DULCOZON OZLa: New ozone system from ProMinent is particularly reliable and compact
Ozone is the strongest oxidising agent for use in water treatment. It reliably eliminates impurities and isn’t just highly effective, but also environmentally-friendly. Significantly fewer environmentally harmful by-products result from use than with comparable technologies.
In potable water treatment, ozone removes unpleasant odours and flavours. In waste water, it eliminates trace elements, such as residue from medicines and pesticide. As well as being an agent for oxidation, ozone is also used for disinfection, i.e. removing germs. This is a huge benefit for many applications, such as in aquaculture (breeding fish, mussels and crabs) as well as when treating cooling and process water.
A consolidated power pack
The new ozone system DULCOZON OZLa from ProMinent is a powerful ozone generation system, which saves a lot of space. Depending on the version, it produces between 380 and 6080 g of ozone per hour. At the same time, it requires up to 70 percent less space than conventional systems and can be easily installed on the wall.
DULCOZON OZLa provides excellent reliability for minimum operating costs and can be fitted with up to 16 ozone generator modules. The modules can be controlled separately and operate independently of one another, which improves operational safety. Should one fail, a reserve module can be used instead.
For example, in the treatment of potable water, all processes must run reliably and the systems must be fail-safe. DULCOZON OZLa meets these requirements particularly well with its modules which can each be controlled separately.
Conserves resources and saves money
The system’s consumption of oxygen and energy is automatically adapted to the amount of ozone needed. Thanks to innovative water cooling, considerably less cooling water is also needed than with conventional ozone systems. This conserves resources and cuts the costs of operating materials by up to 15 percent.
Ozone generator modules can be flexibly activated and deactivated as required. The amount of ozone produced can therefore be adapted to fluctuations, for example in a clarification plant where varying volumes of waste water are treated. Operating costs can thereby be minimised.
The system can be conveniently operated using a touch display and can be monitored and controlled remotely by integrating superordinate controls.
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