Chapter-14-The-Tanks-In-Series-Model--化学反应工程--教学课件.ppt
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1、化 学 反 应 工 程Chapter 14 The Tanks-In-Series ModelThis model can be used whenever the dispersion model is used;and for not too large a deviation from plug flow both models give identical results,for all practical purposes.Which model you use depends on your mood(心情)and taste.The tanks-in-series model i
2、s simple,can be used with any kinetics,and it can be extended without too much difficulty to any arrangement of compartments,with or without recycle.化 学 反 应 工 程Figure 14.1 The tanks-in-series model 化 学 反 应 工 程14.1 PULSE RESPONSE EXPERIMENTS AND THE RTD Figure 14.1 shows the system we are considering
3、.We also define Then and at any particular time,from Eq.11 in Chapter 11Chapter 11 化 学 反 应 工 程For the first tank.Consider a steady flow m3/s of fluid into and out of the first of these ideal mixed flow units of volume V1.At time t=0 inject a pulse of tracer into the vessel which when evenly(均匀地)dist
4、ributed in the vessel(and it is)has a concentration C0(C0=M/V1).At any time t after the tracer is introduced make a material balance,thus 化 学 反 应 工 程Since the area under this C/C0 versus t curve is(check this if you wish)it allows you to find the E curve;so one may write N=1(1)That is to say,for a s
5、ingle mixed flow reactor,its E function is 化 学 反 应 工 程Separating gives a first-order differential equation,which when integrated gives N=2(2)For the second tank where C1 enters,C2 leaves,a material balance gives 化 学 反 应 工 程For the Nth tank.Integration for the 3rd,4th,Nth tank becomes more complicate
6、d so it is simpler to do all of this by Laplace transforms.The RTDs,means and variances,both in time and dimensionless time were first derived by MacMulin and Weber(1935)and are summarized by Eq.3.化 学 反 应 工 程化 学 反 应 工 程Figure 14.2 RTD curves for the tanks-in-series model,Eq.3.化 学 反 应 工 程14.2 CHEMICA
7、L CONVERSIONFirst-Order Reaction Chapter 6Chapter 6 develops the conversion equation.Thus for first-order reactions in one tankfor N tanks in series A comparison with plug flow performance is given in Fig.6.5.化 学 反 应 工 程Second-Order Reaction of a Microfluid,For a microfluid flowing through N tanks i
8、n series Eq.6.8 gives(10)and Fig.6.6 compares the performance to that for plug flow.化 学 反 应 工 程All Other Reaction Kinetics of Microfluids Either solve the mixed flow equation for tank after tank a rather tedious(乏味的)process,but no problem today with our handy(手边的)slave,the computer.Or else we could
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