Understanding Bio Gas Dryer and Air Compressor Machines

After realizing the harmful effects of pollution-generating fuels, we turned towards the eco-friendly alternative, bio gas machines. Its mechanism is designed only to produce the gas inorganically. To accomplish that, first, the microorganisms and organic wastes are mixed. These organic wastes include animal excreta, plant-based manure, sewage, agricultural waste, waste food, etc. Then, the process of drying the obtained gas is done in a bio gas dryer.

Bio gas is also called Anaerobic gas because it is produced from anaerobic digestion. Furthermore, gas generated from biogas dryers in India is then distributed via a network for cooking purposes.

The detailed process of gas conversion in bio gas dryer:

  • The biogas obtained from anaerobic digestion consists of water vapor. Because, vapor droplets in the gas prevent it from burning.

  • So, the gas is dried in the CHP engine of the dryer to decrease the water vapor. As a result, the efficiency of the biogas improves.

  • Then, the water-soluble gases in the bio gas, such as Ammonia, siloxanes, or hydrogen sulphide, are removed.

  • Inside the dehumidification process, the condensation technique eliminates water content from gas at 140°F.

This is how the biogas is dried in a bio gas dryer to make it more burnable.

Air Compressor Manufacturer

An air compressor manufacturer produces air compressor machines. These machines regulate the process of conversion of power into potential energy. Thus, an electric motor or gasoline-driven engine obtains potential energy. Several types of air compressors are available in the market, such as low-pressure air compressors, medium-pressure air compressors, and high-pressure air compressors. 

The process of obtaining potential energy:

  • An air compressor adds uncontainable air to the storage tank that increases the pressure.

  • Consequently, the pressure exceeds its threshold limit, which forces the compressor to shut down.

  • The pressurized air is trapped in the storage tank before usage.

  • Furthermore, the machine employs kinetic energy in the tank that releases the trapped pressure. Here, the depressurization process begins.

  • Hence, when the pressure reaches normalcy, the air compressor is re-pressurized, and we procure the potential energy.

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