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Wavin biomodules 8pcs BDT+KL
1.851,96 €
Wavin biomodules 8pcs BDT+KL
Wavin biomodules are;
– cost-effective
– have optimal efficiency
– compact design.
The bio module – construction and use
– Spreader plate that distributes the wastewater over a larger area
– Folded bio textile (non-woven fabric) that will carry the bio skin
when the process starts
– Thermoplastic grid pipe
– End caps
The infiltration surface per biomodule is about 4 times larger than the surface of the biomodule itself. This is because there is just over 3 m² of non-woven fabric per biomodule that can support the bio-skin. Add this to the surface area of the biomodule itself and you get 4 times the surface area. Thanks to
this, a plant with biomodules can come down in size if used on soils with good permeability. In such cases, the costs of excavation and landfill are reduced. In cases with poorer soils, lower permeability, it is advantageous to use biomodules with an enhanced infiltration. Where traditional infiltration does not work, the problem can often be solved with biomodules.
The modules are well supplied with oxygen (air). The air enters the biomodule plant via the ground, through the aeration pipes of the plant and the ventilation of the building.
Depending on the soil and terrain conditions, the plant can be installed in different ways:
1. Direct infiltration of treated wastewater into the ground (if the ground is suitable for this).
2. Soil bed with discharge of the wastewater to a recipient where the soil type does not allow infiltration.
The dimensions of the biomodule are 1250x600x240
The package includes:
-Biomodules 8pcs
-Spreader pipe
-Venting
-Mark cloth
Product details
Wavin biomodules 8pcs BDT+KL
Wavin biomodules are;
– cost-effective
– have optimal efficiency
– compact design.
The bio module – construction and use
– Spreader plate that distributes the wastewater over a larger area
– Folded bio textile (non-woven fabric) that will carry the bio skin
when the process starts
– Thermoplastic grid pipe
– End caps
The infiltration surface per biomodule is about 4 times larger than the surface of the biomodule itself. This is because there is just over 3 m² of non-woven fabric per biomodule that can support the bio-skin. Add this to the surface area of the biomodule itself and you get 4 times the surface area. Thanks to
this, a plant with biomodules can come down in size if used on soils with good permeability. In such cases, the costs of excavation and landfill are reduced. In cases with poorer soils, lower permeability, it is advantageous to use biomodules with an enhanced infiltration. Where traditional infiltration does not work, the problem can often be solved with biomodules.
The modules are well supplied with oxygen (air). The air enters the biomodule plant via the ground, through the aeration pipes of the plant and the ventilation of the building.
Depending on the soil and terrain conditions, the plant can be installed in different ways:
1. Direct infiltration of treated wastewater into the ground (if the ground is suitable for this).
2. Soil bed with discharge of the wastewater to a recipient where the soil type does not allow infiltration.
The dimensions of the biomodule are 1250x600x240
The package includes:
-Biomodules 8pcs
-Spreader pipe
-Venting
-Mark cloth



