Supercritical fluid media and physicochemical processes with their participation form important innovative brunch of industry, called "Supercritical fluid technologies". The solubility of substances in supercritical fluids is a key thermodynamic characteristic which determines the feasibility of using supercritical fluids as solvents, extractants and media for chemical reactions. The book is devoted to the topical issue of description and generalization of the results of experimental studies of solubility of substances in supercritical fluids using various mathematical models. An original method for describing solubility based on the Peng-Robinson equation of state and saturated vapour pressure as a second fitting parameter in addition to the binary interaction parameter is proposed. The book also describes the entropy method of similarity theory, which allows to effectively generalize the various thermodynamic properties of substances, including their solubility in supercritical fluids. The strengths and weaknesses of these methods based on the processing of a large array of experimental data on solubility are presented.
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Timur R. Bilalov - lauréat du prix d'État de la République du Tatarstan (Fédération de Russie) portant le nom de V. E. Alemasov, professeur associé des bases théoriques du département d'ingénierie thermique, Institut d'enseignement du budget fédéral d'État de l'enseignement professionnel supérieur, Université nationale de recherche technologique de Kazan.
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Taschenbuch. Zustand: Neu. Description and generalization of solubility in supercritical fluids | Mathematical methods and theoretical approaches | Timur R. Bilalov (u. a.) | Taschenbuch | 112 S. | Englisch | 2018 | LAP LAMBERT Academic Publishing | EAN 9786139990023 | Verantwortliche Person für die EU: BoD - Books on Demand, In de Tarpen 42, 22848 Norderstedt, info[at]bod[dot]de | Anbieter: preigu. Artikel-Nr. 115178725
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Zustand: Sehr gut. Zustand: Sehr gut | Sprache: Englisch | Produktart: Bücher | Supercritical fluid media and physicochemical processes with their participation form important innovative brunch of industry, called "Supercritical fluid technologies". The solubility of substances in supercritical fluids is a key thermodynamic characteristic which determines the feasibility of using supercritical fluids as solvents, extractants and media for chemical reactions. The book is devoted to the topical issue of description and generalization of the results of experimental studies of solubility of substances in supercritical fluids using various mathematical models. An original method for describing solubility based on the Peng-Robinson equation of state and saturated vapour pressure as a second fitting parameter in addition to the binary interaction parameter is proposed. The book also describes the entropy method of similarity theory, which allows to effectively generalize the various thermodynamic properties of substances, including their solubility in supercritical fluids. The strengths and weaknesses of these methods based on the processing of a large array of experimental data on solubility are presented. Artikel-Nr. 33393080/2
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Zustand: Hervorragend. Zustand: Hervorragend | Sprache: Englisch | Produktart: Bücher | Supercritical fluid media and physicochemical processes with their participation form important innovative brunch of industry, called "Supercritical fluid technologies". The solubility of substances in supercritical fluids is a key thermodynamic characteristic which determines the feasibility of using supercritical fluids as solvents, extractants and media for chemical reactions. The book is devoted to the topical issue of description and generalization of the results of experimental studies of solubility of substances in supercritical fluids using various mathematical models. An original method for describing solubility based on the Peng-Robinson equation of state and saturated vapour pressure as a second fitting parameter in addition to the binary interaction parameter is proposed. The book also describes the entropy method of similarity theory, which allows to effectively generalize the various thermodynamic properties of substances, including their solubility in supercritical fluids. The strengths and weaknesses of these methods based on the processing of a large array of experimental data on solubility are presented. Artikel-Nr. 33393080/1
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