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Membrane Reactors for Energy Applications and Basic Chemical Production PDF

669 Pages·2015·24.85 MB·English
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Related titles HandbookofMembraneReactors,Volume2:ReactorTypesandIndustrialApplications (ISBN978-0-85709-415-5) PolymerElectrolyteMembraneandDirectMethanolFuelCellTechnology (ISBN978-1-84569-774-7) FunctionalMaterialsforSustainableEnergyApplications (ISBN978-085709-059-1) Woodhead Publishing Series in Energy: Number 76 Membrane Reactors for Energy Applications and Basic Chemical Production Edited by Angelo Basile, Luisa Di Paola, Faisal I. Hai and Vincenzo Piemonte AMSTERDAM(cid:129)BOSTON(cid:129)CAMBRIDGE(cid:129)HEIDELBERG LONDON(cid:129)NEWYORK(cid:129)OXFORD(cid:129)PARIS(cid:129)SANDIEGO SANFRANCISCO(cid:129)SINGAPORE(cid:129)SYDNEY(cid:129)TOKYO WoodheadPublishingisanimprintofElsevier WoodheadPublishingisanimprintofElsevier 80HighStreet,Sawston,Cambridge,CB223HJ,UK 225WymanStreet,Waltham,MA02451,USA LangfordLane,Kidlington,OX51GB,UK Copyright©2015ElsevierLtd.Allrightsreserved. Nopartofthispublicationmaybereproduced,storedinaretrievalsystemortransmitted inanyformorbyanymeanselectronic,mechanical,photocopying,recordingorotherwise withoutthepriorwrittenpermissionofthepublisher. PermissionsmaybesoughtdirectlyfromElsevier’sScience&TechnologyRights DepartmentinOxford,UK:phone(+44)(0)1865843830;fax(+44)(0)1865853333; email:permissions@elsevier.com.Alternativelyyoucansubmityourrequestonlineby visitingtheElsevierwebsiteathttp://elsevier.com/locate/permissions,andselecting ObtainingpermissiontouseElseviermaterial. Notice Noresponsibilityisassumedbythepublisherforanyinjuryand/ordamagetopersonsor propertyasamatterofproductsliability,negligenceorotherwise,orfromanyuseor operationofanymethods,products,instructionsorideascontainedinthematerialherein. Becauseofrapidadvancesinthemedicalsciences,inparticular,independentverificationof diagnosesanddrugdosagesshouldbemade. BritishLibraryCataloguing-in-PublicationData AcataloguerecordforthisbookisavailablefromtheBritishLibrary LibraryofCongressControlNumber:2014954543 ISBN978-1-78242-223-5(print) ISBN978-1-78242-227-3(online) ForinformationonallWoodheadPublishingpublications visitourwebsiteathttp://store.elsevier.com/ TypesetbyTNQBooksandJournals www.tnq.co.in PrintedandboundintheUnitedKingdom List of contributors A. Aghaeinejad-Meybodi SahandUniversity ofTechnology, Tabriz, Iran P.Argurio University ofCalabria, Rende, Italy A. Arratibel EindhovenUniversity ofTechnology, Eindhoven, The Netherlands A.A. Babaluo SahandUniversity ofTechnology,Tabriz, Iran A. Basile University of Calabria, Rende,Italy V. Calabr(cid:1)o University of Calabria, Rende,Italy S. Chakraborty University of Calabria,Rende, Italy P.Chiesa Politecnicodi Milano, Milan, Italy A.Comazzi Universit(cid:1)a degliStudidiMilano,Milan,Italy S. Curcio University ofCalabria, Rende, Italy F.Dalena University ofCalabria, Rende, Italy R. Datta Worcester PolytechnicInstitute,Worcester, MA, USA L. Di Paola Campus Bio-Medico di Roma University, Rome, Italy X. Dong Arizona State University, Tempe, AZ, USA K.P. Fattah American University of Sharjah, Sharjah, UAE F.Galli Universit(cid:1)a degli Studi diMilano, Milan, Italy F.Gallucci Eindhoven University of Technology, Eindhoven, The Netherlands G. Genduso KULeuven, Leuven, Belgium K.Ghasemzadeh UrmiaUniversityofTechnology,Urmia,Iran;SahandUniversity of Technology, Tabriz, Iran F.I. Hai University ofWollongong, Wollongong, NSW, Australia J.T.S. Irvine University of St. Andrews,St. Andrews, UK N. Itoh Utsunomiya University, Utsunomiya,Japan A. Iulianelli University of Calabria,Rende,Italy S. Klinsrisuk Khon Kaen University, Khon Kaen, Thailand C. Lavorato University ofCalabria, Rende, Italy xiv Listofcontributors S. Liguori University of Calabria,Rende, Italy Y.S. Lin Arizona State University, Tempe,AZ, USA P. Luis Université Catholique de Louvain, Louvain-la-Neuve, Belgium F. Manenti Politecnico di Milano, Milan, Italy G. Manzolini Politecnico diMilano, Milan, Italy D.J. Martino Worcester Polytechnic Institute,Worcester, MA,USA E.R. Minardi University ofCalabria, Rende, Italy M. Miyamoto GifuUniversity, Gifu, Japan R. Molinari University of Calabria, Rende,Italy M.T.Moreira UniversityofSantiagodeCompostela,SantiagodeCompostela,Spain Y. Nakashimada HiroshimaUniversity, Higashi-Hiroshima,Japan D.A.Pacheco Tanaka Tecnalia, San Sebastian,Spain V. Piemonte Campus Bio-Medico diRoma University, Rome, Italy C. Pirola Universit(cid:1)adegli Studi diMilano,Milan, Italy M.R. Rahimpour Shiraz University, Shiraz, Iran M.C. Romano Politecnico di Milano, Milan, Italy V. Russo Campus Bio-Medico di RomaUniversity, Rome, Italy D.P. Saroj University of Surrey, Guilford, UK H. Takamura Tohoku University, Sendai, Japan S. Tao University ofStrathclyde,Glasgow, UK J. Tong ColoradoSchoolof Mines, Golden, CO, USA S. Uemiya GifuUniversity, Gifu,Japan B. Vander Bruggen KULeuven, Leuven, Belgium M. van Sint Annaland Eindhoven University ofTechnology, Eindhoven, The Netherlands H. Wang Arizona State University, Tempe,AZ, USA J. Yang EastChinaUniversity of Science and Technology, Shanghai, P.R. China C. Yang East China University of Science and Technology, Shanghai,P.R. China P.-S. Yen Worcester Polytechnic Institute, Worcester, MA, USA Woodhead Publishing Series in Energy 1 Generating power at high efficiency: Combined cycle technology for sustainable energyproduction EricJeffs 2 Advancedseparationtechniquesfornuclearfuelreprocessingandradioactivewaste treatment EditedbyKennethL.NashandGreggJ.Lumetta 3 Bioalcoholproduction:Biochemicalconversionoflignocellulosicbiomass EditedbyKeithW.Waldron 4 Understanding and mitigating ageing in nuclear power plants: Materials and operationalaspectsofplantlifemanagement(PLiM) EditedbyPhilipG.Tipping 5 Advancedpowerplantmaterials,designandtechnology EditedbyDermotRoddy 6 Stand-alone and hybrid wind energy systems: Technology, energy storage and applications EditedbyJohnK.Kaldellis 7 Biodieselscienceandtechnology:Fromsoiltooil JanC.J.Bart,NatalePalmeriandStefanoCavallaro 8 Developmentsandinnovationincarbondioxide(CO )captureandstoragetechnology 2 Volume1:Carbondioxide(CO )capture,transportandindustrialapplications 2 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Oxy-fuelcombustionforpowergenerationandcarbondioxide(CO )capture 2 EditedbyLigangZheng 18 Small and micro combined heat and power (CHP) systems: Advanced design, performance,materialsandapplications EditedbyRobertBeith 19 Advancesincleanhydrocarbonfuelprocessing:Scienceandtechnology EditedbyM.RashidKhan 20 Modern gas turbine systems: High efficiency, low emission, fuel flexible power generation EditedbyPeterJansohn 21 Concentratingsolarpowertechnology:Principles,developmentsandapplications EditedbyKeithLovegroveandWesStein 22 Nuclearcorrosionscienceandengineering EditedbyDamienFéron 23 Powerplantlifemanagementandperformanceimprovement EditedbyJohnE.Oakey 24 Electricaldrivesfordirectdriverenewableenergysystems EditedbyMarkusMuellerandHenkPolinder 25 Advanced membrane science and technology for sustainable energy and environmentalapplications EditedbyAngeloBasileandSuzanaPereiraNunes 26 Irradiationembrittlementofreactorpressurevessels(RPVs)innuclearpowerplants EditedbyNaokiSoneda 27 Hightemperaturesuperconductors(HTS)forenergyapplications EditedbyZiadMelhem 28 Infrastructureandmethodologiesforthejustificationofnuclearpowerprogrammes EditedbyAgustínAlonso 29 Wastetoenergyconversiontechnology EditedbyNaomiB.KlinghofferandMarcoJ.Castaldi 30 Polymer electrolyte membrane and direct methanol fuel cell technology Volume 1: Fundamentalsandperformanceoflowtemperaturefuelcells EditedbyChristophHartnigandChristinaRoth 31 Polymer electrolyte membrane and direct methanol fuel cell technology Volume 2: Insitucharacterizationtechniquesforlowtemperaturefuelcells EditedbyChristophHartnigandChristinaRoth 32 Combinedcyclesystemsfornear-zeroemissionpowergeneration EditedbyAshokD.Rao 33 Modernearthbuildings:Materials,engineering,constructionandapplications EditedbyMatthewR.Hall,RickLindsayandMerorKrayenhoff 34 Metropolitansustainability:Understandingandimprovingtheurbanenvironment EditedbyFrankZeman 35 Functionalmaterialsforsustainableenergyapplications 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EditedbyLeovanVelzen 72 Eco-friendlyinnovationinelectricitynetworks EditedbyJean-LucBessede 73 The2011Fukushimanuclearpowerplantaccident:Howandwhyithappened YotaroHatamura,SeijiAbe,MasaoFuchigamiandNaotoKasahara.TranslatedbyKenji Iino 74 Lignocellulosebiorefineryengineering:Principlesandapplications HongzhangChen 75 Advancesinmembrane technologiesforwatertreatment:Materials,processesand applications EditedbyAngeloBasile,AlfredoCassanoandNavinRastogi 76 Membranereactorsforenergyapplicationsandbasicchemicalproduction EditedbyAngeloBasile,LuisaDiPaola,FaisalI.HaiandVincenzoPiemonte Preface Integrationofreactionandseparationinasingleunitisanelegantapproachtoincrease efficiency and economic advantages of many chemical processes. In particular, the integration of membrane separation units to (bio)chemical reactors can yield the following multidimensional benefits: 1. Theabilityofsuchareactortocircumventthermodynamiclimitationsofanequilibrium- controlledprocessbyseparatingreactionproducts,astheyareproduced,allowsoperation atlowertemperaturesthantheconventionalreactorstoobtainthesamereactantconversion ortoconvertmorereactantatthesametemperature. 2. Operatinglowerreactiontemperaturesallowsreconsiderationofheatintegrationstrategyto supplyheatdutytoreactors. 3. Loweroperatingtemperaturesreducematerialscostalongwithincreasingoperationsafety. 4. The expected significant process simplification and intensification offered by the mem- branereactorsduetocombinationofreactionandseparationinonestepwouldpavethe waytoanewindustrialparadigm. Thepotentialofmembranereactorsissubstantial:theycouldplayakeyrolenotonly in case of reversible reactions which conventionally cannot reach high conversions, but also in case of endothermic reactions since the equilibrium shift would allow a higher reactant conversion at lower temperature. In this book, an extensive list of the main reactions (or, better, reaction systems) carried out in membrane reactors is presented.Generally,acomparisonwiththeso-calledtraditional reactorsisalso pre- sentedinordertobetterunderstandthebenefitsofmembranereactorsintermsofcon- version,yield, by-product recovery andso on. The book is composed of three parts: (One) membrane reactors for syngas and hydrogenproduction(Chapters1–9);(Two)membranereactorsforotherenergyappli- cations(Chapters10–15);and(Three)membranereactorsforbasicchemicalproduc- tion (Chapters 15–21). In detail, Chapter 1 (Iulianelli, Pirola, Comazzi, Galli, Manenti and Basile) delin- eates the importance of the water gas shift reaction, which is an equilibrium-limited reaction,moderatelyexothermic,thus,favoredatlowertemperature.Itcanbeconsid- eredthemostimportantreactioninvolvedinalltheothersystemreactions.Thechapter describes the recent advancements on this reaction in membrane reactors, paying particular attention to the hydrogen selective membrane utilization for high tempera- ture applications. In Chapter 2 (Basile, Liguori, Iulianelli) the relevant progress achievedincarryingoutthemethanesteamreformingreactionviamembranereactor technologyandtheeffectsofthemostimportantparametersaffectingthisreactionare

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Membrane Reactors for Energy Applications and Basic Chemical Production presents a discussion of the increasing interest in membrane reactors that has emerged in recent years from both the scientific and industrial communities, in particular their usage for energy applications and basic chemical pro
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