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Original Articles

Microemulsion Liquid Membranes. I. Application to Acetic Acid Removal from Water

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Pages 1211-1228 | Received 17 Sep 1991, Published online: 23 Sep 2006

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Read on this site (4)

F. H. Mahfud, F. P. van Geel, R. H. Venderbosch & H. J. Heeres. (2008) Acetic Acid Recovery from Fast Pyrolysis Oil. An Exploratory Study on Liquid-Liquid Reactive Extraction using Aliphatic Tertiary Amines. Separation Science and Technology 43:11-12, pages 3056-3074.
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Syed Qutubuddin, JohnM. Wiencek, Afzal Nabi & JinY. Boo. (1994) Hemoglobin Extraction Using Cosurfactant-Free Nonionic Microemulsions. Separation Science and Technology 29:7, pages 923-929.
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JohnM. Wiencek & Syed Qutubuddin. (1992) Microemulsion Liquid Membranes. II. Copper Ion Removal from Buffered and Unbuffered Aqueous Feed. Separation Science and Technology 27:11, pages 1407-1422.
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Articles from other publishers (16)

Yaqiang Li, Lijuan Liu, Qifeng Wei, Xiulian Ren & Maozhong An. (2021) Highly selective separation of acetic acid and hydrochloric acid by alkylamide based on double hydrogen bond coupling mechanism. Separation and Purification Technology 275, pages 119110.
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Nashiour Rohman & Tariq Mohiuddin. (2021) Dielectric Relaxation of Decyltrimethylammonium Bromide-Water-Styrene Oil-in-Water Microemulsion. Journal of Solution Chemistry 50:8, pages 1-14.
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Se Jin Kim & Byung Hwan Um. (2018) Delignification from Geodae-Uksae1 using soda-pulping followed by evaluation on recycling of liquid-liquid extraction solvent. Biomass and Bioenergy 109, pages 23-30.
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Ga-Hee Kim, Seong-Jik Park & Byung-Hwan Um. (2016) Response surface methodology for optimization of solvent extraction to recovery of acetic acid from black liquor derived from Typha latifolia pulping process. Industrial Crops and Products 89, pages 34-44.
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Seong Ju Kim, Seong-Jik Park & Byung Hwan Um. (2016) Optimization of Acetic Acid Recovery Using Tri-n-alkylphosphine Oxide from Prepulping Extract of Hemicellulose by Response Surface Methodology. Journal of the Korean Wood Science and Technology 44:4, pages 477-493.
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Thi Thu Huong Pham, Tae Hyun Kim & Byung-Hwan Um. (2015) Recovery of Acetic Acid from An Ethanol Fermentation Broth by Liquid-Liquid Extraction (LLE) Using Various Solvents. Korean Chemical Engineering Research 53:6, pages 695-702.
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Seong Ju Kim, Hee Sun Kwon, Ga Hee Kim & Byung Hwan Um. (2015) Green liquor extraction of hemicellulosic fractions and subsequent organic acid recovery from the extracts using liquid–liquid extraction. Industrial Crops and Products 67, pages 395-402.
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Jilska Perera & Geoff Stevens. 2008. Handbook of Membrane Separations. Handbook of Membrane Separations 709 740 .
Zdeněk Palatý, Alena Žáková & Pavel Prchal. (2007) Continuous dialysis of carboxylic acids. Permeability of Neosepta-AMH membrane. Desalination 216:1-3, pages 345-355.
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Romuald Wódzki & Jacek Nowaczyk. (2002) Propionic and acetic acid pertraction through a multimembrane hybrid system containing TOPO or TBP. Separation and Purification Technology 26:2-3, pages 207-220.
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Štefan Schlosser. 2000. Integration of Membrane Processes into Bioconversions. Integration of Membrane Processes into Bioconversions 73 100 .
Romuald W�dzki & Jacek Nowaczyk. (1999) Membrane transport of organics. II. Permeation of some carboxylic acids through strongly basic polymer membrane. Journal of Applied Polymer Science 71:13, pages 2179-2190.
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S.P. Moulik & B.K. Paul. (1998) Structure, dynamics and transport properties of microemulsions. Advances in Colloid and Interface Science 78:2, pages 99-195.
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Shih‐Yao B. Hu & John M. Wiencek. (2004) Emulsion‐liquid‐membrane extraction of copper using a hollow‐fiber contactor. AIChE Journal 44:3, pages 570-581.
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B.K. Paul, D.C. Mukherjee & S.P. Moulik. (1996) Charge transfer and fluorescence behaviour of hexylamine and 7,7,8,8-tetracyanoquinodimethane in compartmentalized (reverse micelle and microemulsion) and non-aqueous environments. Journal of Photochemistry and Photobiology A: Chemistry 94:1, pages 53-62.
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M. Hebrant, P. Mettelin, C. Tondre, J.-P. Joly, C. Larpent & X. Chasseray. (1993) AOT reversed micelles as carriers of amino acids across liquid membranes. Search for selectivity and chirality effect. Colloids and Surfaces A: Physicochemical and Engineering Aspects 75, pages 257-267.
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