With the development of the economy and the advancement of technology, energy has gradually become involved in various fields of our lives. We are exposed to it almost every moment, so the country is now advocating energy conservation and emission reduction to save these energies. Various domestic enterprises have also taken action in response to the national purpose. Taizhou Feentor Fluid Control Co., Ltd. has also increased various scientific research investments and developed an international gas driven booster pump, filling a gap in China. Below, the editor will introduce to you what is an air booster pump (a type of pneumatic booster pump).
An air booster pump is a type of pump used to increase the pressure of compressed air, mainly used to increase the pressure of local compressed air in factories or laboratories. Compressed air booster pump has many advantages such as small size, low noise, explosion-proof, etc., among which energy saving and emission reduction are its main advantages. Before the emergence of pneumatic compressed air booster pumps, factories or laboratories generally used two methods to solve the problem of insufficient compressed air pressure.
1. High pressure air compressor: High pressure air compressors generally have tens of thousands of watts, with higher ones being even higher. When using a high-pressure air compressor, the first step is to replace the high-pressure pipeline (usually far away from the site due to the high noise of the air compressor). With excess energy, a device requires high pressure, and the high-pressure air compressor must reach the operating pressure of the device. Other air circuits need to be depressurized for use. High maintenance costs require regular replacement of filter cartridges and regular refueling. When the factory site is relatively large and inconvenient to move, the air path distance will be too long, resulting in pressure drop.
2. High pressure gas cylinder: Research institutions usually use nitrogen cylinders instead of compressed air when the pressure is insufficient. When the number of experiments is small, this method is more cost-effective, but it is also a significant investment when used for a long time.
The Feentor compressed air booster pump has the following advantages of reducing energy consumption, which not only responds to the national call but also achieves the goal of saving energy (saving energy means saving money).
Low energy consumption: The air booster pump adopts the principle of a large piston pushing a small piston. When the pressure on both sides is balanced, there is no energy consumption, which indirectly reduces energy consumption.
Low noise: With reduced noise, it can be used on site without the need to extend the gas pipeline. Shortening the gas pipeline also reduces pipe resistance, resulting in reduced energy consumption without pipe resistance.
High pressure pipeline: On site use can correspondingly reduce the length of the pipeline, directly connect the booster pump to high-pressure equipment, and reduce the cost of other pipeline modifications.
While energy brings convenience to my life, it is also slowly being consumed and reduced. In order to maintain sustainable use, please try to save energy consumption as much as possible.