Mixed Bed DI Resin Bag - 5 LBS or 25 Litres for Aquarium or Car Wash Systems
Mixed Bed DI Resin Bag - 5 LBS or 25 Litres for Aquarium or Car Wash Systems - 25 Litres Bag is backordered and will ship as soon as it is back in stock.
Description
Description
5 lbs DI Resin Bag
Unlock the power of pure water with our 5 lbs Mixed Bed Ion Exchange DI resin bag. This industrial-grade media is designed for top-tier deionization in a variety of applications, from industrial processes to aquarium care. This resin is used in car wash systems, Window cleaning systems, and aquarium RODI systems.
25 litres DI Resin Bag
Discover the potential of pristine water with our 25L Mixed Bed Ion Exchange DI resin bag. Crafted for high-performance deionization across a spectrum of uses, from industrial settings to aquarium maintenance, this industrial-grade medium is ideal for applications such as car wash systems, window cleaning systems, and aquarium RODI setups.
Key Features:
High Deionization Capacity: Our premium mixed bed resin guarantees exceptional performance, rendering water with an impressive 0 ppm TDS (Total Dissolved Solids).
Cost-Efficient Refills: With five pounds of resin at your disposal, you can refill a 2"x10" in-line refillable filter housing up to 10 times or a standard 2.5"x10" refillable filter housing about 5 times, making it an economical choice.
Shipping & Returns
Shipping & Returns
Shipping
We currently ship to the United States and Canada. To enquire about shipping to a different destination, please contact us.
Standard shipping normally takes 3-9 days. Next-day shipping is available on all domestic orders (for an additional charge). International shipping times depend on the products and destination (estimated at checkout).
Returns
Items must be returned within 30 days after receiving your order. Items must be returned in the same condition in which they were received, be unworn/unused, have any tags still attached, and include all the original packaging.
Please be aware that the seller will not cover the cost of the return label. It is the customer's responsibility to generate the return shipping label and send the system back to our warehouse.
Refunds
Refunds are processed within 7 days from when we receive the item(s).
Join and get free shipping on orders over $100
First-time purchasers will receive a special discount code sent to their email.
Detailed Description:
The Max Water Mixed Bed Ion Exchange Resin, available in a 25-liter bag, offers excellent high-capacity performance for deionization in various industrial, aquatic, and water treatment applications.
Please note that if you require food-grade resin suitable for drinking water or aquarium use, kindly search for our food-grade resin under Part # 104135.
Deionization involves the removal of mineral ions using an ion exchange process, facilitated by a mixed bed of anion and cation resins. This process effectively eliminates ions, salts, and minerals from the water.
Our virgin-type Mixed Bed DI Resin outlasts Regenerated Mixed Bed DI Resin, ensuring durability and cost-effectiveness.
When coupled with an RO membrane, the RO membrane significantly extends the lifespan of the DI. By removing approximately 95-99% of Total Dissolved Solids (TDS), the RO membrane sets the stage for the DI filter to achieve nearly 100% TDS removal.
This high-capacity, mixed bed, industrial-grade media is safe for use across various machines and aquariums, delivering consistent, ultra-pure water suitable for applications like car washing and window cleaning.
Specification
- Purified with special care to ensure a high percentage is converted to their regenerated form
- Particle bed sizes meticulously controlled for maximum efficiency
- Meets all engineering specifications required
- Ideal for producing ultra-pure and demineralized water
- Best used as a polisher following reverse osmosis (RO)
- Capable of delivering water of the highest purity - 18.3 megohm-cm
- Suitable for both regenerable and non-regenerable (cartridge) systems
- Provides a total capacity of 25,000 grains per bag
- Moisture content stands at 65%
- Withstands temperatures up to 212 degrees Fahrenheit
- pH tolerance ranges from 0 to 14
- Weighs approximately 38 lbs
Firstly, it's crucial to recognize that the lifespan of resin is relatively short. Any incorrect setup or application can lead to brief periods of 0 PPM output, typically lasting only 1 to 2 minutes. Therefore, it's imperative to meticulously follow instructions to grasp the resin's functionality and make an informed decision about investing in such systems. When DI resin fails to produce water with zero Total Dissolved Solids (TDS), there are various potential causes. Let's explore some common reasons behind this issue:
- Resin Exhaustion: DI resin becomes exhausted and loses its effectiveness over time or after processing a significant volume of water. Check usage against recommended PPM guidelines for replacement.
- Improper Usage: The lifespan of resin is brief, and any incorrect setup or application can lead to short periods of 0 PPM output. Follow instructions meticulously to thoroughly grasp the resin's operation before investing in such systems.
- Car Washing Technique: Avoid using DI water for washing cars directly; instead, wash with regular tap water and use DI water for a final rinse. Neglecting this step can lead to dissatisfaction with system performance.
- Optimal DI Water Usage: Utilize the mist valve provided to control DI water usage efficiently. Without it, excessive DI water consumption during car washing can occur, leading to premature exhaustion.
- High Flow Rate Considerations: If water passes through the resin too swiftly (fast flow), insufficient contact time for ion exchange can result in lower purity water output (resulting in a High PPM reading).
- Water Temperature and Composition: Elevated temperatures and specific ions or chemicals in the water can influence ion exchange efficiency, requiring careful consideration.
- Proper Packing and Channeling: Inadequate resin packing or channel formation within the container can hamper effective ion exchange, potentially due to settling or improper filling.
- Contamination or Degradation: Resin can be compromised by various contaminants or undergo physical degradation, impacting its functionality. Mechanical wear and chemical exposure, such as from chlorine, can contribute to this.
- Incorrect Resin Type: Using the wrong resin type or an improper mix of cation and anion exchange resins can diminish ion removal efficiency.
- Cool Environment: Store the resin in a cool, reasonably dry place. Ideal storage temperatures are between 10°C and 25°C (50°F and 77°F). Avoid extreme temperatures, especially heat, which can degrade the resin.
- Dry Location: Keep the resin away from direct sunlight and excessive moisture. High humidity can affect the resin’s quality and performance.
- Well-Ventilated Area: Ensure the storage area is well-ventilated to prevent condensation and mold growth.
- Away from Chemicals: Store away from strong oxidizing agents, acids, bases, and other chemicals that can react with the resin.
- Keep it Away from Children.
- Sealed Containers: Keep the resin in airtight, sealed containers or bags to prevent exposure to air and moisture. Original packaging is often the best option if it is resealable.
- Avoid Freezing: Ensure the resin does not freeze, as freezing can cause physical damage to the resin beads, impacting their performance.
- Proper Labeling: Clearly label the containers with the type of resin and date of purchase. This helps maintain an inventory and ensures the oldest resin is used first.
- Limited Exposure: Only open the containers when necessary and reseal them immediately after use to minimize exposure to air and contaminants.
- Regular Checks: Periodically check the condition of the resin if stored for extended periods. Look for signs of discoloration, moisture, or any other indication of degradation.
To address your specific situation, evaluate factors like flow rate, resin condition, and water composition, and consider replacing exhausted resin if necessary. Always ensure that your TDS meter is calibrated and reading correctly.
* For all the above reasons, No Warranties are given, and all implied warranties of merchantability or fitness for a particular purpose are expressly excluded.
5 lbs DI Resin Bag
Unlock the power of pure water with our 5 lbs Mixed Bed Ion Exchange DI resin bag. This industrial-grade media is designed for top-tier deionization in a variety of applications, from industrial processes to aquarium care.
Key Features:High Deionization Capacity: Our premium mixed bed resin guarantees exceptional performance, rendering water with an impressive 0 ppm TDS (Total Dissolved Solids).
Cost-Efficient Refills: With five pounds of resin at your disposal, you can refill a 2"x10" in-line refillable filter housing up to 10 times or a standard 2.5"x10" refillable filter housing about 5 times, making it an economical choice.
Versatility and Safety: This resin is suitable for a range of applications, including aquariums, car washing, and window cleaning, delivering consistently safe and ultra-pure water.
DI Filter Benefits: Our DI mixed bed resin water filter, often known as the deionization stage, is essential for achieving 99.99% pure water when connected to your RO unit. It serves as a post-RO filtration DI unit (RO/DI unit), effectively eliminating most impurities and delivering water with 0 ppm TDS.
TDS Monitoring: Keep track of the resin's lifespan with a TDS meter to ensure a continuous supply of water with minimal impurities.
Exceptional Water Quality: In areas with hard water, our DI resin ensures nearly perfect water quality with a conductivity of less than 0.1uS/cm or a resistivity close to 18 meg.ohm.
Experience the convenience and performance of our DI resin, offering water of unrivaled purity. Remove all remaining dissolved solids after your RO system, and savor water with 0 ppm TDS. Choose our 5 lbs DI Resin Bag for a smart water purification solution.
Why isn't my DI resin reading 0 TDS? Could it be defective?
Firstly, it's crucial to recognize that the lifespan of resin is relatively short. Any incorrect setup or application can lead to brief periods of 0 PPM output, typically lasting only 1 to 2 minutes. Therefore, it's imperative to meticulously follow instructions to grasp the resin's functionality and make an informed decision about investing in such systems. When DI resin fails to produce water with zero Total Dissolved Solids (TDS), there are various potential causes. Let's explore some common reasons behind this issue:
- Resin Exhaustion: DI resin becomes exhausted and loses its effectiveness over time or after processing a significant volume of water. Check usage against recommended PPM guidelines for replacement.
- Improper Usage: The lifespan of resin is brief, and any incorrect setup or application can lead to short periods of 0 PPM output. Follow instructions meticulously to thoroughly grasp the resin's operation before investing in such systems.
- Car Washing Technique: Avoid using DI water for washing cars directly; instead, wash with regular tap water and use DI water for a final rinse. Neglecting this step can lead to dissatisfaction with system performance.
- Optimal DI Water Usage: Utilize the mist valve provided to control DI water usage efficiently. Without it, excessive DI water consumption during car washing can occur, leading to premature exhaustion.
- High Flow Rate Considerations: If water passes through the resin too swiftly (fast flow), insufficient contact time for ion exchange can result in lower purity water output (resulting in a High PPM reading).
- Water Temperature and Composition: Elevated temperatures and specific ions or chemicals in the water can influence ion exchange efficiency, requiring careful consideration.
- Proper Packing and Channeling: Inadequate resin packing or channel formation within the container can hamper effective ion exchange, potentially due to settling or improper filling.
- Contamination or Degradation: Resin can be compromised by various contaminants or undergo physical degradation, impacting its functionality. Mechanical wear and chemical exposure, such as from chlorine, can contribute to this.
- Incorrect Resin Type: Using the wrong resin type or an improper mix of cation and anion exchange resins can diminish ion removal efficiency.
- Cool Environment: Store the resin in a cool, reasonably dry place. Ideal storage temperatures are between 10°C and 25°C (50°F and 77°F). Avoid extreme temperatures, especially heat, which can degrade the resin.
- Dry Location: Keep the resin away from direct sunlight and excessive moisture. High humidity can affect the resin’s quality and performance.
- Well-Ventilated Area: Ensure the storage area is well-ventilated to prevent condensation and mold growth.
- Away from Chemicals: Store away from strong oxidizing agents, acids, bases, and other chemicals that can react with the resin.
- Keep it Away from Children.
- Sealed Containers: Keep the resin in airtight, sealed containers or bags to prevent exposure to air and moisture. Original packaging is often the best option if it is resealable.
- Avoid Freezing: Ensure the resin does not freeze, as freezing can cause physical damage to the resin beads, impacting their performance.
- Proper Labeling: Clearly label the containers with the type of resin and date of purchase. This helps maintain an inventory and ensures the oldest resin is used first.
- Limited Exposure: Only open the containers when necessary and reseal them immediately after use to minimize exposure to air and contaminants.
- Regular Checks: Periodically check the condition of the resin if stored for extended periods. Look for signs of discoloration, moisture, or any other indication of degradation.
To address your specific situation, evaluate factors like flow rate, resin condition, and water composition, and consider replacing exhausted resin if necessary. Always ensure that your TDS meter is calibrated and reading correctly.
* For all the above reasons, No Warranties are given, and all implied warranties of merchantability or fitness for a particular purpose are expressly excluded.
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