Theory of radioisotopic and chemical homeostasis of marine ecosystems
Author(s)
Bibliographic Information
Theory of radioisotopic and chemical homeostasis of marine ecosystems
(Springer oceanography)
Springer, c2021
- : hbk
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Note
Translated from the Russian
Includes bibliographical references
Description and Table of Contents
Description
The book is dedicated to the study and mathematical definition of the biogeochemical patterns of organic and inorganic matter interaction with the marine environment's radioactive and chemical components. This book describes the radioisotope and mineral exchange theory between organic and inorganic matters in the marine environment on a time scale of metabolic processes and trophic interactions. The approach is parametrically compatible with modern techniques describing the matter and energy balance in aquatic ecosystems. The criteria for assessing the ecological capacity, biogeocenoses assimilation capacity, and water masses radio capacity, which form the basis of the theory of radioisotope and mineral homeostasis of marine ecosystems, are substantiated.
This book presents methods to implement sustainable development of the Black Sea's critical and recreational zones according to the marine pollution factors. This book does that by regulating the balance between the consumption of water quality resources and their reproduction as a result of natural biogeochemical processes are proposed.
The book is of interest to scientists working in marine geology, marine ecology, biogeophysics, and biogeochemistry. This book is also necessary for professionals working in institutions and administrations coordinating maritime activities, environmental projects, and developing aquaculture technologies.
Table of Contents
1 Introduction 2 Biogeochemical mechanisms of interaction between living and inertmatter with radioactive and chemical components of marine environment 3Semi-empirical theory of mineral and radioisotope exchange of living and inert matter inthe marine environment 4 Theory of radioisotope and chemical homeostasis of marineecosystems
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