1500 LPH Reverse Osmosis Water Purification Plant
Robust medium-scale RO system producing 1500 liters of pure water per hour. Features multi-stage filtration, stainless steel construction, and automated controls – ideal for bottled water production, estates, schools, or hotels.
Ksh 1,000,000.00
In Stock SKU: 1500-LPHPower your commercial water operations with our robust 1500 Liters Per Hour (LPH) Reverse Osmosis (RO) Plant, available at KES 1,000,000. This high-performance system is perfect for medium-scale bottled water production, housing estates, schools, hospitals, hotels, or community water projects in Kenya, capable of producing up to 36,000 liters of pure, safe drinking water per day.
Key Features:
- Impressive Capacity: Delivers 1500 liters of purified water per hour with excellent recovery rates.
- Multi-Stage Purification: Includes pre-treatment filters, high-pressure pump, premium RO membranes, post-filtration, and optional UV sterilization – removing up to 99% of dissolved solids, impurities, bacteria, and contaminants.
- Sturdy Construction: Skid-mounted stainless steel frame for durability, hygiene, and easy installation.
- Efficient Operation: Low-energy membranes, automated controls with digital monitoring for TDS, pressure, and flow rates.
- Versatile Application: Handles various raw water sources (borehole, river, municipal) and can integrate with storage tanks or bottling lines.
- Customization Available: Options for mineralization, additional storage, or enhanced automation.
A smart investment for reliable high-volume pure water supply and profitable business growth. Contact Samach Ventures for nationwide delivery, installation, training, and dedicated support!
| Capacity | Delivers 1500 liters of purified water per hour with excellent recovery rates. |
|---|---|
| Purification | Includes pre-treatment filters, high-pressure pump, premium RO membranes, post-filtration, and optional UV sterilization |
| Efficiency | Low-energy membranes, automated controls with digital monitoring for TDS, pressure, and flow rates. |
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