BOD in given Volume of Methane Gas Produced Solution

STEP 0: Pre-Calculation Summary
Formula Used
BOD In = (Volume of Methane/5.62)+BOD Out+(1.42*Volatile Solids Produced)
BODin = (VCH4/5.62)+BODout+(1.42*Px)
This formula uses 4 Variables
Variables Used
BOD In - (Measured in Kilogram per Second) - BOD In in anaerobic digester design lies in its role as an indicator of the organic load present in the feedstock. High BOD levels suggest a greater concentration of organic matter.
Volume of Methane - (Measured in Cubic Meter per Second) - Volume of Methane refers to the amount of methane gas produced, stored, or utilized, typically measured in cubic meters (m³) or cubic feet (ft³).
BOD Out - (Measured in Kilogram per Second) - BOD Out referred as the amount of dissolved oxygen exits anaerobic digester.
Volatile Solids Produced - (Measured in Kilogram per Second) - Volatile Solids Produced refers to the organic fraction of the total solids present in the sludge.
STEP 1: Convert Input(s) to Base Unit
Volume of Methane: 95.54 Cubic Meter per Day --> 0.00110578703703704 Cubic Meter per Second (Check conversion ​here)
BOD Out: 4.9 Kilogram per Day --> 5.6712962962963E-05 Kilogram per Second (Check conversion ​here)
Volatile Solids Produced: 100 Kilogram per Day --> 0.00115740740740741 Kilogram per Second (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
BODin = (VCH4/5.62)+BODout+(1.42*Px) --> (0.00110578703703704/5.62)+5.6712962962963E-05+(1.42*0.00115740740740741)
Evaluating ... ...
BODin = 0.00189699074074074
STEP 3: Convert Result to Output's Unit
0.00189699074074074 Kilogram per Second -->163.9 Kilogram per Day (Check conversion ​here)
FINAL ANSWER
163.9 Kilogram per Day <-- BOD In
(Calculation completed in 00.007 seconds)

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Design of an Anaerobic Digester Calculators

Influent Sludge Flow Rate given Volume Required for Anaerobic Digester
​ LaTeX ​ Go Influent Sludge Flow Rate = (Volume/Hydraulic Retention Time)
Volume Required for Anaerobic Digester
​ LaTeX ​ Go Volume = (Hydraulic Retention Time*Influent Sludge Flow Rate)
Hydraulic Retention Time given Volume Required for Anaerobic Digester
​ LaTeX ​ Go Hydraulic Retention = (Volume/Influent Sludge Flow Rate)
Volumetric Loading in Anaerobic Digester
​ LaTeX ​ Go Volumetric Loading = (BOD per Day/Volumetric Flow Rate)

BOD in given Volume of Methane Gas Produced Formula

​LaTeX ​Go
BOD In = (Volume of Methane/5.62)+BOD Out+(1.42*Volatile Solids Produced)
BODin = (VCH4/5.62)+BODout+(1.42*Px)

What is BOD?

BOD is the amount of dissolved oxygen needed by aerobic biological organisms to break down organic material present in a given water sample at certain temperature over a specific time period.

How to Calculate BOD in given Volume of Methane Gas Produced?

BOD in given Volume of Methane Gas Produced calculator uses BOD In = (Volume of Methane/5.62)+BOD Out+(1.42*Volatile Solids Produced) to calculate the BOD In, The BOD in given Volume of Methane Gas Produced formula is defined as the critical parameter used to gauge the amount of organic matter in water, which indicates the level of pollution. It measures the amount of dissolved oxygen required by aerobic microorganisms to decompose the organic material present in a water sample over a specified period, typically five days at 20°C. BOD In is denoted by BODin symbol.

How to calculate BOD in given Volume of Methane Gas Produced using this online calculator? To use this online calculator for BOD in given Volume of Methane Gas Produced, enter Volume of Methane (VCH4), BOD Out (BODout) & Volatile Solids Produced (Px) and hit the calculate button. Here is how the BOD in given Volume of Methane Gas Produced calculation can be explained with given input values -> 1.4E+7 = (0.00110578703703704/5.62)+5.6712962962963E-05+(1.42*0.00115740740740741).

FAQ

What is BOD in given Volume of Methane Gas Produced?
The BOD in given Volume of Methane Gas Produced formula is defined as the critical parameter used to gauge the amount of organic matter in water, which indicates the level of pollution. It measures the amount of dissolved oxygen required by aerobic microorganisms to decompose the organic material present in a water sample over a specified period, typically five days at 20°C and is represented as BODin = (VCH4/5.62)+BODout+(1.42*Px) or BOD In = (Volume of Methane/5.62)+BOD Out+(1.42*Volatile Solids Produced). Volume of Methane refers to the amount of methane gas produced, stored, or utilized, typically measured in cubic meters (m³) or cubic feet (ft³), BOD Out referred as the amount of dissolved oxygen exits anaerobic digester & Volatile Solids Produced refers to the organic fraction of the total solids present in the sludge.
How to calculate BOD in given Volume of Methane Gas Produced?
The BOD in given Volume of Methane Gas Produced formula is defined as the critical parameter used to gauge the amount of organic matter in water, which indicates the level of pollution. It measures the amount of dissolved oxygen required by aerobic microorganisms to decompose the organic material present in a water sample over a specified period, typically five days at 20°C is calculated using BOD In = (Volume of Methane/5.62)+BOD Out+(1.42*Volatile Solids Produced). To calculate BOD in given Volume of Methane Gas Produced, you need Volume of Methane (VCH4), BOD Out (BODout) & Volatile Solids Produced (Px). With our tool, you need to enter the respective value for Volume of Methane, BOD Out & Volatile Solids Produced 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 BOD In?
In this formula, BOD In uses Volume of Methane, BOD Out & Volatile Solids Produced. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • BOD In = (Volatile Solids Produced/Yield Coefficient)*(1-Endogenous Coefficient*Mean Cell Residence Time)+BOD Out
  • BOD In = (BOD Out*100+142*Volatile Solids Produced)/(100-Percent Stabilization)
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