KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor

KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor

Product Details:

Place of Origin: China
Brand Name: China brand
Certification: CE
Model Number: KXA-50
Document: KXA Series Parameter Table.pdf

Payment & Shipping Terms:

Minimum Order Quantity: 1 pc
Price: Negotiable
Packaging Details: standard export packing
Delivery Time: 5- 8 work days
Supply Ability: 60000 Units per Month
Get Best Price Contact Now

Detail Information

Water Production Flow(m³/h): 0.3-0.7 Standard Water Production Flow(m³/h): 0.5
Stack Resistivity Of Produced Water (MO·cm): 15-18.25 Stack Silicon And Boron Removal Rate (%): ≥99
Advantages: High Current Efficiency Application: Semiconductor Industry,Semiconductor, Chemical
Origin: China
Highlight:

0.3-0.7 m3/H EDI Modules

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High Current Efficiency EDI Modules

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KXA Series EDI Modules

Product Description

Chinese Brand KXA Series KXA-50 EDI Modules High Current Efficiency 0.3-0.7 M3/H
Product Attributes
Attribute Value
Water production flow(m³/h) 0.3-0.7
Standard water production flow(m³/h) 0.5
Stack Resistivity of produced water (MO·cm) 15-18.25
Stack Silicon and boron removal rate (%) ≥99
Advantages High Current Efficiency
Application Semiconductor Industry, Semiconductor, Chemical
Origin China
Product Description

Chinese brand High Current Efficiency 0.3-0.7 m3/H EDI Modules KXA-50

EDI Module | Electrodeionization
KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor 0

EDI is a revolutionary ultra-pure water technology developed in the 1990s, representing a significant advancement in pure water production. EDI replaces traditional ion exchange technology, producing stable deionized water without chemical regeneration or downtime for resin addition.

Core Technology & Working Principle
  • Modular Stack Design: Comprises multiple cell pairs between electrodes, including cation-exchange membranes (CEM), anion-exchange membranes (AEM), dilute compartments with resin beads, and concentrate compartments.
  • Ion Removal & Transport: Under DC electric field, ions migrate through selective membranes while being blocked by opposite-charge membranes, with resin enhancing ion transport.
  • Concentration & Rejection: Ions in concentrate compartments are flushed away while purified water exits the dilute compartments.
Key Advantages
  • Chemical-free operation eliminates hazardous regeneration chemicals
  • Continuous 24/7 production without regeneration downtime
  • Low operating costs by reducing chemical purchase and disposal
  • Consistent high-resistivity water (>15-18.2 MΩ*cm)
  • Minimal wastewater generation
  • Compact, scalable modular design
  • Easy integration with RO systems
Primary Applications
  • Power generation boiler feed water
  • Microelectronics/semiconductor production
  • Pharmaceuticals & biotechnology
  • Chemical processing
  • Laboratory analytical grade water
KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor 1
Product Features
  • Full filling technology of middle partition ensures excellent water quality
  • No salt addition or concentrate water circulation required
  • High current efficiency with low voltage and energy consumption
  • Parallel pipeline design with standard threaded interfaces for easy installation
  • Leak-proof structural design
KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor 2 KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor 3
Applications
  • Purified water production
  • Feed to Water For Injection (WFI) stills
  • Boiler feed for power generation
  • Microelectronics/semiconductor manufacturing
  • Biomedical and laboratory use
  • Chemical manufacturing
  • Food and beverage industry
Applicable Industries
  • Power, chemical and metallurgical industries
  • Electronics, semiconductors and precision machinery
  • Chemical processes
  • Medical water production
  • Ultrapure laboratory water
KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor 4
Specifications
Product name KXA Series KXA-50 KXA-100 -200 -300-400 -500 -600 -700
Feature The middle partition is fully filled with technology, and the water quality is good.
Brand China brand
Usage Water Filter
Model KXA-50 KXA-100 KXA-200 KXA-300 KXA-400 KXA-500 KXA-600 KXA-700
Water flow range(m³/h) 0.3-0.7 0.5-1.4 1.5-2.5 2.5-3.5 3-4.5 4.5-5 5-6.5 5.5-7.5
Standard water flow rate(m³/h) 0.5 1.0 2.0 3.0 4.0 5.0 6.0 7.0
Resistivity of produced water (MO*cm) 15-18.25 15-18.25 15-18.25 15-18.25 15-18.25 15-18.25 15-18.25 15-18.25
Silicon and boron removal rate (%) ≥99 ≥99 ≥99 ≥99 ≥99 ≥99 ≥99 ≥99
Recovery rate% 90-95 90-95 90-95 90-95 90-95 90-95 90-95 90-95

For application cases, please visit: www.fgwater.com/Industries/

KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor 5
About Us

FG Water Technologies (www.fgwater.com) is part of Wuxi Fenigal Science and Technology Co. Ltd., a high-tech entity specializing in water treatment equipment design, manufacturing, and international shipment for industrial sectors.

We focus on water treatment technology research, equipment development, manufacturing, and testing. Our product range includes seawater reverse osmosis (SWRO) systems, brackish water RO (BWRO), ultrafiltration (UF) systems, EDI equipment, and ion exchange softeners.

Our equipment serves food and beverage, pharmaceutical, chemical, power, water supply, and wastewater treatment industries, with exports to over 20 countries worldwide.

Our Clients
KXA-50 EDI Module 0.3-0.7 m3/h High Current Efficiency for Semiconductor 6
Production System

Our production network includes specialized partnership factories across China, with some facilities covering over 10,000 square meters. Our technical staff has more than 10 years of experience in water treatment system design, enabling us to provide perfect solutions for various water purification and treatment applications.

We prioritize quality and use only the best components to ensure our systems are reliable, easy to use, and maintain even under demanding conditions.

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