FERMANOX® Type WV for higher performance

The FERMANOX® WV type systems are suitable for larger water treatment capacities.
These systems work with an alternating treatment of 2 boreholes. They combine large treatment capacities with a small space requirement.

TYPE WV

from 5 to a maximum of 300 m³/day

FERMANOX® Type WV for higher performance

The FERMANOX® WV type systems are suitable for larger water treatment capacities.
These systems work with an alternating treatment of 2 boreholes. They combine large treatment capacities with a small space requirement.

TYPE WV

from 5 to a maximum of 300 m³/day

FERMANOX® Type WV for higher performance

The FERMANOX® WV type systems are suitable for larger water treatment capacities.
These systems work with an alternating treatment of 2 boreholes. They combine large treatment capacities with a small space requirement.

TYPE WV

from 5 to a maximum of 300 m³/day

FERMANOX® Type WV for higher performance

The FERMANOX® WV type systems are suitable for larger water treatment capacities.
These systems work with an alternating treatment of 2 boreholes. They combine large treatment capacities with a small space requirement.

TYPE WV

from 5 to a maximum of 300 m³/day

FERMANOX® Type WV for higher performance

The FERMANOX® WV type systems are suitable for larger water treatment capacities.
These systems work with an alternating treatment of 2 boreholes. They combine large treatment capacities with a small space requirement.

TYPE WV

from 5 to a maximum of 300 m³/day

FERMANOX® water treatment systems all work according to the same basic principle and therefore combine the advantages of efficient and environmentally friendly operation with comparatively low costs.

However, the requirements for a water treatment system differ depending on the application and size.

Therefore, we offer a range of different basic types for different water consumption and control requirements, which are optimally designed for these applications.

Waterworks, industry, municipalities, thermal groundwater use for heating and cooling in industry

Flow diagram for a water supply with FERMANOX® system type WV Professional:

FERMANOX® type WV systems work with two drilled wells, one of which is always available for extraction while the other well is being treated. Each treatment cycle therefore runs in two phases.

  1. In phase 1, for example, well 1 serves as a production well for the water supply. At the same time, a portion of the water is diverted, enriched with oxygen from the ambient air in the FERMANOX® system and returned (infiltrated) into the aquifer via well 2 without intermediate storage. The oxygen introduced is distributed in the area around the well and sets the natural self-cleaning process in motion.
  2. After the amount of water pre-programmed at meter 1 has been returned enriched with oxygen, the system switches off until the corresponding water has been withdrawn via meter 2. Only then is the water extraction switched over.
  3. In phase 2, well 2 now pumps pure, treated water for the water supply. A portion of this water is diverted again and, after oxygen enrichment, infiltrated into well 1.

Learn more about it in our

By operating several wells alternately, intermediate storage of the oxygenated water is not necessary, so that a large treatment capacity can be achieved with a small system and pure, treated water is also continuously available.

The boreholes themselves must be created with sufficient spacing so that the reaction zones created around the boreholes do not overlap or influence each other. As part of our design, we specify the appropriate minimum spacing for each project.

In FERMANOX® systems of type WV, the amount of water used and the amount returned for treatment are measured with contact water meters. The consumption-dependent control ensures that the correct ratio of pumping and oxygen enrichment is always maintained for each well. At the same time, the next enrichment only takes place after a corresponding amount of water has been used.

The current water quantities of both meters are shown on the control display. If there is a deviation from the target data, an alarm is automatically triggered and the cause of the error is shown on the control display.

Special injector of the FERMANOX® system type WV professional

Even for special applications with extremely low water consumption over a longer period of time, Winkelnkemper GmbH can guarantee the permanent functionality of the system by programming the system accordingly. At the same time, this control achieves optimal conditions with the lowest possible energy consumption.

The consumption-dependent controlled system also monitors itself and gives an alarm if there are deviations from normal operation.

The operating data of the water treatment are logged by the control system. The last well changes and any operating errors can be tracked via the menu. Remote reading and control center connection can be carried out via BUS interfaces.

PC/remote reading and parameterization of operating data

In the aquifer, there is a permanent alternation between the inflow of iron-containing raw water and the return flow of oxygen-containing pure water. This countercurrent principle creates optimal treatment conditions in the aquifer, which is why the efficiency is significantly higher compared to conventional filter systems.

View into the FERMANOX® plant

The right ratio of extraction and enrichment is of crucial importance for the success of the process. Specifically, for each well, the return volume must be adapted to the daily water requirement and the raw water quality of the groundwater. We therefore offer three different standard sizes with different equipment under the type designation WV.

The selection of the suitable system can only be made after we have carried out an individual design. If these parameters deviate significantly from the original starting data in the future (e.g. due to an increase in water requirements), an existing system must be redesigned by the manufacturer in order to avoid the wells becoming calcified.

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