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Consider the data of the following highly exothermic reaction A B: C/10-2-M t/min 22.36 0 17.90 10 15.81 20 14.14 30 a) Use the method

Consider the data of the following highly exothermic reaction A B: C/10-2-M t/min 22.36 0 17.90 10 15.81 20 14.14 30 a) Use the method of finite differences together with the method of least squares to determine the reaction order (round to the integer) and the rate constant. b) You want to calculate the volume of a reactor where a global conversion is achieved of 98% for the reaction of part a). c) The plant does not have enough budget and space to build a cooling system that maintains optimal conditions in a single reactor where this conversion is achieved, with a constant inlet volumetric flow of 5 L/s and concentration of 1.2 M. It is possible to build two smaller reactors: a first reactor, of the CSTR type, where a conversion of 75% is obtained, and a second reactor, of the PFR type, where the desired overall conversion of 98% is reached. The output flow from the first reactor is the feed to the second. image text in transcribed
1.- Consider the data of the following highly exothermic reaction AB : a) Use the method of finite differences together with the method of least squares to determine the reaction order (round to the integer) and the rate constant. b) You want to calculate the volume of a reactor where a global conversion is achieved of 98% for the reaction of part a). c) The plant does not have enough budget and space to build a cooling system that maintains optimal conditions in a single reactor where this conversion is achieved, with a constant inlet volumetric flow of 5L /s and concentration of 1.2M. It is possible to build two smaller reactors: a first reactor, of the CSTR type, where a conversion of 75% is obtained, and a second reactor, of the PFR type, where the desired overall conversion of 98% is reached. The output flow from the first reactor is the feed to the second. Using the data provided, calculate the volume of both reactors, in m3

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