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Box 1521, Budafoki Street 8, Hungary; email: andras86@kkft.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, 112699, KMR-12-1-2012-0066 \n Funding text 1: The authors would like to acknowledge the financial help of OTKA – Hungary 112699 and KMR-12-1-2012-0066 project.\nCited By :22 \n Export Date: 8 April 2021 \n CODEN: SPUTF \n Correspondence Address: Toth, A.J.; Department of Chemical and Environmental Process Engineering, P.O. Box 1521, Budafoki Street 8, Hungary; email: andras86@kkft.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, 112699, KMR-12-1-2012-0066 \n Funding text 1: The authors would like to acknowledge the financial help of OTKA – Hungary 112699 and KMR-12-1-2012-0066 project.\nCited By :22 \n Export Date: 3 July 2021 \n CODEN: SPUTF \n Correspondence Address: Toth, A.J.; Department of Chemical and Environmental Process Engineering, P.O. Box 1521, Budafoki Street 8, Hungary; email: andras86@kkft.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, 112699, KMR-12-1-2012-0066 \n Funding text 1: The authors would like to acknowledge the financial help of OTKA – Hungary 112699 and KMR-12-1-2012-0066 project.\nCited By :22 \n Export Date: 5 July 2021 \n CODEN: SPUTF \n Correspondence Address: Toth, A.J.; Department of Chemical and Environmental Process Engineering, P.O. Box 1521, Budafoki Street 8, Hungary; email: andras86@kkft.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, 112699, KMR-12-1-2012-0066 \n Funding text 1: The authors would like to acknowledge the financial help of OTKA – Hungary 112699 and KMR-12-1-2012-0066 project.\nCited By :22 \n Export Date: 8 July 2021 \n CODEN: SPUTF \n Correspondence Address: Toth, A.J.; Department of Chemical and Environmental Process Engineering, P.O. 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Box 1521, Budafoki Street 8, Hungary; email: andras86@kkft.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, 112699, KMR-12-1-2012-0066 \n Funding text 1: The authors would like to acknowledge the financial help of OTKA – Hungary 112699 and KMR-12-1-2012-0066 project.\nCited By :22 \n Export Date: 2 September 2021 \n CODEN: SPUTF \n Correspondence Address: Toth, A.J.; Department of Chemical and Environmental Process Engineering, P.O. Box 1521, Budafoki Street 8, Hungary; email: andras86@kkft.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, 112699, KMR-12-1-2012-0066 \n Funding text 1: The authors would like to acknowledge the financial help of OTKA – Hungary 112699 and KMR-12-1-2012-0066 project.\nCited By :22 \n Export Date: 3 September 2021 \n CODEN: SPUTF \n Correspondence Address: Toth, A.J.; Department of Chemical and Environmental Process Engineering, P.O. 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\nthat is, isobutanol removal from aqueous mixture. To complete \nthis goal a hybrid separation system of organophilic-\nhydrophilic pervaporation system is designed applying Sulzer \nPERVAP™ 4060 and 1510 membranes and investigated to obtain \ninformation about the separation of isobutanol–water mixture. \nThe aim of research is to rigorously model and optimize this \nnovel hybrid process. Permeation fluxes, permeances, \nselectivities and separation factors are experimentally \ndetermined for this hybrid system. The pervaporation \nseparation index (PSI) and selectivity data are compared with \nthose of other membranes published in the literature and it \nis found that PERVAP™ 4060 has the highest PSI value and its \nother parameters are also among the best. Our experimental \ndata are evaluated with the pervaporation model of our \nimprovement and it is found that the model can be applied \nalso for both organophilic and hydrophilic pervaporations. \nThe hybrid separation system is rigorously modelled with \nChemCAD and optimized with the dynamic programming \noptimization method. The objective function of the hybrid \nsystem is the total annual cost but its energy consumption is \nalso investigated. It can be determined that this hybrid \nprocess, that is, the combination of organophilic and \nhydrophilic pervaporations is capable for the separation of \nisobutanol and water and it can become the alternative of \ndistillation based separation. Considering our results it can \nbe assumed that the combination of the organophilic and \nhydrophilic pervaporations opens new horizons for the \nmembrane processes.", "subjects" : [ { "otype" : "Classification", "mtid" : 11021, "link" : "/api/classification/11021", "label" : "Vegyészmérnöki tudományok", "published" : true, "snippet" : true } ], "digital" : null, "printed" : null, "sourceYear" : 2015, "foreignEdition" : true, "foreignLanguage" : true, "fullPublication" : true, "conferencePublication" : false, "nationalOrigin" : true, "missingAuthor" : false, "oaType" : "GREEN", "oaTypeDisp" : "GREEN", "oaCheckDate" : "2024-02-18", "oaFree" : true, "oaLink" : "http://real.mtak.hu/85035", "oaByAuthor" : { "otype" : "Author", "mtid" : 10042608, "link" : "/api/author/10042608", "label" : "Tóth András József (Environmental- and chemical engineering)", "familyName" : "Tóth", "givenName" : "András József", "published" : true, "oldId" : 10042608, "snippet" : true }, "citationCount" : 45, "citationCountUnpublished" : 0, "citationCountWoOther" : 44, "independentCitCountWoOther" : 13, "nationalOriginCitationCount" : 31, "foreignEditionCitationCount" : 34, "doiCitationCount" : 31, "wosCitationCount" : 27, "scopusCitationCount" : 28, "wosScopusCitationCount" : 28, "wosScopusCitationCountWoOther" : 28, "wosScopusIndependentCitationCount" : 12, "wosScopusIndependentCitationCountWoOther" : 12, "independentCitationCount" : 13, "selfCitationCount" : 32, "unhandledCitationCount" : 0, "citingPubCount" : 45, "independentCitingPubCount" : 13, "citingPubCountWoOther" : 44, "independentCitingPubCountWoOther" : 13, "unhandledCitingPubCount" : 0, "citedPubCount" : 9, "citedCount" : 9, "ratings" : [ { "otype" : "SjrRating", "mtid" : 11003896, "link" : "/api/sjrrating/11003896", "label" : "sjr:Q1 (2015) Scopus - Analytical Chemistry SEPARATION AND PURIFICATION TECHNOLOGY 1383-5866", "listPos" : 15, "rankValue" : 0.24, "type" : "journal", "ratingType" : { "otype" : "RatingType", "mtid" : 10002, "link" : "/api/ratingtype/10002", "label" : "sjr", "code" : "sjr", "published" : true, "snippet" : true }, "subject" : { "otype" : "ClassificationExternal", "mtid" : 1602, "link" : "/api/classificationexternal/1602", "label" : "Scopus - Analytical Chemistry", "published" : true, "oldId" : 1602, "snippet" : true }, "ranking" : "Q1", "calculation" : "DIRECT", "published" : true, "snippet" : true } ], "ratingsForSort" : "Q1", "hasCitationDuplums" : true, "inSelectedPubs" : "10052132", "userChangeableUntil" : "2015-12-08T10:38:02.000+0000", "publishDate" : "2015-10-13T17:29:57.000+0000", "directInstitutesForSort" : "Kémiai és Környezeti Folyamatmérnöki Tanszék (BME / VBK)", "ownerAuthorCount" : 4, "ownerInstituteCount" : 26, "directInstituteCount" : 1, "authorCount" : 4, "contributorCount" : 0, "hasQualityFactor" : true, "link" : "/api/publication/2956065", "label" : "Tóth András József et al. 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