By Claudia M Walecka-Hutchison; James L Walworth
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Extra resources for Assessment of C:N Ratios and Water Potential for Nitrogen Optimization in Diesel Bioremediation
Encyclopedia of Rapid Microbiological Methods, Vol. 1, Bethesda, MD: PDA Publications, pp. 1–17. Kunitsky describes major biochemical pathways for identifying bacteria are nucleic acid analysis and determination of fatty acid compositions in cell walls. Chapter 8 of this atlas describes the RASI-MIDI methodology for identifying bacterial consorms using method S43020. J. S. Lee. (2007). Microbiologically Influenced Corrosion. New York: John Wiley & Sons. This book is a basic text covering economically significant corrosive processes that impact pipelines, wells, industrial plants, and distribution and storage systems.
44 Common bacterial consortial complexes in sulfate-reducing bacteria (SRB) are dominated by section 7 SRBs. In the BB reaction in which blackening appears in the base of the test vial, the likely genera present are shown in the atlas above. 45 Sulfate-reducing bacteria (SRB) BART generates a BT reaction (shaded zone) in which blackening often forms often in a granular manner around the ball in the test vial; the likely genera present are shown in the atlas above. SRBs are involved in primarily aerobic consortia and survive in the deeper layers of biofilms.
J. S. Lee. (2007). Microbiologically Influenced Corrosion. New York: John Wiley & Sons. This book is a basic text covering economically significant corrosive processes that impact pipelines, wells, industrial plants, and distribution and storage systems. Emphasis is on processes that cause various forms of corrosion in steels, metal alloys, and concretes. J. et al. (2007). Species abundance distributions: moving beyond single prediction theories to integration within an ecological framework, Ecol Lett, 10: 995–1015.
Assessment of C:N Ratios and Water Potential for Nitrogen Optimization in Diesel Bioremediation by Claudia M Walecka-Hutchison; James L Walworth