WASTE-WATER (WWTP)

 

BALANCED ANTI-MICROBIAL SOLUTION

 

 

Proven commercially for bacteria regulation in sewage and wastewater, landfills, manure, fermenting produce, feed and manufacturing and food processing waste, Ionic Cupric Copper is suitable for operations of all sizes without infrastructure requirements.

 

 

CONTROL OF GASES, ODOR AND CONTAMINATION

Ionic Cupric Copper reduces the bacteria that produce noxious gasses such as ammonia, hydrogen sulphide, methane and sulphur dioxide and their attendant odors. Users report a reduction in algae, unwanted worms and fly larvae following prescribed Ionic Cupric Copper applications.

 

Where waste water recycling is desired, the product can be effective in water clarification. By reducing overall biomass with regular Ionic Cupric Copper applications, users report lower chemical consumption and mechanical treatment requirements.

 

SOLIDS HANDLING

In addition to odor control, Ionic Cupric Copper accelerates the fermentation process from food-processing wastes, fermented feeds as well as for fresh manure, and decaying manures. By breaking down and preventing the build-up of solids in lagoons, Ionic Cupric Copper creates a liquefied manure mass of uniform consistency contributing to easier handling. Users also report that applying Ionic Cupric Copper to livestock and poultry effluent, improves both crop manure consistency and nutrient quality.

 

ANTI-BACTERIAL ORGANIC WASTE TREATMENT

 

DANGERS OF ORGANIC WASTE

Consistent and effective management procedures are of critical concern wherever organic waste is present. Fermenting organic waste can give rise to noxious gasses such as ammonia, methane and hydrogen sulphide if not properly treated. Whether in animal agriculture, food processing or manufacturing operations, indoor air quality represents significant health and safety concerns for workers and animals alike. Produce producers must also monitor gasses generated by anaerobic fermentation. Gasses generated in open feedlots located in warm humid areas or with sub-optimal drainage also require active management to suppress odor and harmful emissions.

 

EFFECTIVE BACTERIA REGULATION

Ionic Cupric Copper is a highly effective bacteria regulator for manure, fermenting feed, food processing, and other industrial organic waste. Through independent lab and field testing together with over a decade of commercial application, Ionic Cupric Copper has consistently demonstrated its ability to control noxious gasses emissions and foul odors. Ionic Cupric Copper also controls harmful pathogens such as Escherichia coli(E. coli), fecal coliform, salmonella, and listeria. Algae, unwanted worms and fly larvae are prevented or eliminated following prescribed Ionic Cupric Copper applications.

 

IMPROVED HANDLING

By preventing the separation of solids, Ionic Cupric Copper also provides a uniform liquefied mass with predictable consistency for easier handling. As an added benefit, users report that Ionic Cupric Copper improves crop manure by ensuring uniform nutrient quality. Where waste-water recycling is desired, the product can be effective in water clarification. By reducing overall biomass with regular Ionic Cupric Copper applications, users report lower chemical consumption and mechanical treatment requirements.

 

Significant reduction of bacteria, gasses, and solids as follows:

Parameter Before ICC After ICC %IMP
BOD 132 9.9 93%
Faecal/Coliform 9,255 0 100%
TSS 61 6.2 90%
Ammonia (pm) 45 10 78%

 

How Ionic Cupric Copper works:

A New Copper. Using minute quantities of the most biologically active form of copper Ionic Cupric Copper achieves effective results from very low application rates.

Unlike copper sulfate, Ionic Cupric Copper‘s copper does not sink to the bottom. It naturally seeks a balanced disbursement leading to even performance results. In contrast, copper sulfate is commonly plagued by ‘hot spots’ and inconsistent effectiveness.Ionic Cupric Copper is also longer lasting. It remains bio-available through a wide range of conditions until assimilated by a target microorganism allowing for on-going water protection. And unlike copper sulfate and chlorine-based anti-microbial applications, it is not affected by sunlight and does not evaporate nor precipitate. It is also capable of remaining biologically active through the rigors of high pH, alkalinity and organic content.

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