Bioenergetics Of Aquatic Animals
This text applies bioenergetics to aquatic animals and explores its role in aquaculture and fisheries science. It seeks to provide a compact account of bioenergetics in aquaculture and clarify problems encountered in the areas of fisheries and
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according acids activity age class allows amount anabolism analysis aquaculture aquatic animals assimilation Barbault bioenergetics biological biomass bivalves calculated calorimeter carbon catabolism cell cellular characteristics chemical reactions Chlamys varia cohort concentration constant corresponds curve decreases defined demographic density Diagram digestion ecological ecosystem eliminated endergonic energetic value energy budgets enthalpy entropy environment enzymatic enzyme equilibrium established example exchanges excretion exergonic exergonic reaction experimental expressed factors faeces feeding Figure fish free enthalpy function gametes gonad growth rate Guen heat increases ingested joules kJ mol-1 Lehninger lipids living organisms mass measurements metabolism metabolizable methods microbioenergetics microphages molluscs muscle natural environment nitrogenous number of individuals O’Dor obtained organic matter oxygen consumption oyster particles phosphorylated physiological phytoplankton population production proportion proteins rearing relationship represented reproductive effort respiration respiration rate respiratory respirometry spawning species structure studied substances substrate swimming speed Table temperature thermodynamics tissue unit weight zooxanthellae