AQUALITEK Industrial EDI Modules for Ultrapure Water Production
AQUALITEK Industrial EDI Modules — Reliable Ultrapure Water
AQUALITEK electrodeionization (EDI) modules are engineered for continuous production of ultrapure water with consistent low conductivity and minimal chemical use. Designed for industrial environments, our modules combine proven materials, precision manufacturing, and intelligent controls to ensure stable performance and long service life.
Why choose AQUALITEK EDI?
- Consistent high purity: Produces ultrapure water with ultra-low conductivity and low silica levels for sensitive processes.
- Chemical-free polishing: Continuous ion removal without acid/base regeneration reduces operating cost and environmental impact.
- Compact & modular: Stackable modules simplify expansion and fit existing plant footprints.
- Low maintenance: Durable membranes and optimized flow paths reduce fouling and downtime.
- Smart control: Integrated monitoring and optional remote access for performance tracking and predictive maintenance.
Key features
Each AQUALITEK EDI module uses high-quality ion-exchange materials and robust membranes assembled in a compact housing. Advanced channel design ensures uniform current distribution and efficient ion transport. Units are available in multiple capacities and can be configured in series or parallel to meet flow and purity requirements.
Applications
Our EDI modules are ideal for industries that require ultrapure water, including:
- Semiconductor and electronics rinsing
- Pharmaceutical and biotech manufacturing
- Power plant boiler feed and ultrapure make-up
- Analytical labs and rinse systems
Why AQUALITEK?
Aqualitek Water Treatment Technologies Co., Ltd. (AQT), headquartered in Guangzhou, China, brings engineering know-how and manufacturing excellence to every product. We offer tailored configurations, quick delivery, and global technical support to ensure your EDI solution meets productivity, cost, and sustainability goals.
Choose AQUALITEK EDI modules for dependable ultrapure water production that reduces operating costs, simplifies maintenance, and scales with your needs. Contact us for sizing, testing, and custom integration.
Certifications
CTK20211125002MDAppendix
CTK20211125002MD
Q&A
What is the expected lifespan of a water filter?
Cartridge filters generally last 1–3 months. Media filters require periodic backwashing and media replacement every 1–2 years, depending on usage.
Do you offer plug-and-play solutions?
Absolutely. We offer containerized membrane systems that are factory-tested, compact, and quick to deploy.
Does AQT provide technical support and after-sales service?
Yes! We offer comprehensive technical support, including installation guidance, troubleshooting, spare parts supply, and ongoing maintenance assistance. Our after-sales team is available to ensure your water treatment system operates efficiently.
Can AQT provide custom water treatment solutions?
Yes! We specialize in OEM/ODM water treatment solutions and can design custom filtration systems tailored to your business, industry, or brand requirements. Our team can assist with system design, branding, private labeling, and technical support.
If you have any questions or concern, please contact us.
Electrodeionization Systems to Get UltraPure Water
Electrodeionization (EDI) system is an advanced water purification technology that combines ion exchange and electrochemical processes to produce ultra-pure water. Unlike traditional deionization methods, which rely on chemical regeneration, EDI utilizes electric fields to drive the movement of ions through ion-exchange membranes, effectively removing dissolved salts and other ionic contaminants.
This process is continuous and does not require the use of chemicals for regeneration, making it an environmentally friendly and cost-effective solution for producing high-quality deionized water. EDI systems are widely used in applications requiring ultrapure water, such as in the pharmaceutical, semiconductor, power generation, and biotechnology industries, as well as for laboratory use.
By offering high-purity water without the need for chemical regeneration, EDI systems provide a sustainable, efficient, and reliable alternative to traditional deionization methods, making them an ideal choice for industries where water quality and process control are critical.
Electrodeionization Systems to Get UltraPure Water
Electrodeionization (EDI) system is an advanced water purification technology that combines ion exchange and electrochemical processes to produce ultra-pure water. Unlike traditional deionization methods, which rely on chemical regeneration, EDI utilizes electric fields to drive the movement of ions through ion-exchange membranes, effectively removing dissolved salts and other ionic contaminants.
This process is continuous and does not require the use of chemicals for regeneration, making it an environmentally friendly and cost-effective solution for producing high-quality deionized water. EDI systems are widely used in applications requiring ultrapure water, such as in the pharmaceutical, semiconductor, power generation, and biotechnology industries, as well as for laboratory use.
By offering high-purity water without the need for chemical regeneration, EDI systems provide a sustainable, efficient, and reliable alternative to traditional deionization methods, making them an ideal choice for industries where water quality and process control are critical.
Runxin auto control valve
Multiport Control Valve is a critical component used in water treatment systems, particularly in filters and softeners, to direct water flow through different cycles (e.g., filtration, backwash, rinse, regeneration).
Sea Water Reverse Osmosis (SWRO) Systems SWE Series
SWE series Reverse Osmosis (RO) systems are pre-engineered and pre-assembled units with 8” membrane housings for sea water. The large volumes can help meet your a variety of industrial applications. They are designed for overall superior performance, high recovery rates and offer great savings with low maintenance and operation costs.
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