To calculate the volume of biogas in a pipeline, you need to know the pipeline's dimensions (length and diameter) and the pressure and temperature of the gas inside. Use the ideal gas law equation, PV = nRT, where P is the pressure, V is the volume, n is the number of moles of gas, R is the ideal gas constant, and T is the temperature. Solve for V to find the volume of biogas in the pipeline.
Biogas is mostly used as a fuel in power generators and boilers. For these uses, the H2S content in biogas should be less than 200 parts per million (ppm) to ensure a long life for the power and heat generators. Biogas can also be upgraded to pipeline natural gas quality for use as a renewable natural gas. This upgraded gas may be used for residential heating and as vehicle fuel. When distributing the biogas using pipelines, Canadian oil and gas pipeline standards may become applicable. According to Canadian oil and gas pipeline standards, the H2S content shall not exceed 4.6 ppm at 0 C. The CO2 level should be lower than two per cent (CH4> 95 %). Removing water vapour is easier than removing CO2 and H2S from biogas. A condensate trap at a proper location on the gas pipeline can remove water vapour as warm biogas cools by itself after leaving the digester. Producing pipeline gas quality requires the use of advanced and expensive technologies. The cost of cleaning and producing pipeline quality gas (renewable natural gas) is $3 to 6/GJ and $6 to 12/GJ, respectively. The following sections include brief information about these technologies as well as about using biogas as a transportation fuel.
the amount required to fill the line = (Π/4)*D^2*L where D is the inside dia of the pipeline & L is the length, in your case this amounts to 2281.101 m3 of water.
This is the ratio volume/time.
To calculate volume based on density and mass, you can use the formula: Volume = Mass / Density Rearrange the formula to calculate volume by multiplying mass with reciprocal of density: Volume = Mass * (1 / Density)
Biogas is a type of renewable energy that occurs naturally from the breakdown of organic matter in the absence of oxygen. The invention of biogas is not attributed to a single individual, as it has been used for centuries in various forms. However, the modern development of biogas technology is often credited to Sir John Royds in England in the late 19th century.
To calculate the quantity of nitrogen gas needed for purging a pipeline, you would first need to determine the volume of the pipeline. Once you have the volume, you can use the ideal gas law (PV = nRT) to calculate the amount of nitrogen gas required. Make sure to consider factors such as the desired flow rate, pressure, and temperature during the purging process.
To calculate the flow rate in a pipeline, you can use the formula Q = A * V, where Q is the flow rate (volume per unit time), A is the cross-sectional area of the pipeline, and V is the velocity of the fluid in the pipeline. The units of flow rate are typically volume per unit time (e.g., cubic meters per second). You may need to know the density of the fluid flowing in the pipeline to convert the flow rate to a mass flow rate.
Biogas is mostly used as a fuel in power generators and boilers. For these uses, the H2S content in biogas should be less than 200 parts per million (ppm) to ensure a long life for the power and heat generators. Biogas can also be upgraded to pipeline natural gas quality for use as a renewable natural gas. This upgraded gas may be used for residential heating and as vehicle fuel. When distributing the biogas using pipelines, Canadian oil and gas pipeline standards may become applicable. According to Canadian oil and gas pipeline standards, the H2S content shall not exceed 4.6 ppm at 0 C. The CO2 level should be lower than two per cent (CH4> 95 %). Removing water vapour is easier than removing CO2 and H2S from biogas. A condensate trap at a proper location on the gas pipeline can remove water vapour as warm biogas cools by itself after leaving the digester. Producing pipeline gas quality requires the use of advanced and expensive technologies. The cost of cleaning and producing pipeline quality gas (renewable natural gas) is $3 to 6/GJ and $6 to 12/GJ, respectively. The following sections include brief information about these technologies as well as about using biogas as a transportation fuel.
x2 + x3
This would entirely depend on how efficient your biogas consuming electrical generator is and what the constituent gases in the biogas are. Biogas can contain between about 50-70% methane. The available energy in the biogas is derived from the calorific value (CV) of methane factored by the concentration of methane in the biogas. If you know the efficiency of the gas engine then you can derive the energy output from the known CV of the biogas input. It is important to select a suitable generator that can run on biogas and will provide suitable warranties when operating on biogas. It may be necessary to consider the impact of contaminant gases such as siloxanes, hydrogen sulphide and moisture in the biogas. It may be appropriate to protect the engine by installing scrubbing systems to clean the gas and remove the contaminants upstream of the engine in order to improve the lifetime of the equipment.
The Volume of a pipeline would be Pi times the radius of the pipe squared (r^2) times the length of the pipe (l). Pi x r^2 x l
You can't. It's impossible.
Calculate the volume of one sweet. Calculate the volume of the jar and then divide the volume of the jar by the volume of a sweet.
what is the design of biogas chamber
Creating a biogas plant model involves breaking down organic matter and not using any oxygen in the process. Use a container with a pipeline that feeds to the water and make sure that everything is fully covered. It is common to use a fish tank, place the setup in it, and then bury this with the organic matter.
the amount required to fill the line = (Π/4)*D^2*L where D is the inside dia of the pipeline & L is the length, in your case this amounts to 2281.101 m3 of water.
I think that if persons who use biogas decrease on the amount of electricity and cooking gas then there will be a conservation in biogas