| salesindia@envicaresystems.com |
| Business Type | Manufacturer, Supplier |
| Plant Capacity | 250 LPH |
| TDS Level Handling | 500 – 2000 Ppm |
| Power Consumption | High |
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Product Details
Reverse osmosis (RO) is a membrane-technology filtration method that removes many types of large molecules and ions from solutions by applying pressure to the solution, when it is on one side of a selective membrane. The result is that the solute is retained on the pressurized side of the membrane and the pure solvent is allowed to pass to the other side. To be "selective," this membrane should not allow large molecules or ions through the pores (holes), but should allow smaller components of the solution (such as the solvent) to pass freely. Reverse osmosis is used to purify Water and remove salts and other impurities in order to improve the color, taste or properties of the fluid.
Principle
Osmosis is a natural process. When two liquids of different concentration are separated by a semi permeable membrane, the fluid has a tendency to move from low to high solute concentrations for chemical potential equilibrium.
Osmosis describes how solvent moves between two solutions separated by a permeable membrane to reduce concentration differences between the solutions. When two solutions with different concentrations of a solute are mixed, the total amount of solutes in the two solutions will be equally distributed in the total amount of solvent from the two solutions. Instead of mixing the two solutions together, they can be put in two compartments where they are separated from each other by a semipermeable membrane. The semi permeable membrane does not allow the solutes to move from one compartment to the other, but allows the solvent to move.
Formally, reverse osmosis is the process of forcing a solvent from a region of high solute concentration through a semipermeable membrane to a region of low solute concentration by applying a pressure in excess of the osmotic pressure. The membranes used for reverse osmosis have a dense layer in the polymer matrix where most separation occurs.
Envicare's RO Plant Models and Selection Chart :
| Envicare - RO - 250 / 500 / 1000 LPH (Eco) | ||
| Description | Type | Qty |
| Raw Water Pump - CI | Centrifugal, Laxmi | 1 |
| Pressure Sand Filter (PSF) | 1252/1354/1465-FRP- Hydropure | 1 |
| Activated Charcoal Filter (ACF) | 1252/1354/1465-FRP- Hydropure | 1 |
| Antiscalant Dosing System- 3.0 LPH | Prodose | 1 |
| High Pressure Pump (HPP) | CRI (MTC) / Leo | 1 |
| RO Pressure Tubes | UKL | 1 to 4 |
| RO Membranes | EverWater | 1 to 4 |
| UPVC Piping | Astral | 1 |
| Electrical Cablings | Finolex/ Polycab | 1 |
| Skid | MS / SS- 202 | 1 |
| Electrical Control Panel | Astro Lite +/ Simply | 1 |
| Solenoid Valve | Auto Flushing | 1 |
| Type | Open Skid | 1 |
Envicare - RO - 200 / 500 / 1000 LPH (Standard)
| Description | Type | Qty |
| Raw Water Pump- SS Impeller | CRI/ Kirloskar | 1 |
| Pressure Sand Filter (PSF) | 1252 / 1354 / 1465 - Hytank / Pentair | 1 |
| Activated Charcoal Filter (ACF) | 1252 / 1354 / 1465 - Hytank / Pentair | 1 |
| Antiscalant Dosing System- 3.0 to 6.0 LPH | eDose (Neo) | 1 |
| High Pressure Pump (HPP) | CRI (MVC) | 1 |
| RO Pressure Tubes | UKL | 1 to 4 |
| RO Membranes | GE/ Hydranautics | 1 to 4 |
| UPVC Piping | Simply | 1 |
| Electrical Cablings | Finolex / Polycab | 1 |
| SKID | MS Powder Coated | 1 |
| Electrical Control Panel | Aster | 1 |
| Solenoid Valve (Optional) | Auto Flushing | 1 |
| Reject Recycle | For 500 LPH Onward | Considered |
| Type | Open Skid | Considered |
| CIP | Membrane Cleaning | Considered |
| UV for Disinfection | Alfa make | Optional |
| Filters Auto backwashing | Optional |
Envicare - RO - 200 / 500 / 1000 LPH (Premium)
| Description | Type | Qty |
| Raw Water Pump- SS | Grundfos | 1 |
| Pressure Sand Filter (PSF) | 1252 / 1354 / 1465 - Pentair | 1 |
| Activated Charcoal Filter (ACF) | 1252 / 1354 / 1465 - Pentair | 1 |
| Antiscalant Dosing System- 3.0 to 6.0 LPH | Miton Roy / Asia LMI | 1 |
| High Pressure Pump (HPP) | Grundfos | 1 |
| RO Pressure Tubes | Pentair | 1 |
| RO Membranes | Filmtec DOW | 1 |
| UPVC Piping | Astral | 1 |
| Electrical Cablings | Finolex / Polycab | 1 |
| Skid | MS Powder Coated | 1 |
| Electrical Control Panel | Aster Nxt with Bluetooth | 1 |
| UV for Disinfection | Alfa make | Considered |
| Solenoid Valve | For Auto Flushing | Considered |
| Reject Recycle | For 500 LPH Onward | Considered |
| Type | Open / Semi-Open | Considered |
| CIP | Membrane Cleaning | Considered |
| Auto Multiport Valves | For Filters Backwashings | Optional |
Advantages
Our Reverse Osmosis Plant have the following Advantages :
Applications
Drinking Water purification
Around the world, household drinking Water purification systems, including a reverse osmosis step, are commonly used for improving Water for drinking and cooking.
Water and wasteWater purification
Rain Water collected from storm drains is purified with reverse osmosis Water processors and used for landscape irrigation and industrial cooling, as a solution to the problem of Water shortages.
Food industry
In addition to desalination, reverse osmosis is a more economical operation for concentrating food liquids (such as fruit juices) than conventional heat-treatment processes. Research has been done on concentration of orange juice and tomato juice. Its advantages include a lower operating cost and the ability to avoid heat-treatment processes, which makes it suitable for heat-sensitive substances like the protein and enzymes found in most food products.
Car washing
Because of its lower mineral content, reverse osmosis Water is often used in car washes during the final vehicle rinse to prevent Water spotting on the vehicle. Reverse osmosis is often used to conserve and recycle Water within the wash/pre-rinse cycles, especially in drought stricken areas where Water conservation is important. Reverse osmosis Water also enables the car wash operator to reduce the demands on the vehicle drying equipment, such as air blowers.