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Titlebook: Deep-Sea Food Chains and the Global Carbon Cycle; Gilbert T. Rowe,Vita Pariente Book 1992 Springer Science+Business Media Dordrecht 1992 O

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Bacterial Standing Stock and Consumption of Organic Carbon in The Benthic Boundary Layer of The Abymulated deep-sea conditions at rates of 0.6% to 2.3% d. during the initial rapid degradation phase of approximately 400 hrs. These rates are only slightly lower than those found in shallow water sediments. Under in situ pressure, more of the organic matter was consumed than at 1 atm.
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The Spatial Distribution of Sea Floor Oxygen Consumption in The Atlantic and Pacific Oceans,f total respiration estimated for the deep Atlantic from AOU and .C relationships and from benthic respiration indicates that sea floor processes account for 33 to 40% of the organic matter remineralization occurring below 1000 m. Introduction
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Organic Carbon Flux Through the Benthic Community in the Temperate Abyssal Northeast Atlantic,ion rates indicate that the deep-sea benthic microbial and protozoan biota can react quickly to substantial falls of particulate organic matter. They seem to be the most important groups to generate seasonal changes in deep-sea benthic carbon flux rates.
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Predicting Community Dynamics from Food Web Structure,ch individuals of a given species are continuously added to or removed from the community, is used to investigate mathematically the consequences of our inability to choose which configuration best describes the interactions among the species. The long-term outcome of press perturbations is quite sensitive to the details of model structure.
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