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Titlebook: Kinetics of Metal Ion Adsorption from Aqueous Solutions; Models, Algorithms, Sotira Yiacoumi,Chi Tien Book 1995 Springer Science+Business

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rently exist directly evaluating the efficacy of pharmacological treatments for pathological gambling in adolescents. Pharmacological treatment of other disorders in adolescents suggests that certain medications-SRIs, mood stabilizers, naltrexoneùappear safe and effective at certain doses and for ce
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Introduction,A brief review of the study of the adsorption of metal ions from aqueous solutions with natural and synthetic adsorbents is presented. From this historical perspective, we offer our rationale for preparing this monograph, followed by a description of its organization.
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Adsorption of Ionic Solutes at Solid-Solution Interfaces,Several models formulated by past researchers to describe the adsorption of ionic solutes at solid-solution interfaces are presented. Also included is the development of a model that establishes a relationship between the surface charge density and the surface electrical potential, inside the porous structure of an adsorbent.
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Adsorption of Metal Ions from Aqueous Solutions: Algorithm Development,The development of a general algorithm for the calculation of metal ion adsorption from aqueous solutions at equilibrium and non-equilibrium conditions is presented. This algorithm, named KINEQL (Yiacoumi, 1992), incorporates elements from existing equilibrium algorithms with new elements for kinetic calculations.
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Adsorption of Metal Ions from Aqueous Solutions: Model Application,This chapter covers applications of the model and algorithm developed in the two previous chapters to calculate the kinetics of metal ion adsorption from aqueous solutions. A number of specific problems are presented. Model predictions are also compared with experimental results available in the literature.
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Summary and Future Development,In this book, kinetic uptake models of metal ions from aqueous solutions by adsorbents in various systems were presented and applied. Specifically, the uptake of metal ions from aqueous solutions by adsorbents such as hydrous oxides and activated carbon was analyzed.
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Adsorption of Metal Ions from Aqueous Solutions: Model Development,the principles of surface complexation models, is presented. This presentation begins with the various surface complexation models, previously developed to describe adsorption equilibrium, and then further develops the models for the prediction of adsorption rates.
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