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RECLAMATION OF PONDS AND LAKES.

We are aware that in our climate winter has always been dry, but the persistence of snow caused that the melting water gradually, through the ground, reached rivers and slowly fed plants on the way, just when they needed this water. At the same time, many areas are urbanized and agricultural areas are meliorating, liquidating all kinds of wetlands, which constitute a huge resource in terms of water retention.

As a result of climate change, higher temperatures, there are more extreme phenomena – rains are heavy and local. Climate changes, combined with urbanization processes (drainage of rain to rivers) and drainage processes (drainage of subsequent areas for agricultural crops), implemented against the natural water cycle in nature, cause that water is directed directly to the Baltic Sea and, unfortunately, it does not return.

It should also be remembered that our surface water resources are well below the European average. Unfortunately, the above-mentioned actions only make this situation worse. You need to change your attitude, start holding the water that reaches us in the form of rain and start using it. The exploitation of deep-sea intakes for agricultural purposes will very quickly lead to the exhaustion of water resources, which were supposed to be protected for the next generations.

In line with the idea that we are only guests on Earth for a while, we propose a number of solutions aimed at:

  1. Treatment of retained rainwater for agricultural use as well as for consumption, using the enormous potential that this water has

  2. Reclamation of eutrophicated lakes and ponds by supplying them with nutrients. The main goal is to restore their original function along with the restoration of damaged ecosystems.

In the field of rainwater treatment, we offer the compact Raininfinity set

In the field of restoring water reservoirs such as ponds and lakes, our portfolio includes a number of dedicated generators of air nanoparticles, which repeatedly accelerate the transfer of oxygen (aeration) to the entire ton of reservoirs. In contrast to the commonly used aeration systems in the form of fountains, aeration nozzles, etc., we obtain up to 86% of the use of the injected oxygen in the entire ton of water. We are able to pump up to 8kgO2 / h, achieve the oxygenation capacity factor α> 1 while increasing the amount of dissolved oxygen by 20% after 24 hours after aeration.

Application of oxygen nanoparticle generators:

Oxygen saturation

Dissolved oxygen saturation of irrigation water to improve plant nutrient conversion with parallel elimination of pathogens. Up to 50% increase in greenhouse yields

Increases the separation of oily substances from water

Increases the separation of oily substances from water in its treatment processes. Reduce the consumption of chemicals, increase the reduction of pollutants

Industrial use in flotation processes

Industrial use in flotation processes improves the quality of water in the outflow, reducing the costs of its further treatment. Up to 30% reduction in BOD, Up to 20% less total suspended solids resulting in up to 70% energy savings for this process

Eliminate the use of chemicals

Eliminating the use of chemicals needed to remove and protect water bodies from algae blooms. Recreating natural ecosystems in water reservoirs

Reduction of tank oxygenation costs

Reduce the cost of oxygenating fish breeding tanks, reducing the amount of fish-borne diseases. It restores the reservoirs to their natural state by increasing the fish stock.

Increases the capacity of bioreactors in sewage treatment plants

Increases the capacity of bioreactors in industrial wastewater treatment plants to treat larger loads of pollutants, reducing energy costs

Food

  • Gardening

  • Breeding ponds

  • Special crops

  • Food safety

Water

  • Bloom control

  • Deep oxidation

  • Biological treatment

  • Flotation

Natural resources

  • Production of treated water

  • Heap leaching

  • Oil recovery (EOR)

  • Flotation

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