
6000 GPD Reverse Osmosis System
Max Water Recovery Rate: 65-70%
Rejection rate: ≥ 97%
Turbidity: 3.0 NTU
Power Supply: 220V, 50Hz
Working Environment: 5ºC – 45ºC
Inlet TDS: <2000 PPM
Booster Pumps: High-Pressure Pump- Multi-Stage
The 6000 GPD Reverse Osmosis System delivers high-purity water with resistivity up to 17MΩ·CM (0.058µS/cm), ideal for industries requiring ultrapure water without chemical intervention. Engineered for seamless automation, this advanced system eliminates regeneration downtime and chemical regeneration cycles, ensuring uninterrupted production and minimal operating costs. Its smart control technology optimizes energy use while maintaining consistent output, making it a sustainable choice for electronics manufacturing, pharmaceuticals, and laboratories.
Designed for efficiency, this chemical-free RO system features a compact footprint, reducing workshop space requirements by up to 40% compared to traditional setups. With zero sewage discharge, it aligns with eco-friendly practices by recycling reject water internally. The combination of low maintenance demands and robust automation ensures reliable performance year-round, cutting operational expenses by up to 30%. Whether scaling production or prioritizing sustainability, the 6000 GPD Reverse Osmosis System offers a cost-effective, environmentally responsible solution for high-volume pure water generation.

Specifications
|
Water Source |
Pre-Treated |
|
Water Producing Capacity |
1,000L/H |
|
Configuration |
Cartridge Filter RO Purification System |
|
Designed Recovery |
65% |
|
Rejection rate |
≥ 97% |
|
Turbidity |
3.0 NTU |
|
Installation Conditions |
Interior Installation |
|
Working Environment |
5ºC – 45ºC |
|
Voltage |
220V, 50Hz |
|
Effluent Standards |
Feed water conductivity ≤1000μs/cm, water conductivity ≤10μs/cm (desalting rate is 98-99.8%) |
Working principle of EDI RO system

The Electrodeionization (EDI) RO system combines reverse osmosis with electrochemical purification to produce ultrapure water without chemical regeneration. In this process, feed water enters the system and splits into two streams: the dilute stream (to be purified) and the concentrate stream (to collect contaminants). The dilute stream flows through vertically arranged "D chambers" filled with ion-exchange resins sandwiched between selective membranes-cation-permeable membranes allow only positively charged ions to pass, while anion-permeable membranes permit only negatively charged ions.
A DC electric field applied across the system triggers water splitting, generating hydrogen (H⁺) and hydroxyl (OH⁻) ions. These ions continuously regenerate the resin bed, displacing contaminant ions (e.g., salts, metals) from the feed water. Driven by the electric field, the freed contaminants migrate through their respective membranes into adjacent "C chambers," where they are trapped in the concentrate stream and flushed out. Meanwhile, purified water exits the D chambers, achieving resistivity levels up to 17MΩ·CM.
The EDI module enhances efficiency through its proprietary spiral-flow design, ensuring optimal ion migration and minimal energy use. Unlike traditional systems, this technology eliminates downtime for resin regeneration and chemical disposal, making it ideal for industries requiring zero-waste, continuous high-purity water production.
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