 and the increase in air pollution.

Laboratory simulation of the three environmental conditions using two salts, Na2SO4 and NaCl, provided similar results on the exposure of lime mortar samples in 50% Relative Humidity (RH) and 20oC; 75% RH and 28oC and 85% RH and 28oC. Samples exposed to 85% RH and 28oC in a controlled environment showed enormous deterioration due to crystallisation of Na2SO4.

Subsequently, NaCl is the major salt and is always in the solution. Reducing this salt is necessary to avoid associated damage like the formation of microorganisms. Thehygroscopic nature of NaCl retards the drying of materials, hence keeping the walls moist all the time, creating a conducive environment for biocolonisation. Routine desalination is necessary to keep the wall dry. In future, Na2SO4 and magnesium sulphate (MgSO4) will be a problem. Therefore, the RH within a building located in a tropical marine environment should be protected from frequent RH variations to prevent the damage associated with sulphate salts, that is only if the current trend of air pollution (i.e. an increase of 6% (WHO, 2014)) is mantained or increased.