- A When Considering Aeration Of Chemostats Describe The Different Steps That Contribute To The Overall Oxygen Transfer 1 (115.49 KiB) Viewed 9 times
(a) When considering aeration of chemostats, describe the different steps that contribute to the overall oxygen transfer
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(a) When considering aeration of chemostats, describe the different steps that contribute to the overall oxygen transfer
(a) When considering aeration of chemostats, describe the different steps that contribute to the overall oxygen transfer process. In each case, identify the parameters and / or factors that determine the transfer rate for that step. [8 marks] (b) A simple dynamic test was carried out to determine the oxygen mass transfer characteristics of a chemostat. Once the chemostat was at steady state, the air flow was switched off for a known amount of time, and then restarted. The dissolved oxygen concentration after restarting the air flow is given in Table Q4-1 below. Table Q4-1 Dissolved O2 concentration upon restarting air flow Time [min] Dissolved O2 Concentration [gm-?] 1.50 1 3 3.62 5 7 9 11 5.47 6.34 6.77 7.33 7.66 7.70 8.00 13 15 o 1 Given that: roverall = k_ a' (Coz - Coz) -rx Yx/02 where roverall is in g m-3 min-, determine the value of kla'. [8 marks] (c) When working at laboratory scale, the oxygen transfer within a Miniature Stirred Bioreactor is said to be better than that within a standard Erlenmeyer flask. Why is this the case? [4 marks]