Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1975--30 June 1976

Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1975--30 June 1976 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Progress is reported in the following areas of research: interactions of dissolved organic matter with inorganic nutrient cycling; regulation of the photosynthetic and decompositional metabolism of micro- and macroflora; regulatory mechanisms of growth and rates of carbon cycling; and fate of detrital dissolved and particulate organic matter. (HLW).

Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1975--30 June 1976

Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1975--30 June 1976 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Progress is reported in the following areas of research: interactions of dissolved organic matter with inorganic nutrient cycling; regulation of the photosynthetic and decompositional metabolism of micro- and macroflora; regulatory mechanisms of growth and rates of carbon cycling; and fate of detrital dissolved and particulate organic matter. (HLW).

Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1974--30 June 1975

Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1974--30 June 1975 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description


Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1976--30 June 1977

Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1976--30 June 1977 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Progress is reported on investigations on the qualitative and quantitative cycling of particulate and dissolved organic matter within lakes and their drainage basins. Interactions of dissolved organic matter with inorganic nutrient cycling and regulation of the photosynthetic and decompositional metabolism of micro- and macroflora remain the focal point of these studies. Major efforts were directed towards the sources fates, pathways, and interactions of dissolved organic matter in inorganic chemical cycling; allochthonous sources, metabolism en route, and inputs to the lake systems of increasing stages of eutrophication; and the relationships of these compounds to the nutrient physiology and metabolism of phytoplankton, sessile algae, macrophytes, and bacterial populations. Results of studies carried out in a freshwater lake in Michigan (Lawrence Lake) are reported. 165 references.

ERDA Research Abstracts

ERDA Research Abstracts PDF Author: United States. Energy Research and Development Administration
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 780

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Book Description


ERDA Energy Research Abstracts

ERDA Energy Research Abstracts PDF Author: United States. Energy Research and Development Administration
Publisher:
ISBN:
Category : Medicine
Languages : en
Pages :

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Book Description


ERDA Energy Research Abstracts

ERDA Energy Research Abstracts PDF Author: United States. Energy Research and Development Administration
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 1322

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Book Description


Energy Research Abstracts

Energy Research Abstracts PDF Author:
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 440

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Book Description


Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1979-30 June 1980

Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1979-30 June 1980 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Progress in research to evaluate the impact of utilization of fossil fuels on surface water is reported. Analyses of regulatory mechanisms of growth and rates of carbon cycling center on evaluation of quantitative control interactions among the microflora of the pelagial zones of several lakes of progressively greater eutrophy, littoral photosynthetic producer-decomposer complex, and allochthonous inorganic-organic influxes and their biotic processing. The underlying thesis is that quantification of the dynamic carbon fluxes among these components and their rate control mechanisms by physical and chemical factors are fundamental to elucidation of the rate functions of lake eutrophication. A major portion of the research has been directed towards the fate and nutrient mechanisms regulating qualitative and quantitative utilization and losses of organic carbon synthesized within lakes and their drainage basins. It has become increasingly apparent that the wetland and littoral flora, and attendant epiphytic and benthic microflora, have major regulatory controls on biogeochemical cycling of whole lake systems. A major effort on factors regulating the metabolism of littoral macrophytes and attached algae has been coupled to integrated studies on their decomposition and the fate of detrital dissolved and particulate organic matter. These organic products are being coupled to influences on enzymatic activity and inorganic nutrient cycling.

ERDA Energy Research Abstracts

ERDA Energy Research Abstracts PDF Author: United States. Energy Research and Development Administration. Technical Information Center
Publisher:
ISBN:
Category : Force and energy
Languages : en
Pages : 724

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Book Description


Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1977--30 June 1978

Dissolved Organic Matter and Lake Metabolism. Technical Progress Report, 1 July 1977--30 June 1978 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Interactions of dissolved organic matter with inorganic nutrient cycling and regulation of the photosynthetic and decompositional metabolism of micro- and macroflora remains the focal point of these studies. Major efforts are directed towards the sources, fates, pathways, and interactions of dissolved organic matter in inorganic chemical cycling; allochthonous sources, metabolism en route, and inputs to the lake systems of increasing stages of eutrophication; and the relationships of these compounds to the nutrient physiology and metabolism of phytoplankton, sessile algae, macrophytes, and bacterial populations of the littoral zones and wetlands of the drainage basin. Analyses of regulatory mechanisms of growth and rates of carbon cycling center on evaluation of quantitative control interactions among the microflora of the pelagial zones of seversal lakes of progressively greater eutrophy, littoral photosynthetic producer-decomposer complex, and allochthonous inorganic--organic influxes and their biotic processing. The underlying thesis is that quantification of the dynamic carbon fluxes among these components and their rate control mechanisms by physical and chemical factors are fundamental to elucidation of the rate functions of lake eutrophication.