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EXAMPLE The reactor, defined by the data in Tables 2-1 and 2-2, takes place in a PAR. The molar flow rate of A at the
EXAMPLE The reactor, defined by the data in Tables 2-1 and 2-2, takes place in a PAR. The molar flow rate of A at the inlet is 0.4 mol/s. (a) First, use one of the integral formulas given in Appendix A.4 to determine the required PAR reactor volume to achieve 80% conversion. (b) Next, scan the area, which will give the volume of PAR needed to reach 80% conversion. (c) Construct a qualitative outline of the conversion, X, and reaction rate -rA along the length (volume) of the reactor (construct the table for X=0; 0.2; 0.4; 0.6; 0.8 and X-V and -Plot the graphs of rA-V).DKTR ve PAR tasarm denklemleri olan (2-13) ve (2-16)'yi hatrlarsak, reaktr hacminin karlkl rA, nn tersi (1/rA), V=(1/rA)(FA0X). Sonu olarak, reaktrleri byukln bulmak iin, Tablo 21 'deki hz verilerini Tablo 2-2'deki hzn tersine (1/rA) dntrebiliriz. DKTR ve PAR tasarm denklemleri olan (2-13) ve (2-16)'yi hatrlarsak, reaktr hacminin karlkl rA, nn tersi (1/rA), V=(1/rA)(FA0X). Sonu olarak, reaktrleri byukln bulmak iin, Tablo 21 'deki hz verilerini Tablo 2-2'deki hzn tersine (1/rA) dntrebiliriz
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