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Handbook of Separation Techniques for Chemical Engineers

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TLDR
Continuous distillation - separation of binary mixtures continuous distillation- separation of multi-component mixtures batch distillation steam distillation/stripping design of tray columns solvent recovery air stripping liquid liquid extraction commercial liquid-liquid extraction decantation ion exchange separations activated carbon systems for separations of liquid dialysis and electodialysisi parametrc pumping high-pressure liquid chromatographic separations commercial coalescers membrane filtration evaporation crystallization from solutions foam separation processes gas phase absorption design of gas absorption towers mass transfer using fuidized bed techniques fil
Abstract
Continuous distillation - separation of binary mixtures continuous distillation - separation of multi-component mixtures batch distillation steam distillation/stripping design of tray columns solvent recovery air stripping liquid-liquid extraction commercial liquid-liquid extraction decantation ion exchange separations activated carbon systems for separations of liquid dialysis and electodialysisi parametrc pumping high-pressure liquid chromatographic separations commercial coalescers membrane filtration evaporation crystallization from solutions foam separation processes gas phase absorption design of gas absorption towers mass transfer using fuidized bed techniques filtration theory flter-aid filtration batch filtration continuous filtration centrifugation cartridge filtration felt stainer bags sedimantation hydroclone separation drying of wet solids and solids in liquid leaching flotation melt crystallization solid-solid separations gas-solid separations electrostatic precipitators dust collectors, application and design and air separartion barrier filtration of hot gas.

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Membrane Technology and Applications

TL;DR: Overview of membrane science and technology membrane transport theory membrane and modules concentration polarization reverse osmosis ultrafiltration microfiltration gas separation pervaporation ion exchange membrane processes - electrodialysis carrier facilitated transport medical applications of membranes other membranes processed.
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Liquid/liquid extraction of metal ions in room temperature ionic liquids

TL;DR: In this article, the authors explore the application of wellknown organic (1-(pyridylazo)-2-napthol, PAN, and (1-thiazolylazo)- 2-nanopthol extractants for partitioning a variety of metal cations between [C4mim][PF6] and an aqueous phase, and show that the metal ion affinity for the hydrophobic phase necessitates the presence of an extractant.
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Ionic liquid/water mixtures: from hostility to conciliation

TL;DR: Recent results on the properties of IL/water mixtures indicate that Sufficiently hydrophilic ions yielded ILs that are miscible with water, and hydrophobic ions gave stable phase separation with water.
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Use of Micellar-Enhanced Ultrafiltration to Remove Dissolved Organics from Aqueous Streams

TL;DR: In this article, a micellar-enhanced ultrafiltration (MEUF) method was used to remove dissolved low molecular weight organics from water, and the results showed that at high surfactant concentrations (0.25 M) in the retentate, rejections decrease, probably owing to the formation of n-mers (e.g., dimers, trimers, etc.) which are able to pass through the pores along with some solubiliz...
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Steam-assisted biomass fractionation. I. Process considerations and economic evaluation

TL;DR: In this paper, a series of process design and economics models have been created which calculate the process cost for several scenarios in steam-explosion/fractionation of wood, including unprocessed, water-exploded, and aqueous solvent (alkali or ethanol) extractor.