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Evaporator Condensate Treatment with AOP
Evaporator Condensate Treatment with AOP

Evaporator Condensate Treatment with AOP

Price 150000 INR/ Unit

MOQ : 01 Plant

Evaporator Condensate Treatment with AOP Specification

  • Efficiency (%)
  • 98%
  • Pump Type
  • Vertical Multistage
  • Power Consumption
  • 8-15 kW
  • Ph Level
  • 6.5-7.5
  • Water in conductivity
  • 1000-3000 S/cm
  • Usage & Applications
  • Zero Liquid Discharge, Industrial Water Recycle
  • Frequency
  • 50/60 Hz
  • Feature
  • AOP Technology for Advanced Purification
  • Water Out Conductivity
  • < 5 S/cm
  • Recycle Rate
  • Up to 90%
  • Flow Rate
  • 1-20 m/hr
  • Noise Level
  • < 70 dB
  • Technology
  • Advanced Oxidation Process (AOP)
  • Material
  • Stainless Steel 304/316
  • Volume
  • 500-20000 L/day
  • Power Source
  • Electric
  • Automatic Grade
  • Automatic
  • Water Source
  • Evaporator Condensate
  • Purity Level
  • >99%
  • Voltage
  • 380-415 V
  • Drive Type
  • Centrifugal
  • Product Type
  • Condensate Treatment System
  • Filter Type
  • Cartridge & Pre-Filter
  • Capacity
  • 1-20 m/hr
  • Installation Type
  • Skid Mounted
  • Operation Mode
  • Continuous
  • Control System
  • PLC Controlled with HMI Interface
  • Connection Type
  • Flanged/Threaded
  • Safety Features
  • Overload Protection, Emergency Shutoff
  • Pre-Treatment
  • Micron & Activated Carbon Filter
  • Footprint
  • Compact Skid 2.5m x 1.5m
  • Inlet Pressure
  • 2-5 Bar
  • Startup Time
  • < 10 minutes
  • Outlet Turbidity
  • < 1 NTU
  • Outlet Water Quality
  • Suitable for Boiler Feed & Process Needs
  • Maintenance
  • Low, Easy Access to Filters and Components
  • Disinfection Method
  • UV & Ozonation
  • Display Type
  • Digital Panel
  • Ambient Temperature
  • 5-50°C
 
 

About Evaporator Condensate Treatment with AOP

 Product details

Type

Waste Water Treatment

Manufacturing Lead Time

4-12 weeks

Design

Customized

Automatic Grade

Semi-Automatic

Brand

XERODROP AOP

Max Water Recovery Rate

95%

Function

Multi Effect Evaporator Condensate Treatment

Industry

Distillery

Treatment Technique

Advanced Oxidation Process

Installation Type

Prefabricated,Containerized Plug & Play,Skid Mounted

Treatment Stages

Tertiary Treatment,Disinfection,Advanced Oxidation Processes

Treated Water Quality

As per CPCB Norms

Water Source

Industrial Effluent

Feed Flow Rate

500 m3/day,1000 m3/day,2000 m3/day,100 m3/day,50 m3/day

Usage/Application

Multi Effect Evaporator Condensate Treatment



Innovative Advanced Oxidation & Control Technology

This system combines state-of-the-art AOP with UV and ozone disinfection to guarantee outstanding water quality. The PLC-controlled architecture, complete with an HMI interface and digital panel, allows operators to monitor and fine-tune operations, secures reliable automation, and ensures safety with overload and emergency shutoff mechanisms.


Efficient & Compact Footprint

The skid-mounted design offers a small footprint of 2.5m x 1.5m, suitable for industrial spaces. Operating at voltages between 380415 V, the vertical multistage pump and centrifugal drive deliver continuous flow rates of 120 m/hr. Maintenance is simplified through accessible filters and components, with swift startup times under 10 minutes.


High Purity Water for Industrial Needs

Treated water consistently meets stringent specifications with conductivity less than 5 S/cm and purity greater than 99%. Ideal for boiler feed and critical process applications, the system supports efficient recycling of evaporator condensate with up to 90% recovery and noise kept below 70 dB for enhanced workplace comfort.

FAQs of Evaporator Condensate Treatment with AOP:


Q: How does the evaporator condensate treatment system ensure advanced water purification?

A: The system combines Advanced Oxidation Process (AOP) technology with UV and ozone disinfection, supported by micron and activated carbon pre-filters, to effectively remove contaminants and achieve a purity level above 99%. Digital control via PLC with HMI interface enables precise monitoring and adjustment of treatment parameters for optimal output quality.

Q: What is the process for treating evaporator condensate, and what are its key stages?

A: Evaporator condensate first passes through micron and activated carbon pre-filters to remove particulates and organic matter. It then undergoes AOP using UV and ozone, followed by continuous monitoring and control through the PLC system. The result is water with low turbidity (<1 NTU) and conductivity (<5 S/cm), suitable for boiler feed and industrial processes.

Q: When and where is this treatment system typically used?

A: This unit is ideal for industrial facilities in India demanding Zero Liquid Discharge or water recycling solutions, especially in operations requiring high-purity water for boilers and process applications. Its compact, skid-mounted design facilitates installation in settings with limited space and continuous operational requirements.

Q: How does the system support safe and uninterrupted operation?

A: Safety is ensured with built-in overload protection, emergency shutoff functions, and a robust PLC-controlled architecture. Continuous automatic operation and quick startup times help prevent downtime, while maintenance-friendly access to filters and major components keeps upkeep simple and efficient.

Q: What are the primary benefits of using this condensate treatment solution?

A: Key benefits include high recovery rates of up to 90%, consistent production of ultra-pure water suitable for sensitive applications, flexible connection options, low maintenance needs, and reliable automation for consistent performance. The systems compact footprint also allows for efficient space utilization in industrial settings.

Q: How is treated water quality verified for boiler and process usage?

A: Quality is continuously monitored using digital panels for turbidity and conductivity, ensuring treated water meets the specified thresholds (<1 NTU turbidity, <5 S/cm conductivity, and pH 6.57.5), making it reliably fit for boiler feed and process requirements.

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