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Tuesday, August 4, 2020 | History

2 edition of bioenergetic model of food chain uptake and accumulation of organic chemicals, Athabasca River found in the catalog.

bioenergetic model of food chain uptake and accumulation of organic chemicals, Athabasca River

Starodub, Mary Ellen

bioenergetic model of food chain uptake and accumulation of organic chemicals, Athabasca River

stochastic and time variable version

by Starodub, Mary Ellen

  • 192 Want to read
  • 8 Currently reading

Published by The Study in Edmonton .
Written in English

    Subjects:
  • Fishes -- Food -- Alberta -- Athabasca River -- Mathematical models.,
  • Food chains (Ecology) -- Alberta -- Athabasca River -- Mathematical Models.,
  • Organic compounds -- Environmental aspects -- Alberta -- Athabasca River -- Mathematical models.

  • Edition Notes

    Includes bibliographical references.

    Statementprepared for the Northern River Basins Study under project 2381-E2 by Mary Ellen Starodub and Glenn Ferguson.
    SeriesNorthern River Basins Study project report -- no 113
    ContributionsFerguson, Glenn., Northern River Basins Study (Canada)
    ID Numbers
    Open LibraryOL16753134M
    ISBN 100662248384

    In the current study, 28 organic contaminants were measured, many with estrogen‐like activity, in water collected from 16 sites on two rivers in the South Saskatchewan River Basin, Alberta, Canada. T Cited by:   Climate and environmental changes are having profound impacts on Arctic river basins, but the biogeochemical response remains poorly understood. To examine the effect of ice formation on temporal variations in composition and fluxes of carbon and nutrient species, monthly water and particulate samples collected from the lower Yukon River between July and September Cited by:

    Nutrients & Trace Elements. With respect, patience & humility toward all with whom we work, Organic Approach has always been, and will always remain, firmly committed to offering environmental knowledge & products designed to emulate & nurture the delicate balance of the expert creation inherent in all truly natural systems.™. A suite of isotopic methods were combined to provide a comprehensive investigation of organic matter transfer and consumer‐resource links in a large lake food web. We applied compound specific isotope analysis (CSIA) of nitrogen within amino acids of organisms, a relatively new method and one not yet widely applied to large lake systems, to.

      Buy The Organic Chemistry of Biological Pathways 2 by McMurry, J. (ISBN: ) from Amazon's Book Store. Everyday low prices and free delivery on eligible orders/5(15). Bioenergetic evaluation of food supply and consumption demand by brown and rainbow trout in catch-and-release areas of Arkansas tailwaters Jon M. Flinders and Daniel D. Magoulick Arkansas Cooperative Fish & Wildlife Research Unit Department of Biological Sciences University of Arkansas.


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Bioenergetic model of food chain uptake and accumulation of organic chemicals, Athabasca River by Starodub, Mary Ellen Download PDF EPUB FB2

Get this from a library. A bioenergetic model of food chain uptake and accumulation of organic chemicals, Athabasca River: stochastic and time variable version.

[Mary Ellen Starodub; Glenn Ferguson; Northern River Basins Bioenergetic model of food chain uptake and accumulation of organic chemicals (Canada)]. simple flow-limited model for exchange of organic-chemicals at fish gills.

InBarber and colleagues developed a bioaccumulation model called the Food and Gill Exchange of Toxic Substances (FGETS) model to quantify the processes for uptake of non-metabolizable organic chemicals from water and food (Barber, Suarez et al.

The. Bioenergetic Habitat Modeling and Food Delivery for Fish in Streams Food Delivery for Drift Feeding Fishes The drift feeding fish featured in the Bere Stream bioenergetic model (brown trout and Atlantic salmon) get approximately 80% of their food from invertebrates drifting downstream in the water column.

For the most part,Author: Nicole S. Weber, Howard S. Wheater, Douglas J. Booker, Mike J. Dunbar, Anton T. Ibbotson. DEVELOPMENT AND TESTING OF A NEW BIOENERGETICIBIOACCUMULATION MODEL FOR PERSISTENT ORGANIC POLLUTANTS IN AQUATIC AND TERRESTRIAL FOOD WEBS by Yongshu Fan Bachelor ofScience, Simon Fraser University PROJECT SUBMITTED IN PARTIAL FULFILLMENT OF THE REQUIREMENTS FOR THE DEGREE OF MASTER OF ENVIRONMENTAL.

Mackay, D. and Fraser, A., Bioaccumulation of Persistent Organic Chemicals: Mechanisms and Models, Environ. Pollut.– (). A model for predicting the bioaccumulation of hydrophobic organic chemicals in aquatic food-webs: application to Lake Ontario.

Ecol. Modelling, A simple model is presented for estimating concentrations of hydrophobic organic substances in various organisms of aquatic food-webs from chemical concentrations in water and by: Bioenergetic model simulations of low-ration coho growth data from Neely et al.

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organic matter accumulation basins. Globally, the amount of organic carbon buried annually in the sediment of large lakes is 10% of the amount buried annually in marine sediments, despite occupying an area just % as large as that of marine waters (Alin and Johnson ).

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