By John G. Stoecker
This really sensible handbook is the much-awaited follow-up to "A functional guide on Microbiologically stimulated Corrosion", first published by means of NACE overseas in 1993. an ideal better half to the 1st version, quantity makes use of an analogous layout whereas supplying new fabric and present advancements with a world impression. a few of the themes coated contain: The function microorganisms play in corrosion reactions, the incidence of MIC in various industries, suggestion on find out how to determine even if corrosion difficulties are regarding MIC, and MIC therapy and prevention information. the themes indexed above are illustrated via quite a few charts, graphs, and images. each one bankruptcy is authored by means of a well-known professional within the box of MIC.
desk of Contents
2. Fungal-Influenced Corrosion of Metals in Humid Environments
three. Biodegradation of Nonmetallic Engineering fabrics
four. The Biodeterioration of establishing fabrics
five. Microbiologically encouraged Corrosion in fireplace defense Sprinkler structures
6. MIC in Underground Environments: exterior Corrosion within the fuel Pipeline
7. MIC within the strength
eight. MIC within the Waste remedy Industries
nine. remedy for the Mitigation of MIC
10. thoughts for MIC tracking
eleven. MIC Case Histories
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Extra info for A Practical Manual on Microbiologically Influenced Corrosion, Volume 2
The type of treatment apparently had no effect on the bioreceptivity of mortar and Carrara marble to cyanobacterium. In the case of the calcarenite, growth was absent in untreated samples or samples treated with frost-thaw cycles (frost and thaw Throughout history humans have used the most beautiful and durable stone for monumental buildings. , marble extracted from the Pentelikon quarry became a common building material. Abundant limestone and marble quarries enabled the ancient Greek architects to build the Acropolis and Roman architects to build the Forum.
B. W. O. Scott, “Solubilization of Minerals and Related Materials by Ketogluconic Acid-Producing Bacteria,” Soil Sci. 95(1963): 105-1 14. The Biodeteriorationof Building Materials 54. X. AriAo and C. Saiz-Jimenez, “Granite Weathering by the Lichen Rhizocarpon Geographicum,” in Granite Weathering and Conservation, eds. E. P. Cooper (Dublin, Ireland: Trinity College, 1994), pp. 33-35. 55. C. Ascaso, J. Galvan, and C. Ortega, “The Pedogenic Action of Parmelia Conspersa, Rhizocarpon geographicum and Umbilicaria pustulata,” Lichenologist 8(1976): 151-1 71.
1 1 34. European Federation of Corrosion, Microbiological Degradation of Materials-and Methods of Protection (London: The Institute of Materials, 1992), p. 37. 35. P. Tormala, “Biodegradable Plastics for Use in Implants,” Biomed. Mater. (l993): 2. 36. E. Beach, R. D. Uri, “Expanding Biodegradable Polymer Resin Use: Assessing the Aggregate Impact on the US Economy,”Appl. Math. Model. 20(1996): 388-398. 37. P. Molitoris, “Decomposition of Plastics in the Sea,” in Proceedings of the 9th International Congress on Marine Corrosion and Fouling (Portsmouth, UK: 1995).
A Practical Manual on Microbiologically Influenced Corrosion, Volume 2 by John G. Stoecker