Nedwell, D.B.
David B. Nedwell researcher
Nedwell, David B.
VIAF ID: 94779041 (Personal)
Permalink: http://viaf.org/viaf/94779041
Preferred Forms
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100 0 _ ‡a David B. Nedwell ‡c researcher
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200 _ | ‡a Nedwell ‡b D. B.
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100 1 _ ‡a Nedwell, D. B.
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100 1 _ ‡a Nedwell, D. B.
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100 1 0 ‡a Nedwell, D. B.
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100 1 _ ‡a Nedwell, D.B.
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4xx's: Alternate Name Forms (3)
Works
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amoA Gene abundances and nitrification potential rates suggest that benthic ammonia-oxidizing bacteria and not Archaea dominate N cycling in the Colne Estuary, United Kingdom. |
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Comparison of the molecular diversity of the methanogenic community at the brackish and marine ends of a UK estuary |
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Diversity and abundance of nitrate reductase genes (narG and napA), nitrite reductase genes (nirS and nrfA), and their transcripts in estuarine sediments |
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Environmental costs of freshwater eutrophication in England and Wales |
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Estuaries |
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Evaluation of quantitative polymerase chain reaction-based approaches for determining gene copy and gene transcript numbers in environmental samples. |
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Evidence for Coexistence of Two Distinct Functional Groups of Sulfate-Reducing Bacteria in Salt Marsh Sediment |
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Identification of active methylotroph populations in an acidic forest soil by stable-isotope probing. |
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Inhibition of sulphate reduction in anoxic marine sediment by Group VI anions |
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Methane production and emission from peat |
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Nitrous oxide formation in the Colne estuary, England: the central role of nitrite |
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Oxidation of methane in peat: Kinetics of CH4 and O2 removal and the role of plant roots |
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Re-examining the Antarctic Paradox: speculation on the Southern Ocean as a nutrient-limited system |
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Seasonal variation in denitrification and dissimilatory nitrate reduction to ammonia process rates and corresponding key functional genes along an estuarine nitrate gradient |
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Sediment microbiology, 1982 (a.e.) |
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Sulfate Reduction and Methanogenesis in the Sediment of a Saltmarsh on the East Coast of the United Kingdom |
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UK catchment nutrient loads 1993-2003, a new approach using harmonised monitoring scheme data: temporal changes, geographical distribution, limiting nutrients and loads to coastal waters |
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Use of chlorate as a selective inhibitor to distinguish membrane-bound nitrate reductase (Nar) and periplasmic nitrate reductase (Nap) of dissimilative nitrate reducing bacteria in sediment. |
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