反应工程基础程易chpt13-internaldiffu课件(PPT 60页).pptx
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1、Summary of Chapter 121.The molar flux of A in a binary mixture of A and B is a)For EMCD or for dilute concentration of the solute,a)For diffusion through a stagnant gas,a)For negligible diffusion,1VWWACyAA)1ln(AABAycDWAABAycD W)(BAAAABAWWyycDW第1页,共60页。Summary(contd)2.The rate of mass transfer from t
2、he bulk fluid to a boundary at concentration CAs is3.The Sherwood and Schmidt numbers are,respectively,4.If a heat transfer correlation exists for a given system and geometry,the mass transfer correlation may be found by replacing the Nusselt number by the Sherwood number and the Prandtl number by t
3、he Schmidt number in the existing heat transfer correlation.2ABpShDdkcABScDv)(AAAsbcCCkW第2页,共60页。Summary(contd)5.Increasing the gas-phase velocity and decreasing the particle size will increase the overall rate of reaction for reactions that are externally mass transfer-limited.6.The conversion for
4、externally mass transfer-limited reactions can be found from the equation7.The shrinking core model states that the time to regenerate a coked catalyst panicle is320A06ccceRtD CLUakXcc11ln2 31 21/21/3AB1 61 2p20.6ReSc20.6cDUkd第3页,共60页。4Chapter 13Diffusion and ReactionsDepartment of Chemical Engineer
5、ingTiefeng W第4页,共60页。5ObjectiveslDescribe diffusion and reactions in porous catalyst and in Tissue Engineering.lDefine the Thiele modules and the effectiveness factor.lDescribe the regions of reaction limitations and internal diffusion limitations and the conditions that affect them.第5页,共60页。6第6页,共6
6、0页。712.1 Diffusion and Reaction in Spherical Catalyst Pellets12.1.1 Effective DiffusivitylThe pores in the pellet are not straight and cylindrical;rather,they are a series of tortuous,interconnecting paths of pore bodies and pore throats with varying cross-sectional areas.lIt is fruitful to describe
7、 diffusion within each and every one of the tortuous pathways individually.lDefine an effective diffusion coefficient so as to describe the average diffusion taking place at any position r in the pellet.lThe radial flux WAr will be based on the total area(voids and soIid)normal to diffusion transpor
8、t(i.e.,4r2)rather than void area alone.lThis basis for WAr is made possible by proper definition of the effective diffusivity De.第7页,共60页。Effective DiffusivityThe effective diffusivity accounts for the fact that:lNot all of the area normal to the direction of the flux is available(i.e.,the area occu
9、pied by solids)for the molecules to diffuse(p).lThe paths are tortuous().lThe pores are of varying cross-sectional areas(c).8第8页,共60页。Effective Diffusivity9cwhere Actual distance a molecule travels btw 2 pointstortousityShortest distance btw 2 pointsVolume of void spacepellet porosityTotal volume(vo
10、ids and solids)Constriction factorpABckcppeDDD tortuosity第9页,共60页。Diffusion Mechanism in Pore Channels10第10页,共60页。Molecular diffusion11 Simple diffusion in the gas space of porous structure Molecule mean free path is smaller larger than pore diameter Collisions between molecules dominate over those
11、between molecule and the pore wall Valid at high pressures and in large pores Molecular diffusion is described by Ficks law第11页,共60页。Knudsen diffusion12 Collisions with pore walls dominate over those with other molecules Valid for low pressures and in narrow poresk23aDr u8/uRTMk283arRTDM第12页,共60页。Co
12、nfigurational diffusion13 Pores with molecular dimensions(0.3-1 nm)Strong interaction between molecule and the pore wallImportant for microporous catalysts,e.g.ZeolitesHigh resolution TEM picture of ZSM-5第13页,共60页。Effect of configurational diffusion on reactionConfigurational diffusion对二甲苯分子直径0.57邻、
13、间二甲苯分子直径0.63第14页,共60页。1512.1.2 Differential equation describing diffusion and reactionA steady-state mole balance on species AIn Out+Generation =AccumulationrrrWr2A4at in A of raterrrrWrr2A4at out A of rate rrrm2cA4shell heA within t of generation of rate02cA2ArrdrrWdr 04442cA2A2ArrrrWrWmrrrrrShell
14、balance on a catalyst pellet第15页,共60页。16For equal molar counter diffusion at constant total concentration:drdCDdrdycDWAeAeAr02cA2ArrdrrWdr0)/(A2c2errdrrdrdCDdAWe now need to incorporate the rate law.第16页,共60页。The rate of reaction in different forms17Rate per unit volume:Rate per unit mass of catalys
15、t:Rate per unit surface area:)smol/dm(3Ar)scat mol/g(Ar)smol/m(2 ArThe surface area at the catalyst per unit mass of catalyst,)cat/gm(2aSTypical value of Sa,150m2/g222AnAAanAAcanArk CrS k CrS k Crate equation definitions第17页,共60页。180)/(Aca 2e2nknACSkrdrdrdCDrdn02AeA2A2nnCDkdrdCrdrCdThe boundary cond
16、itions are:RrCCrCsat 0at finite is AAA第18页,共60页。1912.1.3 Dimensionless form02AeA2A2nnCDkdrdCrdrCd02222nnddddThe boundary conditions are:1at 10at finite is RrCCs ,AAe1-A22DCRknsnn第19页,共60页。20The Thiele modulus n When the Thiele modulus is large,internal diffusion usually limits the overall rate of re
17、action;When it is small,the surface reaction is usually rate-limiting;212AeeAsurface reaction rate(0)/diffusion ratennnAsnsnsk R Ck RCDDCR第20页,共60页。For a first-order reaction21A 1 ACkr smsmm23 1k221220dddd e1eac 11DkRDSkRs1gmmgsm23ac 11Skksm2eDB.C.1:1 at 1B.C.2:is finite at 0 第21页,共60页。2212.1.4 Solu
18、tion to the different equation for a first-order reaction1111coshsinhyAB 1111coshsinhAB A1A1sinh1sinhsCC y221220dddd 第22页,共60页。Thiele Modulusd 11sinh 1sinh 100.5100.51d 1d 2d 5d 20AsACCSmall n Medium n Large n 第23页,共60页。12.2 Internal Effectiveness Factor24AActual overall rate of reactionRate of reac
19、tion that would result if entire interior surface were exposed to the external pellet surface conditions,ssCTAAAAAAsssrrrrrrspspsMMVrVrrrAAAAAAE.W.Thiele(1939).“Relation between Catalytic Activity and Size of Particle”Industrial and Engineering Chemistry,31,916-920第24页,共60页。251coth31121AAsMM3AA34RkC
20、MssAeA14sdMRD Cd111112111 1coshsinh1(coth1)sinhsinhddActual overall rate of reaction(moles per unit time):Rate of reaction that would results if entire interior surface were exposed to the external pellet surface conditions:11sinh1sinh External surface第25页,共60页。第26页,共60页。Physical Interpretation of A
21、nalysis27第27页,共60页。28?第28页,共60页。Effectiveness factor for different shape of catalyst29第29页,共60页。Effectiveness factor for n order reaction30For large values of the Thiele modulus for an n order reaction,)/2-(1Ae2/12/1312312nsnnCkDRnn13For large values of the Thiele modulus for an first order reaction
22、,0.11101000.11 3(coth)/12 3/第30页,共60页。31When a reaction is exothermic and non-isothemal,the effectiveness factor can be significantly greater than 1.Multiple stead-states can exist for values of the Thiele modulus less than 1 and when is greater than approximately 0.2.There will be no multiple stead
23、y stares when the criterion developed by Luss is fulfilled.4(1)Arrhenius numbersERTmaxssTTT第31页,共60页。32Rate without any diffusion effects=1 for no diffusion resistanceThis sphere expression is a good approximation for all particle shapesCharacteristic length=Effective factor,which accounts for the r
24、esistance to pore diffusion1=Thiele modulus,useful for predicting reactor behavior from known kinetic information,thus known kCWP=Weisz modulus,useful for predicting experiments since it only includes observationsEffective diffusion coefficient in porous solidsAA1A()ssrrk C 11213coth111ekRDAse2obsA,
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