Bakrol, Ahmedabad, India+91 97277 86892

Wastewater treatment

Advanced Oxidation Process (AOP)

Advanced oxidation selected through contaminant-specific testing and process evaluation.

Conceptual modular wastewater treatment equipment arrangement
Wastewater equipment family — conceptual 3D render

SYSTEM VIEW

See the equipment.
Understand the process.

The render illustrates the Effluent treatment equipment family. Your final arrangement follows the project duty, site layout and approved design.

View process flow Browse the visual gallery

Conceptual 3D visualization · equipment details are illustrative.

PROCESS FLOW DIAGRAM

Oxidation treatment route

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Feed-water conditioning → Oxidant injection as selected → Reaction / contact system → Residual control as required → Downstream treatment / use
Main process Utility / chemical Residual stream Recovery / recycle

Swipe the diagram to view every stage.

Design notes
  • Oxidation chemistry, by-products and final polishing depend on treatability testing.
  • Ozone applications require appropriate off-gas destruction and safety provisions.

Indicative process overview. Equipment tags identify functional blocks only. Final PFDs, P&IDs, duties, sizes, valves and instruments are developed from the approved project design basis.

PROCESS & EQUIPMENT DETAILS

How advanced oxidation process (aop) fits your process.

Operating principle

Advanced oxidation selected through contaminant-specific testing and process evaluation.

Disinfection or oxidation performance depends on contact conditions and water quality. UV uses a validated reactor and exposure dose; ozone or advanced oxidation requires an approved chemical and safety design.

Engineering checks

  • Water quality and treatment objective
  • Validated dose or treatability test basis
  • Required contact and reaction conditions
  • Interlocks, residual control and operator protection

Configuration & equipment

  1. Feed-quality and flow interface
  2. Reactor / contact assembly
  3. Selected energy or oxidant source
  4. Monitoring and control system
  5. Residual / off-gas handling where applicable
  6. Outlet sampling point

Configuration options are reviewed against the project duty. Supply quantities and final scope are defined in the approved proposal.

Process / operating itemEngineering requirement
Process review 1Oxidation chemistry, by-products and final polishing depend on treatability testing.
Process review 2Ozone applications require appropriate off-gas destruction and safety provisions.
Operating and maintenanceInspect the reactor and clean fouled surfaces. Verify sensors and safety interlocks. Replace consumables according to selected equipment instructions.
DocumentationProject-specific datasheet, PFD, P&ID, equipment GA, electrical load list and O&M documentation as agreed.

EQUIPMENT DRAWINGS

2D layout & exploded component views.

Advanced Oxidation Process (AOP) 2D functional arrangement
Advanced Oxidation Process (AOP) component decomposition reference
Advanced Oxidation Process (AOP) — component decomposition

EXPLODED VIEW

Understand the assembly.

  1. Feed-quality and flow interface
  2. Reactor / contact assembly
  3. Selected energy or oxidant source
  4. Monitoring and control system
  5. Residual / off-gas handling where applicable
  6. Outlet sampling point

YOUR PROJECT, YOUR DESIGN BASIS

Configure your requirement.

Enter what you know. Leave unavailable values blank for engineering review.

Process inputs

Industry type, effluent flow and operating hours, pH, COD, BOD, TSS, TDS, oil & grease, colour/metals/specific contaminants, equalization pattern, reuse/discharge target and treatability data.

Equipment & execution preferences

Materials are reviewed separately for each component against the fluid chemistry, temperature and service conditions. Preferences are subject to technical suitability and the agreed proposal.

No details are sent until you choose a sending channel.

A solution shaped by your requirements.

Advanced oxidation selected through contaminant-specific testing and process evaluation. Treatment begins with understanding the effluent sources and their variability. Physical, chemical and biological stages are combined as appropriate, followed by polishing and sludge management.

What we review

  • Average daily flow and hourly inflow profile
  • Operating hours and peak-flow conditions
  • BOD, COD, TSS, pH, nutrients and relevant contaminants
  • Reuse or discharge objective
  • Available area, levels and site interfaces
  • Treatability, sludge handling and odour constraints

Capacity, materials, operating conditions and performance are specified after review of your project data. Product images are conceptual visualizations.

From design to operation

Our scope can cover process and mechanical engineering, manufacturing, supply, installation, commissioning and ongoing support. The final proposal clearly defines supplier scope, client interfaces, optional items and exclusions.

APPLICATIONS

Connect equipment to your industry.

Review the application, data requirements and candidate treatment options.