A Practical Manual on Microbiologically Influenced by John G. Stoecker

By John G. Stoecker

This really useful handbook is the much-awaited follow-up to "A useful guide on Microbiologically motivated Corrosion", first published through NACE overseas in 1993. an ideal significant other to the 1st variation, quantity makes use of an analogous structure whereas delivering new fabric and present advancements with a global effect. many of the issues coated comprise: The function microorganisms play in corrosion reactions, the prevalence of MIC in various industries, suggestion on tips to establish even if corrosion difficulties are relating to MIC, and MIC therapy and prevention information. the themes indexed above are illustrated via various charts, graphs, and pictures. each one bankruptcy is authored through a well-known specialist within the box of MIC.
Content:
entrance topic
• desk of Contents
1. creation
2. Fungal-Influenced Corrosion of Metals in Humid Environments
three. Biodegradation of Nonmetallic Engineering fabrics
four. The Biodeterioration of creating fabrics
five. Microbiologically encouraged Corrosion in fireplace security Sprinkler structures
6. MIC in Underground Environments: exterior Corrosion within the fuel Pipeline
7. MIC within the energy
colour Plates
eight. MIC within the Waste remedy Industries
nine. remedy for the Mitigation of MIC
10. options for MIC tracking
eleven. MIC Case Histories
Index

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Extra info for A Practical Manual on Microbiologically Influenced Corrosion, Volume 2

Example text

Saiz-Jimenez, J. A. J. Ortega-Calvo, E. Roekens, and R. Van The Biodeteriorationof Building Materials 24. 25. 26. 27. 28. 29. 30. 31. 32. 33. 34. Grieken, “Endolithic Cyanobacteria in Maastricht Limestone,” Sci. Total Environ. 94(1990): 209-220. G. V. Rinaldi, and C. Giacobini, “Forme Biologiche dele Alghe Esistenti sulle Sculture AII’Aperto,” in The Conservation of Stone I, ed. R. Rossi-Manaressi (Bologna, Italy: Centro per la Conservazione dele Sculture all’Aperto, 1976), pp. 245-256. G. P. Nugari, S.

K. Krumbein, “Physico-Chemical Aspects of Biodeterioration Processes on Rocks with Special Regard to Organic Pollutants,” Int. Biodeterior. 28( 1991): 3748. 8. L. Ehrlich, Geomicrobiology (New York, NY: Marcel Dekker, 1981). 9. P. Tiano, R. Bianchi, G. Gargani, and S. Vanucci, “Research on the Presence of Sulphur-Cycle Bacteria in the Stone of Some Historical Buildings in Florence,” Plant Soil 43(1975): 21 1-21 7. 10. C. L. Maugeri, “Biodeterioration of Stone by Sulphur Bacteria,” in La Conservazione dei Monumenti nel Bacino del Mediterraneo, ed.

J. Lewis, E. F. Bravery, “Metabolic Activities of Bacteria Isolated from Building Stone and their Relationship to Stone Decay,” in Biodeterioration 7, eds. R. N. W. Eggins (London, UK: Elsevier Applied Science, 1988), pp. 107-1 12. K. Petersen, J. B. E. Krumbein, “Distribution and Effects of Fungi on and in Sandstones,” in Biodeterioration 7, eds. R. N. W. Eggins (London, UK: Elsevier Applied Science. 1988), pp. 455-460. C. Saiz-Jimenez, B. J. Ortega-Calvo, and G. Gomez-Alarcon, “Applications of Analytical Pyrolysis to the Study of Cultural Properties,” J.

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