Effluent range

Cobiotex technology for better valorization of livestock effluent

Can be used in Organic Agriculture (in accordance with current European regulations).
Information and values are provided for information only and are not contractually binding.

-20% less ammonia emissions
on average

  • Improve the fertilizing value of slurry and manure by increasing protein nitrogen content
  • Increase nitrogen restitution and improve crop efficiency

Goals

Cobiotex technology for the treatment of livestock effluent is based on a key principle: control effluent fermentation (slurry, manure, etc.) using a specific bacterial complex. Our multi-layer combination acts directly on the microbial populations present. It improves liquid and solid effluent management by favorably orienting beneficial endogenous flora.

How does Cobiotex technology work?
Bacterial strains from Cobiotex technology colonize the environment and compete with endogenous flora, some of which are responsible for unpleasant odors and harmful gases such as ammonia (NH3) or hydrogen sulfide (H2S). Cobiotex strains will therefore limit the development of harmful flora. Thanks to their metabolism, Cobiotex bacteria fix and transform ammoniacal nitrogen into organic nitrogen, thus improving the transformation of organic matter.

-20% less ammonia emissions
on average

  • Improve the fertilizing value of slurry and manure by increasing protein nitrogen content
  • Increase nitrogen restitution and improve crop efficiency

Goals

Cobiotex technology for the treatment of livestock effluent is based on a key principle: control effluent fermentation (slurry, manure, etc.) using a specific bacterial complex. Our multi-layer combination acts directly on the microbial populations present. It improves liquid and solid effluent management by favorably orienting beneficial endogenous flora.

How does Cobiotex technology work?
Bacterial strains from Cobiotex technology colonize the environment and compete with endogenous flora, some of which are responsible for unpleasant odors and harmful gases such as ammonia (NH3) or hydrogen sulfide (H2S). Cobiotex strains will therefore limit the development of harmful flora. Thanks to their metabolism, Cobiotex bacteria fix and transform ammoniacal nitrogen into organic nitrogen, thus improving the transformation of organic matter.

-20% less ammonia emissions
on average

  • Improve the fertilizing value of slurry and manure by increasing protein nitrogen content
  • Increase nitrogen restitution and improve crop efficiency

Goals

Cobiotex technology for the treatment of livestock effluent is based on a key principle: control effluent fermentation (slurry, manure, etc.) using a specific bacterial complex. Our multi-layer combination acts directly on the microbial populations present. It improves liquid and solid effluent management by favorably orienting beneficial endogenous flora.

How does Cobiotex technology work?
Bacterial strains from Cobiotex technology colonize the environment and compete with endogenous flora, some of which are responsible for unpleasant odors and harmful gases such as ammonia (NH3) or hydrogen sulfide (H2S). Cobiotex strains will therefore limit the development of harmful flora. Thanks to their metabolism, Cobiotex bacteria fix and transform ammoniacal nitrogen into organic nitrogen, thus improving the transformation of organic matter.

-20% less ammonia emissions
on average

  • Improve the fertilizing value of slurry and manure by increasing protein nitrogen content
  • Increase nitrogen restitution and improve crop efficiency

Goals

Cobiotex technology for the treatment of livestock effluent is based on a key principle: control effluent fermentation (slurry, manure, etc.) using a specific bacterial complex. Our multi-layer combination acts directly on the microbial populations present. It improves liquid and solid effluent management by favorably orienting beneficial endogenous flora.

How does Cobiotex technology work?
Bacterial strains from Cobiotex technology colonize the environment and compete with endogenous flora, some of which are responsible for unpleasant odors and harmful gases such as ammonia (NH3) or hydrogen sulfide (H2S). Cobiotex strains will therefore limit the development of harmful flora. Thanks to their metabolism, Cobiotex bacteria fix and transform ammoniacal nitrogen into organic nitrogen, thus improving the stabilization of organic matter.

-20% less ammonia emissions
on average

  • Improve the fertilizing value of slurry and manure by increasing protein nitrogen content
  • Increase nitrogen restitution and improve crop efficiency

Goals

Cobiotex technology for the treatment of livestock effluent is based on a key principle: control effluent fermentation (slurry, manure, etc.) using a specific bacterial complex. Our multi-layer combination acts directly on the microbial populations present. It improves liquid and solid effluent management by favorably orienting beneficial endogenous flora.

How does Cobiotex technology work?
Bacterial strains from Cobiotex technology colonize the environment and compete with endogenous flora, some of which are responsible for unpleasant odors and harmful gases such as ammonia (NH3) or hydrogen sulfide (H2S). Cobiotex strains will therefore limit the development of harmful flora. Thanks to their metabolism, Cobiotex bacteria fix and transform ammoniacal nitrogen into organic nitrogen, thus improving the transformation of organic matter.

-20% less ammonia emissions
on average

  • Improve the fertilizing value of slurry and manure by increasing protein nitrogen content
  • Increase nitrogen restitution and improve crop efficiency

Goals

Cobiotex technology for the treatment of livestock effluent is based on a key principle: control effluent fermentation (slurry, manure, etc.) using a specific bacterial complex. Our multi-layer combination acts directly on the microbial populations present. It improves liquid and solid effluent management by favorably orienting beneficial endogenous flora.

How does Cobiotex technology work?
Bacterial strains from Cobiotex technology colonize the environment and compete with endogenous flora, some of which are responsible for unpleasant odors and harmful gases such as ammonia (NH3) or hydrogen sulfide (H2S). Cobiotex strains will therefore limit the development of harmful flora. Thanks to their metabolism, Cobiotex bacteria fix and transform ammoniacal nitrogen into organic nitrogen, thus improving the transformation of organic matter.

Two application modes

To adapt to the specific needs of each farm

We recommend

Powder - 25kg bag

Bacterial complex on calcium carbonate carrier: for direct application to manure and slurry.

We recommend

Soluble powder - 3 kg pail

Concentrated solution for diluting and spraying: bacterial complex on nutrient starter for optimal seeding.

Answers to your questions

Can Cobiotex CPF and Cobiotex Take'N be used for all types of livestock effluent treatment (manure, slurry, etc.)?

The products in Dietaxion's Effluents range are suitable for treating all types of livestock effluent, provided the effluent contains no (or low concentrations of) antibacterial biocides. The bacteria in Cobiotex technology, which are essential for optimum effluent stabilization, could be hindered in their development and colonization, thus compromising the efficiency of the treatment process.

How do Cobiotex CPF and Cobiotex Take'N products reduce livestock effluent odours?

Livestock effluents naturally give off odors due to the presence of molecules such as ammonia, volatile fatty acids and sulfur compounds. These emissions can be a nuisance for the farmer and those around him, and have an impact on the environment.

The products in our Effluents range contain a specific multi-layer bacterial complex. Beneficial bacteria compete for space and nutrients with the flora responsible for these gas emissions. They also metabolize and degrade part of the malodorous compounds during their life cycle, effectively reducing odor nuisance and contributing to a healthier breeding environment.

Are the bacteria in Cobiotex CPF and Cobiotex Take'N resistant to the extreme conditions (temperature, pH) of livestock effluent?

The products in the Effluents range have been specially developed to optimize the treatment of livestock effluents, taking into account their specific physico-chemical properties. The selected bacteria in Cobiotex technology are able to grow over a wide temperature and pH spectrum, guaranteeing optimum efficiency in a wide range of environments.

Being living micro-organisms, the bacteria in the complex adapt their metabolic activities to the conditions of the environment. Under extreme environmental conditions, their metabolism gradually slows down, leading to a state of dormancy until more favorable conditions return.

Do Cobiotex CPF and Cobiotex Take'N products require regular application to maintain their effectiveness on livestock effluents?

Yes, regular application of Effluents products is essential to guarantee their long-term effectiveness. Without this regular input, the bacterial concentration of Cobiotex technology could be reduced by the flow of fresh effluent, thus reducing treatment efficiency. A stable level of active bacteria must therefore be maintained in the medium. Periodic application ensures the constant presence of beneficial micro-organisms, optimizing the transformation of malodorous compounds and effluent stabilization.

Are Cobiotex CPF and Cobiotex Take'N products compatible with livestock manure composting systems?

Yes, the products in the Effluents range are perfectly compatible with livestock manure composting systems, thanks to their composition based on selected micro-organisms. During the composting process, the bacteria present throughout the cycle ensure the efficient transformation of organic matter. The specific conditions of composting (temperature, humidity and organic substrates) favor the development of Cobiotex technology bacteria, enabling them to interact naturally with the decomposing biomass. In this way, they optimize the stabilization of effluent into a stable, recoverable organic amendment.