LEADER 00752nam0 22002171i 450 001 UON00221234 005 20231205103415.859 100 $a20030730d1936 |0itac50 ba 101 $acze 102 $aCZ 105 $a|||| ||||| 200 1 $aRozchod!$fKarel Konrád 210 $aPraha$cMelantrich$d1936. 326 p. ; 20 cm. 676 $a891.86$cLetteratura ceca$v21 700 1$aKONRAD$bKarel$3UONV134046$0685326 801 $aIT$bSOL$c20240220$gRICA 899 $aSIBA - SISTEMA BIBLIOTECARIO DI ATENEO$2UONSI 912 $aUON00221234 950 $aSIBA - SISTEMA BIBLIOTECARIO DI ATENEO$dSI CECO A KONR 0001 $eSI MR 7283 5 0001 996 $aRozchod$91266999 997 $aUNIOR LEADER 05171nam 2200637Ia 450 001 9911006646603321 005 20200520144314.0 010 $a9780444516053 010 $a1-280-63817-6 010 $a9786610638178 010 $a0-08-045546-8 035 $a(CKB)1000000000358064 035 $a(EBL)269562 035 $a(OCoLC)171131769 035 $a(SSID)ssj0000118722 035 $a(PQKBManifestationID)12034954 035 $a(PQKBTitleCode)TC0000118722 035 $a(PQKBWorkID)10058264 035 $a(PQKB)10844201 035 $a(MiAaPQ)EBC269562 035 $a(EXLCZ)991000000000358064 100 $a20050923d2005 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aCatalytic kinetics /$fDmitry Murzin, Tapio Salmi 210 $aAmsterdam $cElsevier$d2005 215 $a1 online resource (493 p.) 300 $aDescription based upon print version of record. 311 $a0-444-51605-0 320 $aIncludes bibliographical references and index. 327 $aCover; Preface; Setting the scene; History; Catalysis; Formal kinetics; Acquisition of kinetic data; Batch reactors; CSTR; Plug flow reactors; Gradient-free recycle reactors; Kinetics and thermodynamics; Catalysis; Homogeneous catalysis; Gas-phase catalysis; Acid-base catalysis; Catalysis by transition metals; Biocatalysis (catalysis by enzymes); Heterogeneous catalysis; Classification; Kinetics in heterogeneous catalysis; Elementary steps; Adsorption isotherms - ideal surfaces; Adsorption isotherms - real surfaces; Adsorption isotherms - induced nonuniformity 327 $aAdsorption isotherms - multicentered adsorptionDifferent adsorption modes; Elementary reactions; Reaction rate theory; Reaction mechanism; Quasi-equilibrium approximation; Relationship between thermodynamics and kinetics; Transition state theory of surface reactions; Rates of reactions on nonideal surfaces; Biographical nonuniformity; Lateral interactions; Limited mobility of adsorbed species; Determenistic and stochastic models; Micro kinetic modelling; Compensation effect; Complex reactions; Steady-state kinetics of complex reactions; Basic routes of complex reactions 327 $aSingle-route steady-state reactionTopological analysis of complex reactions; Kinetic aspects of selectivity; Parallel reactions : kinetic coupling; Reduction of complexity; Homogeneous catalytic kinetics; Homogeneous acid-base catalysis; Nucleophilic catalysis; Catalysis by metal ions; Catalysis by organometallic compexes; Single catalytic cycles; Ligand deficient catalysis and inhibition; Multiple cycles; Enzymatic kinetics; Enzymatic catalysis; Cooperative kinetics; Inhibition; Effects of pH; Heterogeneos systems/immobilized enzymes; Heterogeneous catalytic kinetics 327 $aReactions on ideal surfacesReactions on nonideal surfaces; Intrinsic nonuniformity; Induced nonuniformity; Thermodynamic considerations of kinetics on non-ideal surfaces; Ammonia synthesis; Linear sequence on nonuniform surfaces; Kinetic considerations of optimum catalyst for two-step sequence; Selectivity; Polyatomic nature of reactants and coverage dependent adsorption mode; Ionic species; Transfer of labeled atoms in heterogeneous catalytic reactions; Electrocatalytic kinetics; Combined heterogeneous-homogeneous reactions; Dynamic catalysis; Transient kinetics; Relaxation to steady state 327 $aRelaxation methodsTemperature programmed desorption; Oscillations; Homogeneous catalysis; Enzymatic catalysis; Heterogeneous catalysis; Activity changes (deactivation); Heterogeneous catalysis; Coking; Batch reactors; Multilayer coking; Poisoning; Enhancement of activity while deactivating; Enzyme deactivation; Mass transfer and catalytic reactions; Catalytic multi-phase systems; Simultaneous reaction and diffusion in fluid films and in porous materials; Gas-liquid reactions; Slow reactions; Reactions with a finite liquid film reaction velocity; Zero-order reactions; First order reactions 327 $aUtilization factor 330 $aChemistry and chemical technology have been at the heart of the revolutionary developments of the 20th century. The chemical industry has a long history of combining theory (science) and practice (engineering) to create new and useful products. Worldwide, the process industry (which includes chemicals, petrochemicals, petroleum refining, and pharmaceuticals) is a huge, complex, and interconnected global business with an annual production value exceeding 4 trillion dollars. Although in industry special focus is in heterogeneous catalysis, homogeneous, enzymatic, photochemical and electrochemica 606 $aCatalysis 606 $aChemical kinetics 615 0$aCatalysis. 615 0$aChemical kinetics. 676 $a541.395 676 $a541.395 700 $aMurzin$b Dmitry$01758379 701 $aSalmi$b Tapio$0762627 712 02$aScienceDirect (Servicio en línea) 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9911006646603321 996 $aCatalytic kinetics$94393115 997 $aUNINA