10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

Everything you need to know about your pneumatic conveying process

Discover how you can create a more efficient pneumatic conveying process.
3D images of blowers in cement plant
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Reduce energy cost in cement manufacturer

How can ZS Screw Blower reduce energy costs over 30% for cement manufacturers?

The cement manufacturers use air pressures to transport raw materials of cement production instead of using existing lobe blower technology which running for more than 20 years. With Atlas Copco’s vision to reduce energy consumption, so we analyzed the effectiveness of the existing air blower and concluded with the new Screw Blower technology which helps you to minimize your energy savings in the plant numerously. 

3D images of blowers in cement plant

cement manufacturer

The ZS can help the industries achieve their vision by the following:

✔️Reduces energy costs by an average of 30%

Energy costs can amount to 80% of the life cycle costs of a blower, so the ZS screw blower is designed for reducing energy consumption. According to efficiency measurement of the ZS, we found that the ZS range reduces energy costs up to30% when compared to existing air blower technology or Lobe Blower technology

✔️Increases the production reliability

In the cement industries will focus on the stability of production as important. So, the ZS Screw Blower is designed to efficiently, precisely and continuously working. These can increase the production efficiency even the installation is in a high-temperature environment.

✔️Monitor your machines via SmartLink

The ZS Screw Blower comes with the Elektronikon® Mark V unit controller, enable to monitor your status of equipment at all times through the SmartLink system. These help you to analyze systems and manage the maintenance more efficiently.

Oil-free compressors ZS Blowers Cement

Reduce energy cost in cement manufacturer

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