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6. During an experiment to study the soption performance of ion exchange column packed with spherical ion exchange resin, the following data are obtained: Operational
6. During an experiment to study the soption performance of ion exchange column packed with spherical ion exchange resin, the following data are obtained: Operational data: Feed flow rate: 12 cm3 /h Amount of resin packed into the column: 2 g a) Plot the breakthrough curve. b) Calculate the total capacity of the column as mg Mn+ -sorbed. c) For a breakthrough concentration of 0.010 mg/L, calculate the breakthrough capacity of the column as mg Mn+ -sorbed.
6. During an experiment to study the soption performance of ion exchange column packed with spherical ion exchange resin, the following data are obtained: Qperational data: Feed flow rate: 12cm3/h Amount of resin packed into the column: 2g a) Plot the breakthrough curve. b) Calculate the total capacity of the column as mgMn+-sorbed. c) For a breakthrough concentration of 0.010mg/L, calculate the breakthrough capacity of the column as mgMn+-sorbed. Simpson's Method: I=3x[f(a)+f(b)+4j=1oddn1fj+2j=2evenn2fj] 6. During an experiment to study the soption performance of ion exchange column packed with spherical ion exchange resin, the following data are obtained: Qperational data: Feed flow rate: 12cm3/h Amount of resin packed into the column: 2g a) Plot the breakthrough curve. b) Calculate the total capacity of the column as mgMn+-sorbed. c) For a breakthrough concentration of 0.010mg/L, calculate the breakthrough capacity of the column as mgMn+-sorbed. Simpson's Method: I=3x[f(a)+f(b)+4j=1oddn1fj+2j=2evenn2fj]
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