00995cam--2200349---450 99000617326020331620171024102142.0978-88-15-26348-3000617326USA01000617326(ALEPH)000617326USA0100061732620140626d2016----km-y0itay50------baitaIT||||||||001yyFordismistoria politica della produzione di massaBruno SettisBolognaIl Mulino2016317 p.24 cmStudi e Ricerche7042001Studi e Ricerche, 704Produzione in serieBNCF306.360904SETTIS,Bruno990006173260203316306.360 SET 183856 G.306.360 SET391642BKECOFIORELLA9020161013USA011031FIORELLA9020161013USA011034Fordismi1393969UNISA05476nam 2200697 450 991014064370332120210209143938.01-118-44937-11-118-44939-8(CKB)2670000000616821(EBL)2038559(OCoLC)906172180(SSID)ssj0001482657(PQKBManifestationID)12627793(PQKBTitleCode)TC0001482657(PQKBWorkID)11412884(PQKB)10402630(PQKBManifestationID)16037043(PQKB)22906423(MiAaPQ)EBC4035471(DLC) 2015013228(MiAaPQ)EBC2038559(PPN)190654589(EXLCZ)99267000000061682120151109h20152015 uy 0engur|n|---|||||txtccrProcess intensification for sustainable energy conversion /edited by Fausto Gallucci and Martin van Sint AnnalandChichester, England :Wiley,2015.©20151 online resource (408 p.)Description based upon print version of record.1-118-44938-X 1-118-44935-5 Includes bibliographical references at the end of each chapters and index.Cover; Title Page; Copyright; Contents; Preface; List of Contributors; Chapter 1 Introduction; References; Chapter 2 Cryogenic CO2 Capture; 2.1 Introduction-CCS and Cryogenic Systems; 2.1.1 Carbon Capture and Storage; 2.1.2 Cryogenic separation; 2.2 Cryogenic Packed Bed Process Concept; 2.2.1 Capture Step; 2.2.2 CO2 Recovery Step; 2.2.3 H2O Recovery and Cooling Step; 2.3 Detailed Numerical Model; 2.3.1 Model Description; 2.3.2 Simulation Results; 2.3.3 Simplified Model: Sharp Front Approach; 2.3.4 Model Description; 2.3.5 Process Analysis; 2.3.6 Initial Bed Temperature2.3.7 CO2 Inlet Concentration2.3.8 Inlet Temperature; 2.3.9 Bed Properties; 2.4 Small-Scale Demonstration (Proof of Principle); 2.4.1 Results of the Proof of Principle; 2.5 Experimental Demonstration of the Novel Process Concept in a Pilot-Scale Set-Up; 2.5.1 Experimental Procedure; 2.5.2 Experimental Results; 2.5.3 Simulations for the Proof of Concept; 2.5.4 Radial Temperature Profiles; 2.5.5 Influence of the Wall; 2.6 Techno-Economic Evaluation; 2.6.1 Process Evaluation; 2.6.2 Parametric Study; 2.6.3 Comparison with Absorption and Membrane Technology; 2.7 Conclusions2.8 Note for the ReaderList of symbols; Greek letters; Subscripts; References; Chapter 3 Novel Pre-Combustion Power Production: Membrane Reactors; 3.1 Introduction; 3.2 The Membrane Reactor Concept; 3.3 Types of Reactors; 3.3.1 Packed Bed Membrane Reactors; 3.3.2 Fluidized Bed Membrane Reactors; 3.3.3 Membrane Micro-Reactors; 3.4 Conclusions; 3.5 Note for the reader; References; Chapter 4 Oxy Fuel Combustion Power Production Using High Temperature O2 Membranes; 4.1 Introduction; 4.2 MIEC Perovskites as Oxygen Separation Membrane Materials for the Oxy-fuel Combustion Power Production4.3 MIEC Membrane Fabrication4.4 High-temperature ceramic oxygen separation membrane system on laboratory scale; 4.4.1 Oxygen permeation measurements and sealing dense MIEC ceramic membranes; 4.4.2 BaxSr1-xCo1-xFeyO3-δ and LaxSr1-xCo1-yFeyO3-δ Membranes; 4.4.3 Chemical Stability of Perovskite Membranes Under Flue-Gas Conditions; 4.4.4 CO2-Tolerant MIEC Membranes; 4.5 Integration of High-Temperature O2 Transport Membranes into Oxy-Fuel Process: Real World and Economic Feasibility; 4.5.1 Four-End and Three-End Integration Modes; 4.5.2 Pilot-Scale Membrane Systems4.5.3 Further Scale-Up of O2 Production SystemsReferences; Chapter 5 Chemical Looping Combustion for Power Production; 5.1 Introduction; 5.2 Oxygen carriers; 5.2.1 Nickel-based OCs; 5.2.2 Iron-based OCs; 5.2.3 Copper-based OCs; 5.2.4 Manganese-based OCs; 5.2.5 Other Oxygen Carriers; 5.2.6 Sulfur Tolerance; 5.3 Reactor Concepts; 5.3.1 Interconnected Fluidized Bed Reactors; 5.3.2 Packed Bed Reactors; 5.3.3 Rotating Reactor; 5.4 The Integration of CLC Reactor in Power Plant; 5.4.1 Natural Gas Power Plant with CLC; 5.4.2 Coal-Based Power Plant with CLC5.4.3 Comparison between CLC in packed beds and circulated fluidized bedsThis book addresses the application of process intensification to sustainable energy production, combining two very topical subject areas. Due to the increasing process of petroleum, sustainable energy production technologies must be developed, for example bioenergy, blue energy, chemical looping combustion, concepts for CO2 capture etc. Process intensification offers significant competitive advantages, because it provides more efficient processes, leading to outstanding cost reduction, increased productivity and more environment-friendly processes.Chemical processesRenewable energy sourcesGreen chemistryChemical processes.Renewable energy sources.Green chemistry.660/.28Gallucci FaustoSint Annaland Martin vanMiAaPQMiAaPQMiAaPQBOOK9910140643703321Process intensification for sustainable energy conversion2006637UNINA03217 am 2200673 n 450 9910296439203321201812052-35412-320-510.4000/books.pupvd.6305(CKB)4100000007223746(FrMaCLE)OB-pupvd-6305(oapen)https://directory.doabooks.org/handle/20.500.12854/56781(PPN)233323333(EXLCZ)99410000000722374620181218j|||||||| ||| 0freuu||||||m||||txtrdacontentcrdamediacrrdacarrierPouvoirs municipaux et pouvoir royal en Roussillon et en Languedoc, XVIIe-XVIIIe siècle Premières Journées d’histoire et histoire du droit et des institutions de l’Université de Perpignan /Gilbert LarguierPerpignan Presses universitaires de Perpignan20181 online resource (150 p.) 2-914518-91-9 Interroger les pouvoirs locaux, leur organisation, leur fonctionnement, leurs relations avec le pouvoir royal, reste un thème inépuisable encore neuf, surtout si l’on se place dans une perspective comparative, ce qu’offre le cas du Roussillon annexé en 1659 et du Languedoc intégré trois siècles plus tôt au royaume de France. Les différences entre les deux provinces sont profondes en effet derrière les apparences. Leur analyse fait redécouvrir le statut des individus, leur droit à la représentation, les stratégies déployées pour accéder au pouvoir, bénéficier des avantages qu’il confère, éviter les charges qu’impose la qualité de citoyen. Dépasser les cadres institutionnels, relativement stables, permet de se placer au plus près des réalités, au cœur des relations sociales, du fonctionnement de l’État, infiniment plus complexe et nuancé qu’on ne l’a longtemps cru. L’exemple des deux provinces intéresse le royaume de France dans son ensemble.HistoryRoussillonLanguedocpouvoir royalhistoire du droitadministration communaleRoussillonpouvoir royaladministration communaleLanguedochistoire du droitHistoryRoussillonLanguedocpouvoir royalhistoire du droitadministration communaleArnaud Agnès1286484Cantarel John1282133Chevalier Caroline1286485Degage Alain1282123Durand Stéphane1286486Joubes Delphine1286487Juhel Christophe1282135Larguier Gilbert938495Perche Caroline1282136Rojinsky Nolwen1286488Sala Céline1286489Larguier Gilbert938495FR-FrMaCLEBOOK9910296439203321Pouvoirs municipaux et pouvoir royal en Roussillon et en Languedoc, XVIIe-XVIIIe siècle3019903UNINA