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Titlebook: Biotechnology for the Environment: Strategy and Fundamentals; Spiros N. Agathos,Walter Reineke Book 2002 Springer Science+Business Media D

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Transfer of Catabolic Plasmids in Soil and Activated Sludge: A Feasible Bioaugmentation Strategy?ul cases in soil indicate that the strategy could indeed work under certain conditions. In spite of the absence of specific data on this approach in activated sludge, the dissemination of introduced catabolic genes in such bioreactor communities could also be a promising bioaugmentation strategy. Fu
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Coping with a Halogenated One-Carbon Diet: Aerobic Dichloromethane-Mineralising Bacteriall-studied and important paradigm for dehalogenative metabolism. However, recent evidence suggests that genes and proteins other than dichloromethane dehalogenase are also specifically required, and sometimes even essential, for growth of aerobic bacteria with dichloromethane. The characterisation o
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Microbial Degradation of Pollutants at Low Concentrations and in the Presence of Alternative Carbon and degradation of the chemical, degradation pathways, enzymes involved, intermediates formed, genetic information on the genes involved and their regulation. Definitely both approaches are needed but it is most often difficult, if not impossible, to link information collected in the laboratory with
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Mechanisms Involving the Aerobic Biodegradation of PCB in the Environmentls and sediments to less chlorinated congeners, which would be susceptible to aerobic biodegradation. Coupled anaerobic and aerobic metabolism in sediments is probably how biodegradation of highly chlorinated congeners occurs in sediments. Recent studies have shown that addition of brominated analog
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Lectures on Algebraic Geometry Ient knowledge on the phylogeny of halorespiring bacteria and on the molecular characterisation of their dehalogenating systems provides a sound basis for the further exploitation of these microorganisms as dedicated degraders in polluted environments.
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Basic Concepts of Homological Algebra,ying and denitrifying bacteria are low. Drainage of peat soils for agriculture largely increases decomposition of organic matter and activity of nitrifying and denitrifying bacteria. Among soil ecosystems, organic agricultural soils have the highest nitrous oxide production. Drainage for forestry al
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Curves and the Theorem of Riemann-Roch,ll-studied and important paradigm for dehalogenative metabolism. However, recent evidence suggests that genes and proteins other than dichloromethane dehalogenase are also specifically required, and sometimes even essential, for growth of aerobic bacteria with dichloromethane. The characterisation o
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