Volatile Solids produced given Percent Stabilization Solution

STEP 0: Pre-Calculation Summary
Formula Used
Volatile Solids produced = (1/1.42)*(BOD in-BOD out-((Percent stabilization*BOD in)/100))
Px = (1/1.42)*(BODin-BODout-((%S*BODin)/100))
This formula uses 4 Variables
Variables Used
Volatile Solids produced - (Measured in Kilogram per Second) - Volatile solids produced is defined in terms of mass flow rate.
BOD in - (Measured in Kilogram per Second) - BOD in means the amount of dissolved oxygen enter anaerobic digester.
BOD out - (Measured in Kilogram per Second) - BOD out means the amount of dissolved oxygen exits anaerobic digester.
Percent stabilization - Percent stabilization is defined as percentage of bod removal.
STEP 1: Convert Input(s) to Base Unit
BOD in: 150 Kilogram per Day --> 0.00173611111111111 Kilogram per Second (Check conversion here)
BOD out: 5 Kilogram per Day --> 5.78703703703704E-05 Kilogram per Second (Check conversion here)
Percent stabilization: 0.8 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Px = (1/1.42)*(BODin-BODout-((%S*BODin)/100)) --> (1/1.42)*(0.00173611111111111-5.78703703703704E-05-((0.8*0.00173611111111111)/100))
Evaluating ... ...
Px = 0.00117207876890975
STEP 3: Convert Result to Output's Unit
0.00117207876890975 Kilogram per Second -->101.267605633803 Kilogram per Day (Check conversion here)
FINAL ANSWER
101.267605633803 101.2676 Kilogram per Day <-- Volatile Solids produced
(Calculation completed in 00.004 seconds)

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Birsa Institute of Technology (BIT), Sindri
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20 Design of an Anaerobic Digester Calculators

Endogenous Coefficient given Quantity of Volatile Solids
Go Endogenous coefficient = (1/Mean Cell Residence Time)-(Yield coefficient*(BOD in-BOD out)/(Volatile Solids produced*Mean Cell Residence Time))
Mean Cell Residence Time given Quantity of Volatile Solids
Go Mean Cell Residence Time = (1/Endogenous coefficient)-(Yield coefficient*(BOD in-BOD out)/(Volatile Solids produced*Endogenous coefficient))
Yield Coefficient given Quantity of Volatile Solids
Go Yield coefficient = (Volatile Solids produced*(1-Mean Cell Residence Time*Endogenous coefficient))/(BOD in-BOD out)
Quantity of Volatile Solids Produced Each Day
Go Volatile Solids produced = (Yield coefficient*(BOD in-BOD out))/(1-Endogenous coefficient*Mean Cell Residence Time)
BOD Out given Quantity of Volatile Solids
Go BOD out = BOD in-(Volatile Solids produced/Yield coefficient)*(1-Endogenous coefficient*Mean Cell Residence Time)
BOD in given Quantity of Volatile Solids
Go BOD in = (Volatile Solids produced/Yield coefficient)*(1-Endogenous coefficient*Mean Cell Residence Time)+BOD out
Volatile Solids produced given Percent Stabilization
Go Volatile Solids produced = (1/1.42)*(BOD in-BOD out-((Percent stabilization*BOD in)/100))
BOD Out given Percent Stabilization
Go BOD out = (BOD in*100-142*Volatile Solids produced-Percent stabilization*BOD in)/100
Percent Stabilization
Go Percent stabilization = ((BOD in-BOD out-1.42*Volatile Solids produced)/BOD in)*100
BOD in given Percent Stabilization
Go BOD in = (BOD out*100+142*Volatile Solids produced)/(100-Percent stabilization)
Volatile Solids produced given Volume of Methane Gas produced
Go Volatile Solids produced = (1/1.42)*(BOD in-BOD out-(Volume of methane/5.62))
BOD Out given Volume of Methane Gas Produced
Go BOD out = (BOD in-(Volume of methane/5.62)-(1.42*Volatile Solids produced))
BOD in given Volume of Methane Gas Produced
Go BOD in = (Volume of methane/5.62)+BOD out+(1.42*Volatile Solids produced)
Volume of Methane Gas Produced at Standard Conditions
Go Volume of methane = 5.62*(BOD in-BOD out-1.42*Volatile Solids produced)
Influent Sludge Flow Rate given Volume Required for Anaerobic Digester
Go Influent Sludge Flow Rate = (Volume/Hydraulic retention time)
Hydraulic Retention Time given Volume Required for Anaerobic Digester
Go Hydraulic Retention Time = (Volume/Influent Sludge Flow Rate)
Volume Required for Anaerobic Digester
Go Volume = (Hydraulic retention time*Influent Sludge Flow Rate)
Volumetric Flow Rate given Volumetric Loading in Anaerobic Digester
Go Volumetric Flow Rate = (BOD per day/Volumetric loading)
BOD Per Day given Volumetric Loading in Anaerobic Digester
Go BOD per day = (Volumetric loading*Volumetric Flow Rate)
Volumetric Loading in Anaerobic Digester
Go Volumetric loading = (BOD per day/Volumetric Flow Rate)

Volatile Solids produced given Percent Stabilization Formula

Volatile Solids produced = (1/1.42)*(BOD in-BOD out-((Percent stabilization*BOD in)/100))
Px = (1/1.42)*(BODin-BODout-((%S*BODin)/100))

What is volatile Solids ?

Volatile solids are a substance that can easily transform from its solid phase to its vapour phase without going through a liquid phase. Volatile solids normally represent the amount of organic solids in water, and have great importance in water and wastewater treatment.

How to Calculate Volatile Solids produced given Percent Stabilization?

Volatile Solids produced given Percent Stabilization calculator uses Volatile Solids produced = (1/1.42)*(BOD in-BOD out-((Percent stabilization*BOD in)/100)) to calculate the Volatile Solids produced, The Volatile Solids Produced given Percent Stabilization is a substance that can easily transform from its solid phase to its vapour phase without going through a liquid phase. Volatile Solids produced is denoted by Px symbol.

How to calculate Volatile Solids produced given Percent Stabilization using this online calculator? To use this online calculator for Volatile Solids produced given Percent Stabilization, enter BOD in (BODin), BOD out (BODout) & Percent stabilization (%S) and hit the calculate button. Here is how the Volatile Solids produced given Percent Stabilization calculation can be explained with given input values -> 902940.8 = (1/1.42)*(0.00173611111111111-5.78703703703704E-05-((0.8*0.00173611111111111)/100)).

FAQ

What is Volatile Solids produced given Percent Stabilization?
The Volatile Solids Produced given Percent Stabilization is a substance that can easily transform from its solid phase to its vapour phase without going through a liquid phase and is represented as Px = (1/1.42)*(BODin-BODout-((%S*BODin)/100)) or Volatile Solids produced = (1/1.42)*(BOD in-BOD out-((Percent stabilization*BOD in)/100)). BOD in means the amount of dissolved oxygen enter anaerobic digester, BOD out means the amount of dissolved oxygen exits anaerobic digester & Percent stabilization is defined as percentage of bod removal.
How to calculate Volatile Solids produced given Percent Stabilization?
The Volatile Solids Produced given Percent Stabilization is a substance that can easily transform from its solid phase to its vapour phase without going through a liquid phase is calculated using Volatile Solids produced = (1/1.42)*(BOD in-BOD out-((Percent stabilization*BOD in)/100)). To calculate Volatile Solids produced given Percent Stabilization, you need BOD in (BODin), BOD out (BODout) & Percent stabilization (%S). With our tool, you need to enter the respective value for BOD in, BOD out & Percent stabilization 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 Volatile Solids produced?
In this formula, Volatile Solids produced uses BOD in, BOD out & Percent stabilization. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Volatile Solids produced = (Yield coefficient*(BOD in-BOD out))/(1-Endogenous coefficient*Mean Cell Residence Time)
  • Volatile Solids produced = (1/1.42)*(BOD in-BOD out-(Volume of methane/5.62))
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