Home / Project experience / Al Quds EDI

PROJECT REFERENCE / IRAQ / POWER GENERATION

Al Quds Thermal Plant.
100 m³/h EDI system.

Industrial demineralization.
From system design to startup.

YORA Solutions delivered an electrodeionization system at Al Quds Thermal Plant in Iraq, in partnership with MAHAM Contracting & Engineering Services.

Explore our delivery scope ↓
Project team working on the EDI system at Al Quds Thermal Plant, Iraq
Al Quds Thermal Plant · EDI system installation and site integration.

PROJECT AT A GLANCE

High-purity water.
Industrial-scale delivery.

The project brings together system engineering, equipment supply and on-site execution for the power sector.

Nominal capacity
100 m³/h100,000 litres per hour
Application
Power generationIndustrial demineralization
Location
IraqAl Quds Thermal Plant

Project partnershipYORA Solutions + MAHAM Contracting & Engineering Services

EDI stacksVeolia

COMPLETE PROJECT DELIVERY

Design and supply.
Installation and startup.

YORA’s scope covered complete system design, equipment supply, integration, installation, commissioning and startup, delivered in partnership with MAHAM.

01 / ENGINEERING

Design & supply

Complete system design and equipment supply for the 100 m³/h EDI installation.

02 / SITE EXECUTION

Integration & installation

Integration and installation within the plant’s water-treatment infrastructure.

03 / DELIVERY

Commissioning & startup

Commissioning and startup of the integrated EDI system.

Installed EDI skid with module banks and interconnecting pipework at Al Quds Thermal Plant
EDI module banks, pipework and integrated equipment at the project site.

THE POWER-SECTOR APPLICATION

Demineralization for
plant water systems.

High-purity makeup water limits the introduction of dissolved salts and silica into steam and boiler circuits. EDI supports water-quality control by removing residual ionic impurities from the feedwater.

The Al Quds installation demonstrates YORA’s experience in bringing industrial water-treatment equipment together with the engineering and site services needed for project delivery.

HOW EDI WORKS

Continuous ionic removal.
Separate water streams.

Electrodeionization combines ion-exchange resins, ion-selective membranes and a direct-current electric field to remove dissolved ionic impurities.

INLET

Feedwater

Water entering the
EDI stage

DC ELECTRICAL INPUT

EDI stacks

Resins + selective membranes
Continuous ion transfer

PRODUCT

Demineralized water

Treated water leaves
the dilute compartments

Concentrate stream

Removed ions leave through a separate water circuit.

Simplified EDI operating principle.

Ion separation

The electric field moves dissolved ions across selective membranes into concentrate compartments. A separate water stream carries those ions out of the system.

Continuous resin regeneration

Hydrogen and hydroxide ions generated within the process regenerate the resin during operation, avoiding routine acid or caustic resin-regeneration cycles.

Coordinated operation

Balanced flow distribution and controlled electrical loading support ion removal across multiple modules. Flow, pressure, current and product conductivity or resistivity are key operating measurements.

Technology reference: Veolia EDI stacks ↗

PROJECT PARTNERSHIP

Engineering expertise.
On-site coordination.

Delivered by YORA Solutions in partnership with MAHAM Contracting & Engineering Services, the project combined system engineering with installation, commissioning and startup.

Veolia EDI stacks form part of the installation. The photographs show the project equipment and site activities.

Explore YORA’s project services →
Project team member at the EDI control panel during site work at Al Quds Thermal Plant
Control-panel interface and site activities at the EDI installation.

DISCUSS YOUR NEXT PROJECT

Planning an industrial
water-treatment system?

Share your required flow, feedwater analysis, product-water requirements and site constraints with YORA.

Discuss your project