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IDRABEL BIO-EPURSludge Reduction And Increased Plant

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BIO-EPUR is a groundbreaking product by IDRABEL aimed at enhancing performance and reducing operational expenses in wastewater treatment facilities. The core of BIO-EPUR consists of a symbiotic blend of microorganisms, porous mineral supports, and enzymes, along with oligo-elements. This innovative combination facilitates sludge reduction, increases plant capacity, and improves parameters such as BOD, COD, nitrogen, phosphorus, and suspended solids. A comprehensive methodology supports BIO-EPUR's implementation, including problem definition, site visit, data analysis, and tailored product formulation. The solution stands out for its capability to treat a wide array of organic contaminants while promoting total nitrification and eliminating hydrogen sulfide production. Additionally, BIO-EPUR can reactivate wastewater treatment plants swiftly after biological crashes. The product works by leveraging naturally occurring living organisms, which are optimized for maximum efficiency, thus replacing conventional, energy-intensive mechanical and physical-chemical methods commonly used in environmental management and remediation.

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SLUDGE REDUCTION AND INCREASED PLANT CAPACITY
  • Reduction of bulking phenomenon and reduction of filamentous bacteria.
  • Reduction of sludge production in the primary and secondary clarifier.
  • Increased efficiency and increased depuration capacity of the WWTP.
  • Reinforcement and stabilization of the biological activity.
  • Reduction of WWTP management costs (increased energy efficiency, reduction of sludge output, reduction of use of consumables like coagulants, floculants and anti-foam products).
  • Increased floculation and coagulation.
IMPROVEMENT OF BOD, COD, N, P AND SS VALUES
  • Improvement and stabilization of effluent values.

TOTAL NITRIFICATION AND ELIMINATION OF H2S PRODUCTION

  • Reduced corrosion.
  • Odour elimination
  • Increased work safety
POSSIBILITY OF TREATMENT OF EVERY ORGANIC CONTAMINANT
  • Halogenates, surfactants, phenols, petroleum derivatives, PCBs, organic sulfur, organic nitrogen, fats, hydrocarbons, dioxins, cyanides, cresols, chloro-phenols, cellulose.

Audit

  1. Definition of the problem and of the objectives of the treatment
  2. Characterization of the station through a site visit and plan study
  3. Questions/Answers and study of station data (volume, flow, load, CNP ratio, loads, etc.)
  4. Sampling and microscopic analysis of sludge

Offer

  • Analysis of the problem by the Scientific Committee
  • Measuring the relevance and feasibility of biological treatment
  • Calculation of the product quantity and product formulation
  • Evaluation and estimation of the possible benefit in relation to the expenditure
  • Price offer with commitment to results and/or ROI construction

Treatment

  • Manufacture of the specific product according to the type of pollution and the objective pursued
  • Treatment protocol (quantity, time of application, frequency, location to be treated)
  • Evolution of treatment over time

Control and follow-up

  • Definition of control parameters (KPIs)
  • Technical follow-up of results and analysis
  • Possible adaptation of the treatment and formulation of the product
  • Reports