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Containerized Commercial Reverse Osmosis Systems 2 x 3,000 GPD - Guyana

Product Description

This project consisted of two identical brackish water reverse osmosis systems with a capacity of around 3,000 GPD, shipping to the country of Guyana. The utilization for these RO systems is for a power plant, specifically an engine cooling application.

• Feed/Backwash Pump
• Pre-chlorination Dosing System
• Automatic Mult Media Filter to Reduce TSS and Turbidity
• Green Sand Filter for Iron and Manganese Removal
• PA0100 Pure Aqua Antiscalant Dosing System to Prevent Membranes Fouling
• Stainless Steel Inlet Shut Off Valve
• 5 Micron Cartridge Pre-Filter
• Hydranautics ESPA2-LD Energy Saving/High Rejection Membranes
• Pure Aqua Advanced Microprocessor Control Panel
• Energy Efficient LED Lighting
• Diamond Flooring Corrosion Resistant/Easily Cleaned
• High-Quality Insulation to Save Energy
• Climate Control System
• Plug and Play System for Easy Startup
• Factory Tested for Reliability and Designed to Work Seamlessly
[custom-specifications]

Water Challenges: The bulk of Guyana's water sources have excessive TDS levels, resulting in polluted and bad-tasting drinking water. Customers are looking for turnkey solutions that can enable them create clean, drinkable water by improving the poor water quality that has stymied growth in Guyana.

[/custom-specifications]

[custom-features]

Applied Solution: This system in particular included all required pre and post treatment, such as pre-chlorination dosing system along with advanced microprocessor and other accessories to make the system complete. A green sand filter was also used in this BWRO containerized plant. The containerized reverse osmosis system met all customer’s requirements and provided a fresh water to the power plant.

[/custom-features]
[custom-usage]
  • Minimal civil work and construction
  • Small footprint
  • Plug and play installation
  • High-quality components (Grundfos pumps, DOW Filmtec membranes, Codeline vessels, Pure Aqua microprocessor control panel)
  • High recovery design
  • High rejection membranes
  • Low energy and chemical consumption
[/custom-usage]
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