Oxygen Required in Aeration Tank given Oxygen Demand of Biomass Solution

STEP 0: Pre-Calculation Summary
Formula Used
Oxygen Required in Aeration Tank = ((Sewage Discharge*(Influent BOD-Effluent BOD))/Ratio of BOD to Ultimate BOD)-(Oxygen Demand of Biomass*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge)
Oa = ((Qs*(Qi-Q))/f)-(DO2*Qw*XR)
This formula uses 8 Variables
Variables Used
Oxygen Required in Aeration Tank - (Measured in Milligram per Day) - Oxygen Required in Aeration Tank is the amount of oxygen needed to sustain the aerobic microbial activity that breaks down organic matter in the wastewater.
Sewage Discharge - (Measured in Cubic Meter per Second) - Sewage Discharge is the flow rate of sewage when it is being discharged in the river.
Influent BOD - (Measured in Kilogram per Cubic Meter) - Influent BOD is the total amount of BOD which is present in the incoming sewage.
Effluent BOD - (Measured in Kilogram per Cubic Meter) - Effluent BOD is the amount of BOD present in the outing sewage.
Ratio of BOD to Ultimate BOD - Ratio of BOD to Ultimate BOD is the ratio of 5 days bod to ultimate bod.
Oxygen Demand of Biomass - Oxygen Demand of Biomass is the amount of oxygen required by the microorganisms to decompose organic matter present in biomass.
Volume of Wasted Sludge per day - (Measured in Cubic Meter per Second) - Volume of Wasted Sludge per day is the amount of sludge that is removed or wasted from a wastewater treatment process on a daily basis.
MLSS in Returned or Wasted Sludge - (Measured in Kilogram per Cubic Meter) - MLSS in Returned or Wasted Sludge is the mixed liquor suspended solids in returned sludge in terms of mg per liter.
STEP 1: Convert Input(s) to Base Unit
Sewage Discharge: 10 Cubic Meter per Second --> 10 Cubic Meter per Second No Conversion Required
Influent BOD: 13.2 Milligram per Liter --> 0.0132 Kilogram per Cubic Meter (Check conversion ​here)
Effluent BOD: 0.4 Milligram per Liter --> 0.0004 Kilogram per Cubic Meter (Check conversion ​here)
Ratio of BOD to Ultimate BOD: 3 --> No Conversion Required
Oxygen Demand of Biomass: 2.02 --> No Conversion Required
Volume of Wasted Sludge per day: 9.5 Cubic Meter per Second --> 9.5 Cubic Meter per Second No Conversion Required
MLSS in Returned or Wasted Sludge: 1.4 Milligram per Liter --> 0.0014 Kilogram per Cubic Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Oa = ((Qs*(Qi-Q))/f)-(DO2*Qw*XR) --> ((10*(0.0132-0.0004))/3)-(2.02*9.5*0.0014)
Evaluating ... ...
Oa = 0.0158006666666667
STEP 3: Convert Result to Output's Unit
1.82878086419753E-13 Kilogram per Second -->0.0158006666666667 Milligram per Day (Check conversion ​here)
FINAL ANSWER
0.0158006666666667 0.015801 Milligram per Day <-- Oxygen Required in Aeration Tank
(Calculation completed in 00.004 seconds)

Credits

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Created by Suraj Kumar
Birsa Institute of Technology (BIT), Sindri
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Meerut Institute of Engineering and Technology (MIET), Meerut
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Oxygen Required in Aeration Tank Calculators

Oxygen Required in Aeration Tank given Oxygen Demand and Ultimate BOD
​ LaTeX ​ Go Oxygen Required = ((Sewage Discharge*(Influent BOD-Effluent BOD))/(5 Days BOD/Ultimate BOD))-(Oxygen Demand of Biomass*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge)
Oxygen Required in Aeration Tank given Oxygen Demand of Biomass
​ LaTeX ​ Go Oxygen Required in Aeration Tank = ((Sewage Discharge*(Influent BOD-Effluent BOD))/Ratio of BOD to Ultimate BOD)-(Oxygen Demand of Biomass*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge)
Oxygen Required in Aeration Tank given Ultimate BOD
​ LaTeX ​ Go Oxygen Required = ((Sewage Discharge*(Influent BOD-Effluent BOD))/(5 Days BOD/Ultimate BOD))-(1.42*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge)
Oxygen Required in Aeration Tank
​ LaTeX ​ Go Oxygen Required in Aeration Tank = ((Sewage Discharge*(Influent BOD-Effluent BOD))/Ratio of BOD to Ultimate BOD)-(1.42*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge)

Oxygen Required in Aeration Tank given Oxygen Demand of Biomass Formula

​LaTeX ​Go
Oxygen Required in Aeration Tank = ((Sewage Discharge*(Influent BOD-Effluent BOD))/Ratio of BOD to Ultimate BOD)-(Oxygen Demand of Biomass*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge)
Oa = ((Qs*(Qi-Q))/f)-(DO2*Qw*XR)

What is Aeration Tank?

Aeration tank where air (or oxygen) is injected in the mixed liquor. Settling tank (usually referred to as "final clarifier" or "secondary settling tank") to allow the biological flocs (the sludge blanket) to settle, thus separating the biological sludge from the clear treated water.

How to Calculate Oxygen Required in Aeration Tank given Oxygen Demand of Biomass?

Oxygen Required in Aeration Tank given Oxygen Demand of Biomass calculator uses Oxygen Required in Aeration Tank = ((Sewage Discharge*(Influent BOD-Effluent BOD))/Ratio of BOD to Ultimate BOD)-(Oxygen Demand of Biomass*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge) to calculate the Oxygen Required in Aeration Tank, The Oxygen Required in Aeration Tank given Oxygen Demand of Biomass formula is defined as the calculation of oxygen requirement in aeration tank when we have prior information of oxygen demand of biomass. Oxygen Required in Aeration Tank is denoted by Oa symbol.

How to calculate Oxygen Required in Aeration Tank given Oxygen Demand of Biomass using this online calculator? To use this online calculator for Oxygen Required in Aeration Tank given Oxygen Demand of Biomass, enter Sewage Discharge (Qs), Influent BOD (Qi), Effluent BOD (Q), Ratio of BOD to Ultimate BOD (f), Oxygen Demand of Biomass (DO2), Volume of Wasted Sludge per day (Qw) & MLSS in Returned or Wasted Sludge (XR) and hit the calculate button. Here is how the Oxygen Required in Aeration Tank given Oxygen Demand of Biomass calculation can be explained with given input values -> 1.4E+9 = ((10*(0.0132-0.0004))/3)-(2.02*9.5*0.0014).

FAQ

What is Oxygen Required in Aeration Tank given Oxygen Demand of Biomass?
The Oxygen Required in Aeration Tank given Oxygen Demand of Biomass formula is defined as the calculation of oxygen requirement in aeration tank when we have prior information of oxygen demand of biomass and is represented as Oa = ((Qs*(Qi-Q))/f)-(DO2*Qw*XR) or Oxygen Required in Aeration Tank = ((Sewage Discharge*(Influent BOD-Effluent BOD))/Ratio of BOD to Ultimate BOD)-(Oxygen Demand of Biomass*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge). Sewage Discharge is the flow rate of sewage when it is being discharged in the river, Influent BOD is the total amount of BOD which is present in the incoming sewage, Effluent BOD is the amount of BOD present in the outing sewage, Ratio of BOD to Ultimate BOD is the ratio of 5 days bod to ultimate bod, Oxygen Demand of Biomass is the amount of oxygen required by the microorganisms to decompose organic matter present in biomass, Volume of Wasted Sludge per day is the amount of sludge that is removed or wasted from a wastewater treatment process on a daily basis & MLSS in Returned or Wasted Sludge is the mixed liquor suspended solids in returned sludge in terms of mg per liter.
How to calculate Oxygen Required in Aeration Tank given Oxygen Demand of Biomass?
The Oxygen Required in Aeration Tank given Oxygen Demand of Biomass formula is defined as the calculation of oxygen requirement in aeration tank when we have prior information of oxygen demand of biomass is calculated using Oxygen Required in Aeration Tank = ((Sewage Discharge*(Influent BOD-Effluent BOD))/Ratio of BOD to Ultimate BOD)-(Oxygen Demand of Biomass*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge). To calculate Oxygen Required in Aeration Tank given Oxygen Demand of Biomass, you need Sewage Discharge (Qs), Influent BOD (Qi), Effluent BOD (Q), Ratio of BOD to Ultimate BOD (f), Oxygen Demand of Biomass (DO2), Volume of Wasted Sludge per day (Qw) & MLSS in Returned or Wasted Sludge (XR). With our tool, you need to enter the respective value for Sewage Discharge, Influent BOD, Effluent BOD, Ratio of BOD to Ultimate BOD, Oxygen Demand of Biomass, Volume of Wasted Sludge per day & MLSS in Returned or Wasted Sludge and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Oxygen Required in Aeration Tank?
In this formula, Oxygen Required in Aeration Tank uses Sewage Discharge, Influent BOD, Effluent BOD, Ratio of BOD to Ultimate BOD, Oxygen Demand of Biomass, Volume of Wasted Sludge per day & MLSS in Returned or Wasted Sludge. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Oxygen Required in Aeration Tank = ((Sewage Discharge*(Influent BOD-Effluent BOD))/Ratio of BOD to Ultimate BOD)-(1.42*Volume of Wasted Sludge per day*MLSS in Returned or Wasted Sludge)
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