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Titlebook: Solvent Extraction in Biotechnology; Recovery of Primary Karl Schügerl Book 1994 Springer-Verlag Berlin Heidelberg 1994 Biochemie.Biochemi

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書目名稱Solvent Extraction in Biotechnology
副標題Recovery of Primary
編輯Karl Schügerl
視頻videohttp://file.papertrans.cn/872/871766/871766.mp4
圖書封面Titlebook: Solvent Extraction in Biotechnology; Recovery of Primary  Karl Schügerl Book 1994 Springer-Verlag Berlin Heidelberg 1994 Biochemie.Biochemi
描述.Solvent Extraction in Biotechnology. deals with the reco- very and purification of primary and secondary metabolites by solvent extraction. In the first part the reaction engineering principles: definitions, thermodynamic fundamentals, and system models, the kinetics of mass transfer between two phases without and with chemical reaction as well as extraction equipment, which are important for downstream processing in biotechnology, are considered in detail. The special part of the book describes the recovery of low-molecular metabolites: alcohols, acids and antibiotics with organic solvents, carrier-modifier-solvent systems, supercritical gases as well as with liquid membrane techniques. Several practical examples are given for the recovery of different metabolites as well as for the calculation of the extraction processes necessary for equipment design. Besides solvent extraction, novel separation techniques with liquid membrane, microemulsion and reversed micelles are also presented. This book will introduce the biochemical engineer and process engineer to the recovery of products from complex cultivation broths by modern techniques of solvent extraction and help them with proce
出版日期Book 1994
關鍵詞Biochemie; Biochemistry; Biotechnologie; Downstream Processing; Seperation Techniques; Trennverfahren; bio
版次1
doihttps://doi.org/10.1007/978-3-662-03064-6
isbn_softcover978-3-642-08190-3
isbn_ebook978-3-662-03064-6
copyrightSpringer-Verlag Berlin Heidelberg 1994
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Karl Schügerlnanotechnology. -.Contributions written by leading researche.Following an introduction to biogenic metal nanoparticles, this book presents how they can be biosynthesized using bacteria, fungi and yeast, as well as their potential applications in biomedicine. It is shown that the synthesis of nanopar
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Karl Schügerlnanotechnology. -.Contributions written by leading researche.Following an introduction to biogenic metal nanoparticles, this book presents how they can be biosynthesized using bacteria, fungi and yeast, as well as their potential applications in biomedicine. It is shown that the synthesis of nanopar
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Karl Schügerlnanotechnology. -.Contributions written by leading researche.Following an introduction to biogenic metal nanoparticles, this book presents how they can be biosynthesized using bacteria, fungi and yeast, as well as their potential applications in biomedicine. It is shown that the synthesis of nanopar
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Karl Schügerlnanotechnology. -.Contributions written by leading researche.Following an introduction to biogenic metal nanoparticles, this book presents how they can be biosynthesized using bacteria, fungi and yeast, as well as their potential applications in biomedicine. It is shown that the synthesis of nanopar
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https://doi.org/10.1007/978-3-662-03064-6Biochemie; Biochemistry; Biotechnologie; Downstream Processing; Seperation Techniques; Trennverfahren; bio
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Reaction Engineering Principles,Equilibrium partitioning of nonelectrolytes between two immiscible phases is achieved, when the chemical potential of the solute is equal in the two phases . where the potential in the aqueous phase is given by . and that of the organic phase by
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