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Handbook of Membrane Research

Editat de Stephan V. Gorley
en Limba Engleză Hardback – 21 mai 2010
Membranes can be defined as a selective barrier between two phases and classified into biological or synthetic membranes. Synthetic membranes are subdivided into organic and inorganic membranes and made from a large number of materials including an organic polymer, ceramics, metal and glass. With regard to the presence of pores, membranes can also be distinguished into porous and non-porous membranes. The choice of membranes for practical applications is based on the membrane materials and membrane structures. Flow and selectivity are two basic key parameters for membrane process applications, which have successfully been applied over the last 40 years to different separation processes (usually, liquid mixtures). This book gathers the latest research from around the world in discussion of this dynamic field.
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Specificații

ISBN-13: 9781607416388
ISBN-10: 1607416387
Pagini: 506
Ilustrații: tables, charts & b/w photos
Dimensiuni: 186 x 264 x 33 mm
Greutate: 1.09 kg
Ediția:New.
Editura: Nova Science Publishers Inc

Cuprins

Preface; Pd-Based Membranes Synthesis & their Application in Membrane Reactors; Recalcitrant Industrial Wastewater Treatment by Membrane Bioreactor (MBR); Applications of Electrospun Nanofiber Membranes for Bioseparations; Modulation of Membrane-Protein Interactions Applied to Whey Fractionation; Porous Glass Membranes: Preparation, Characterization & Applications; Membrane Cleaning: A Key for Sustainable Production in Dairy Industry; The Capability of X-Ray Photoelectron Spectroscopy in the Characterization of Membranes: Correlation between Surface Chemical & Transport Properties in Polymeric Membranes; Applications of Electromembrane Processes to the Production of Nutraceuticals or Functional Foods; Transport Modeling in Nanofiltration; Modeling, Optimization, & Control in Dead-End Ultra Filtration; Application of Dye Affinity Membrane Chromatography to Protein Purification from Raw Materials: Comparison with Soft-Gel Matrices; Pervaporation & Permeation Taking Advantage of Ionic Liquids; Application of Supported Ionic Liquid Membranes to Lactic Acid Recovery; Materials Design of Gas Separation Polymer Membranes; Track-etch PET Membrane with Gradients of Pore Density & Pore Size: Theoretical Analysis of Linear Gradient Permeability Membrane in Flow Filed-Flow Fractionation; Composite Palladium Membranes with Improved Durability toward Hydrogen Embrittlement; Recovery of Fe(III) from Acidic Solutions by SLM using Cyphos IL 101; Ionic Liquid as Carrier; Index.