By John G. Stoecker
This actually sensible guide is the much-awaited follow-up to "A useful guide on Microbiologically inspired Corrosion", first published via NACE overseas in 1993. an ideal significant other to the 1st variation, quantity makes use of an identical layout whereas supplying new fabric and present advancements with a global impression. a number of the issues lined contain: The position microorganisms play in corrosion reactions, the prevalence of MIC in various industries, suggestion on tips to establish even if corrosion difficulties are regarding MIC, and MIC remedy and prevention assistance. the subjects indexed above are illustrated via a number of charts, graphs, and images. every one bankruptcy is authored by way 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 prompted Corrosion in fireplace safeguard Sprinkler structures
6. MIC in Underground Environments: exterior Corrosion within the gasoline Pipeline
7. MIC within the strength
eight. MIC within the Waste therapy Industries
nine. remedy for the Mitigation of MIC
10. ideas for MIC tracking
eleven. MIC Case Histories
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Extra info for A Practical Manual on Microbiologically Influenced Corrosion, Volume 2
Most of the isolated species are commonly included in floristic listings. Aspergillus, Penicillium, and Cladosporium are among the most common airborne fungi and, thus, have worldwide distribution. Also, these fungi have a remarkable saprophytic and polysaccharide-degrading potential. l’ After only five weeks in culture the hyphae of a Trichotecium sp. penetrated at least 1 mm into the crystals. Species of Trichotecium are known to secrete oxalic acid, citric acid, and gluconic acid among other products.
81/15/5 (Ottawa, Canada: ICOM, 1981). 62. M. Winkler, “Weathering Rates of Stones in Urban Atmospheres,” in The Conservation of Stone I, ed. R. Rossi-Manaresi (Bologna, Italy: Centro per la Conservazione delle Sculture all’Aperto, 1976), pp. 27-36. 63. C. Saiz-Jimenez, “Causas del Deterioro de 10s Murales de Daniel Vazquez D/az, Monasterio de Santa Maria de la Rabida, Huelva,” Mundo Cientifico 18(1981): 1007-1 01 1. 64. A. S. J. 19 The Biodeteriorationof Building Materials 65. 66. 67. 68. 69. 70.
Salvadori, “MineroGeochemical Transformations Induced by Lichens in the Biocalcarenite of the Selinuntine Monuments,” in 7th International Congress on Deterioration and Conservation of Stone, Vol. 1, eds. D. Rodrigues, F. T. Jeremias (Lisbon, Portugal: LNEC, 1992), pp. 531-539. T. Warscheid, D. W. Becker, J. Braams, S. Eliasaro, G. Grote, D. Janssen, L. B. L. Mazzoni, K. S. K. E. Krumbein, “Biodeterioration Studies on Soapstone, Quarzite and Sandstones of Historical Monuments in Brazil and Germany.
A Practical Manual on Microbiologically Influenced Corrosion, Volume 2 by John G. Stoecker