A Practical Manual on Microbiologically Influenced by John G. Stoecker

By John G. Stoecker

This really functional handbook is the much-awaited follow-up to "A functional guide on Microbiologically encouraged Corrosion", first published through NACE overseas in 1993. an ideal better half to the 1st version, quantity makes use of an analogous structure whereas delivering new fabric and present advancements with a world impact. many of the themes coated comprise: The position microorganisms play in corrosion reactions, the prevalence of MIC in various industries, suggestion on the right way to determine even if corrosion difficulties are with regards to MIC, and MIC remedy and prevention assistance. the subjects indexed above are illustrated via a number of charts, graphs, and pictures. each one bankruptcy is authored by way of a well-known professional within the box of MIC.
Content:
entrance topic
• desk of Contents
1. advent
2. Fungal-Influenced Corrosion of Metals in Humid Environments
three. Biodegradation of Nonmetallic Engineering fabrics
four. The Biodeterioration of establishing fabrics
five. Microbiologically inspired Corrosion in fireplace defense Sprinkler structures
6. MIC in Underground Environments: exterior Corrosion within the gasoline Pipeline
7. MIC within the energy
colour Plates
eight. MIC within the Waste therapy Industries
nine. remedy for the Mitigation of MIC
10. recommendations for MIC tracking
eleven. MIC Case Histories
Index

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

Sample text

They are dense and range in grain size from fine to granular. Porosity and permeability are usually low, and granite has high resistance to weathering and corrosion. Biodeterioration of granite is relatively insignificant compared with limestones and sandstones. This results from its lower pH and its low solubility. Bell et al. 52 Weed et al. ’~ Duff et al. 53 Ortega-Calvo et al. 49 However, they found a higher number of species in the adjacent mortars, which allow a higher degree of water retention.

Ed. W. Rossmoore (London, UK: Elsevier Applied Science, 1991), pp. 390-392. 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.

Geomorphol. 27( 1983): 413421. B. P. R. Mur, “The Role of Water Retaining Substrata on the Photosynthetic Response of Three Drought Tolerant Phototrophic Micro-Organisms Isolated from a Terrestrial Habitat,” Arch. Microbiol. 152( 1989): 458462. J. Ortega-Calvo, M. Hernandez-Marine, and C. Saiz-Jimenez, “Mechanical Deterioration of Building Stones by Cyanobacteria and Algae,” in Biodeterioration and Biodegradation 8, ed. W. Rossmoore (London, UK: Elsevier Applied Science, 1991), pp. 392-394. J. Ortega-Calvo, M.

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