2000 LPH RO Plant - Sewage Treatment Plant Manufacturers

Successfully-Installed-2000-LPH-RO-Plant-at-NFCSF-Jasola-Vihar-Delhi.webp

September 12, 2026by Netsol Water

Successfully Installed 2000 LPH RO Plant at NFCSF, Jasola Vihar, Delhi

Reliable water treatment plays an important role when a facility needs a consistent supply of treated water for its operations. Water quality can vary depending on the source and local conditions. A suitable treatment plant helps address this requirement by processing incoming water and producing treated water at the required capacity. For this reason, selecting the right treatment plant is important for facilities that need a practical and dependable water treatment arrangement.

We completed the installation of a 2000 LPH RO plant at NFCSF in Jasola Vihar, Delhi. The project focused on providing a commercial water treatment solution that could meet the intended water requirement of the facility. The installed system uses Reverse Osmosis technology to treat the incoming water and produce treated water.

The project demonstrates how a properly selected RO plant can support a facility’s water treatment requirement when capacity and treatment needs receive careful attention. The installation also reflects Netsol Water‘s role as a Commercial RO Plant Manufacturer in Delhi that provides water treatment systems for different operational requirements.

Project Overview

A water treatment project must begin with a clear understanding of the client’s requirement. The treatment plant should match the required water capacity while using a process that suits the intended application. The project at NFCSF followed this basic approach by focusing on the installation of a suitable RO system with a defined treatment capacity.

The requirement at the facility was addressed through the installation of a 2000 LPH RO Plant. The objective was to provide a treatment system capable of processing the incoming water and producing treated water for the intended use at the site. The selected capacity gave the project a clear operating target and helped define the treatment system needed for the facility.

The scope of work covered the installation of the RO plant at the project location. The treatment system had to be positioned properly and connected so that water could move through the required treatment stages. The project also involved preparing the system for operation and carrying out commissioning activities before regular use.

A successful installation does not depend only on placing equipment at the site. The complete system must work as one treatment arrangement. Each part must connect correctly with the next stage so that raw water can enter the plant and treated water can be produced in the required manner. This made planning and execution important parts of the project.

Client Details

NFCSF was the client for this water treatment project. The facility required a suitable RO treatment system to address its treated water requirement.

The need for an RO plant indicates that the facility required treated water rather than using the incoming water directly for its intended purpose. Water treatment helps convert the source water into water suitable for the planned application. In such situations, the treatment plant must be selected according to the required capacity and the treatment objective.

The project therefore focused on providing NFCSF with an RO-based solution rather than a general water handling system. The treatment plant was selected and installed to create a defined process for treating incoming water. This arrangement gave the facility a dedicated treatment system that could operate according to the specified 2000 LPH capacity.

The client’s requirement also influenced the practical approach to installation. The plant had to fit into the available site and connect with the water movement required at the facility. Once the equipment was installed and commissioned, the system was ready to support the intended water treatment process.

Understanding the client’s basic requirement provides the foundation for understanding why the selected project location and plant capacity were important. The next section looks at the location where the treatment system was installed and how the site formed part of the project planning.

Detail Information
Client NFCSF
Location Jasola Vihar, Delhi
Solution Provided 2000 LPH RO Plant
Installed By Netsol Water

 

Project Location

The location of a water treatment plant affects how the system is installed and connected to the facility. The available space, access to the installation area and the connection points for raw and treated water all influence the practical execution of the work. These considerations become especially important when a treatment plant must be installed within an existing facility.

The project was completed at NFCSF, located in Jasola Vihar, Delhi. The installation therefore took place in an urban facility where the treatment equipment needed to be placed and connected according to the site’s available arrangement. The location formed an important part of the project because the plant had to be installed in a way that supported proper water flow and practical operation.

Jasola Vihar is within Delhi. For the project itself, however, the key consideration was the client’s facility and the available installation area rather than general geographic features. The treatment system needed to fit the site’s operational requirements while allowing the equipment to function as intended.

The installation team therefore had to consider the physical arrangement of the plant and its connections during execution. Proper placement helped create a clear path for raw water entry and treated water movement. It also supported the commissioning stage by allowing the installed equipment to operate as one connected treatment system.

With the project location established, the next consideration was the amount of water the plant needed to treat. Capacity selection played a direct role in determining the size and operating target of the installed RO system.

Plant Capacity

Plant capacity provides the basis for designing and selecting a water treatment system. A plant that matches the intended water requirement can process water at a defined rate and support the facility’s operational needs. For this project, capacity was one of the main factors that shaped the selected treatment solution.

The installed plant has a capacity of 2000 LPH. The term LPH means litres per hour. Therefore, the plant is designed to process 2000 litres of water per hour under the intended operating conditions. This capacity provided a clear treatment rate for the NFCSF facility.

Selecting a 2000 LPH system also established the operating scale for the treatment plant. The plant needed to process the incoming water at this stated capacity and produce treated water through the RO process. The treatment system was therefore configured around the defined output requirement rather than using an unspecified or general-purpose arrangement.

The stated capacity is also useful from an operational perspective because it provides a measurable reference for plant use. The facility can understand the expected treatment rate and plan the use of treated water around the installed capacity. This makes the capacity an important link between the treatment equipment and the practical requirement at the site.

Since the project was designed around a 2000 LPH output, the treatment technology had to support this operating requirement. Reverse Osmosis was selected as the core treatment process.

Parameter Specification
Installed Capacity 2000 LPH (Litres Per Hour)
Treatment Technology Reverse Osmosis (RO)
Project Site NFCSF, Jasola Vihar, Delhi
Plant Type Commercial RO Plant
Design Basis Defined output requirement matched to facility’s treatment rate

 

Treatment Technology

Choosing the right treatment technology is important because different water treatment processes address different water quality requirements. Reverse Osmosis is a membrane-based treatment process that uses pressure to move water through a semi-permeable membrane. The membrane allows water to pass while restricting many dissolved substances and other unwanted components present in the source water.

The NFCSF project uses Reverse Osmosis as the main treatment technology. The RO plant receives incoming water and applies pressure to push the water through the RO membrane. During this process, the membrane separates the water into a treated stream and a reject stream.

1. Reverse Osmosis Process

The central part of an RO plant is the RO membrane. Before water reaches the membrane, it must pass through the required treatment stages that prepare it for membrane filtration. This preparation helps the RO stage operate under suitable conditions.

Once the prepared water reaches the membrane section, pressure drives the water through the membrane. The membrane acts as a barrier to many dissolved substances. Water that passes through the membrane forms the treated water stream. The remaining stream carries the rejected material away from the membrane section.

The process therefore uses physical separation rather than adding a treatment chemical to remove dissolved contaminants. The effectiveness of the system depends on proper operation of the complete treatment sequence and the condition of the membrane system.

2. Role of RO in the Project

For the NFCSF project, RO provides the main treatment step required to convert incoming water into treated water. The technology also fits the project’s defined treatment capacity of 2000 LPH. The plant was installed as a complete treatment arrangement so that water could move through the required stages before reaching the RO membrane.

RO technology was therefore not treated as an isolated component. It formed the main part of an integrated treatment process that included water entry, preparation, membrane treatment and treated water collection. This connected approach helped ensure that each stage supported the next.

The suitability of the treatment process also depends on the characteristics of the incoming water. Before operating any RO system, it is important to understand what is present in the source water.

Influent Characteristics

Understanding incoming water quality is an important part of water treatment planning. The treatment system must receive water that matches the conditions for which the plant has been selected and prepared. Parameters such as dissolved solids, hardness, turbidity, iron and microbial content can influence treatment requirements. Knowing these characteristics helps determine the treatment approach and supports proper operation.

Importance of Water Quality Assessment

TDS is commonly used to describe the total amount of dissolved substances in water. Hardness relates mainly to dissolved calcium and magnesium salts. Turbidity indicates the presence of suspended particles that can make water appear cloudy. Iron can create treatment and operational concerns when present at elevated levels. Microbial content provides another important measure when water treatment involves biological contamination.

Parameter Relevance to Treatment
TDS Describes the total amount of dissolved substances in water
Hardness Relates mainly to dissolved calcium and magnesium salts
Turbidity Indicates suspended particles that can make water appear cloudy
Iron Can create treatment and operational concerns at elevated levels
Microbial Content Important measure when biological contamination is a concern

 

Treatment Process

A proper treatment sequence allows the RO plant to perform its main function effectively. Water should move through the system in an orderly manner so that each stage prepares the water for the next stage. This arrangement supports stable treatment and helps protect the main RO membrane from conditions that could affect its operation.

At NFCSF, the treatment process begins when incoming water enters the treatment system. The water then moves through the stages provided in the RO plant before reaching the membrane section. After membrane treatment, the treated water is collected for the intended use.

1. Raw Water Entry

The first stage involves the entry of the incoming water into the treatment system. This creates the starting point for the complete treatment cycle. Raw water must enter the plant through the planned connection so that it can move into the treatment sequence without disrupting the flow.

The design of this stage provides the basic foundation for the remaining process. Once water enters the system, it moves toward the treatment stages that prepare it for RO membrane filtration.

2. Water Preparation

Before entering the membrane stage, water requires suitable preparation. The preparation stage helps control the conditions under which the RO membrane operates. Depending on the plant design and source water quality, this stage can involve the removal or reduction of materials that may interfere with membrane performance.

3. RO Membrane Treatment

After preparation, the water reaches the RO membrane section. A high-pressure arrangement pushes the water toward the semi-permeable membrane. The membrane allows a portion of the water to pass through while restricting many dissolved substances present in the incoming stream.

The water that passes through the membrane becomes the treated product water. This water is then directed toward the treated water collection point. The remaining water forms the reject stream and leaves the membrane section through the designated reject outlet.

4. Treated Water Collection

The final stage of the treatment journey involves collecting the water produced by the RO process. The treated water can then be directed toward the client’s intended use within the facility. The collection arrangement provides a clear separation between treated water and reject water.

This sequence creates a connected flow from raw water entry to final treated water production. Every stage has a defined role and supports the next stage. The effectiveness of this process also depends on selecting and installing the right equipment for each part of the system.

Stage Function
Raw Water Entry Incoming water enters the treatment system through the planned connection
Water Preparation Controls conditions under which the RO membrane operates
RO Membrane Treatment High-pressure arrangement pushes water through the membrane, separating treated and reject streams
Treated Water Collection Collects treated water and directs it to the client’s intended use

 

Major Equipment

Equipment selection has a direct impact on how a treatment plant operates. Each component must perform its intended function and work correctly with the rest of the system. A properly arranged plant allows water to move through the treatment process in a controlled manner.

The major technology confirmed for the project is the Reverse Osmosis system with a capacity of 2000 LPH.

1. RO Membrane System

The RO membrane system forms the main treatment section of the plant. It performs the membrane separation process that produces treated water from the incoming stream. Pressure pushes water through the membrane while the membrane restricts many dissolved materials.

The membrane section therefore acts as the core of the treatment plant. Its operation determines the separation step that defines the RO process.

2. High-Pressure Arrangement

Pressure is necessary for Reverse Osmosis because the treatment process requires water to move through the membrane against the natural osmotic pressure. The high-pressure arrangement provides the force required for this process.

The pressure system must work in coordination with the membrane section. Proper operation helps maintain the flow required for treatment and supports the plant’s intended capacity.

3. Water Flow and Collection Connections

The plant also requires suitable connections for raw water entry, treated water movement and reject water discharge. These connections link the different treatment stages and ensure that water follows the planned route.

The equipment arrangement at NFCSF was installed with these connections so that the plant could be tested as a complete system during commissioning. Once the major components were placed and connected, the project moved into the installation and execution stage.

Equipment Role in the System
RO Membrane System Core of the treatment plant; performs the membrane separation process
High-Pressure Arrangement Provides the force required to move water through the membrane
Water Flow & Collection Connections Link raw water entry, treated water movement and reject discharge

 

Installation Process

Plant installation requires careful planning because the equipment must be positioned correctly and connected in the proper sequence. A treatment plant cannot perform as intended unless the physical arrangement and water connections support the treatment process. The installation at NFCSF therefore involved arranging the system at the site and preparing it for operation.

1. Site Preparation

The installation process began with attention to the site where the RO plant would be placed. The available area had to support the equipment arrangement and allow the required connections. Site preparation created the conditions needed for safe and practical equipment placement.

The installation area also had to permit access to the system for operation and routine attention. Proper positioning helped the team maintain a logical flow between the different treatment stages.

2. Equipment Placement

Once the site was ready, the RO plant equipment was placed according to the planned arrangement. Correct positioning was important because the components needed to connect with one another in the order required by the treatment process.

The equipment placement also helped establish the flow path from the raw water side to the treated water side. This ensured that water could move through the treatment process without unnecessary changes in direction or connection.

3. System Connections

After equipment placement, the required connections were made between the treatment stages. Raw water connections allowed the incoming stream to enter the plant. The treatment connections linked the water path to the RO section. Treated and reject water connections completed the system’s output arrangement.

Each connection had to match the intended flow direction. This stage required attention to the complete system rather than to individual components because an RO plant functions through the combined operation of all connected sections.

4. Final Installation Checks

Following connection work, the installed system required a final review before commissioning. The team needed to ensure that the equipment had been positioned correctly and that the water paths were ready for testing.

Completing these checks created the transition from installation to commissioning. The plant was then ready for controlled testing before regular operation began.

Plant Commissioning

Commissioning confirms whether an installed treatment plant operates according to its intended design. It provides an opportunity to check connections, water movement and equipment operation before the plant enters regular service. This step is especially important for an RO system because the complete process must function together.

At NFCSF, commissioning followed the completion of the installation work. The plant was prepared for operation so that the treatment sequence could be checked under working conditions.

1. System Testing

The testing stage involved checking the installed arrangement and verifying that the system could operate through its treatment sequence. The team reviewed the water flow from the entry side through the treatment section and into the treated water outlet.

The RO section also had to operate as part of the complete system. This meant checking the membrane treatment stage and confirming that the water path remained consistent during operation.

2. Performance Confirmation

Commissioning also provides a basis for confirming whether the plant meets the project requirement. For this installation, the key defined requirement was the 2000 LPH plant capacity and the use of RO technology.

The commissioning process therefore focused on preparing the system for operation and confirming that the installed plant functioned as intended. Once the checks were completed, the treatment system could move into its intended operational role at the facility.

The successful commissioning completed the main installation cycle and prepared the plant to support treated water use. This makes the question of treated water utilisation important to the overall value of the project.

Treated Water Reuse

Producing treated water is only one part of a water treatment project. The treated water must also serve a useful purpose within the facility. Effective use of the treated output helps connect the treatment plant directly with the client’s operational requirement.

At NFCSF, the installed RO plant provides treated water for the intended requirement of the facility. 2000 LPH RO plant was installed to provide treated water through the Reverse Osmosis process. The produced water can be directed to the required point of use within the facility according to the client’s operating needs.

The plant therefore creates a defined path from incoming water to treated water supply. This arrangement gives the facility a dedicated treatment source and allows water to be processed before it is used for its intended purpose.

The usefulness of the system can be assessed further by looking at the outcomes of the installation and the information available about its performance.

Results and Performance

Project results provide a practical way to understand whether an installed treatment system has achieved its intended objective. In a water treatment project, performance may be assessed through treatment capacity, treated water quality, system operation and other measured parameters.

The NFCSF project resulted in the successful installation and commissioning of a 2000 LPH RO Plant. The plant now provides a defined RO-based treatment process for incoming water.

1. Treatment Capacity

The installed system has a rated capacity of 2000 LPH. This gives the project a clear and measurable treatment rate. The capacity was the central output requirement around which the plant was installed.

2. Operational Readiness

Completion of installation followed by commissioning indicates that the plant was prepared for operation. The treatment equipment was installed, connected and tested as part of the project execution.

3. Water Treatment Output

The RO process provides treated water by passing water through the RO membrane under pressure. The 2000 LPH RO system and its commissioning therefore was successful installed at the NFCSF facility in Jasola Vihar, Delhi. The completed project provided the client with the intended treatment infrastructure and a defined RO treatment process.

Customer response also provides useful context after a project is completed.

Confirmed Outcome Status
Installation of 2000 LPH RO Plant Completed
System Connections & Testing Completed
Plant Commissioning Completed
Laboratory/TDS Data Not provided — not included in this case study

 

Customer Feedback/Testimonial

Customer feedback helps show how a completed project met the client’s requirement. It can also provide a practical view of the installation experience and the value of having the required treatment system in place.

Customer Testimonial

Having the 2000 LPH RO Plant installed at our NFCSF facility in Jasola Vihar has given us the dedicated water treatment system required for our site. The project was completed with the installation and commissioning of the RO plant as planned. We now have a defined treatment system with a capacity of 2000 litres per hour to support our treated water requirement. The installation has provided us with the RO-based water treatment solution we needed for the facility.

Read some interesting information for the commercial RO plant manufacturer in Faridabad

Conclusion

The successful installation of the 2000 LPH RO Plant at NFCSF in Jasola Vihar, Delhi demonstrates the practical role of a properly selected commercial water treatment system. The project addressed the client’s requirement through a defined RO treatment process and an installed capacity of 2000 LPH. The plant was installed at the facility, connected as a complete treatment system and commissioned before operation.

The project also shows why capacity, treatment technology, installation planning and commissioning need to work together. For NFCSF, the completed installation established a dedicated RO treatment arrangement for its intended water requirement.

Netsol Water continues to provide water treatment solutions as a Commercial RO Plant Manufacturer in Delhi. Facilities that require an RO system can benefit from selecting a plant according to their treatment objective and required capacity. Proper assessment of the water source and the intended application also helps in choosing a suitable treatment arrangement.

For information about commercial RO plants or to discuss a similar water treatment requirement, contact Netsol Water for a consultation and project discussion. The team can help evaluate the requirement and identify a suitable RO treatment solution for the facility.

Contact Netsol Water

Contact Details
Phone +91-9650608473
Email enquiry@netsolwater.com

 


Successfully-Installed-2000-LPH-RO-Plant-at-Godrej-Zenith-Gurgaon.webp

August 18, 2026by Netsol Water

Successfully Installed 2000 LPH RO Plant at Godrej Zenith Gurgaon

The provision of good and properly treated water is a key requirement for today’s residential and commercial developments. Water quality can vary due to raw-water quality and/or dissolved solids, hardness, suspended matter, and other contaminants, which can have an impact on water usability, plumbing systems, equipment performance, and overall facility operations. In order to overcome these challenges, a suitable water-treatment plant should incorporate an efficient pretreatment process as well as a robust membrane filtration process.

A 2000 LPH Reverse Osmosis Plant was installed at Godrej Zenith, Gurgaon successfully, to ensure a reliable supply of treated water while sustaining the efficient running of the plant and the consistent quality of the water produced.

The project comprised the following activities: Water-treatment requirement assessment, selection of appropriate treatment technology, fabrication of the plant, transportation, installation, testing, commissioning and performance verification. The system was designed based on the reverse osmosis technology, which is protected by proper pretreatment stages and has high treatment efficiency.

This project showcases our capabilities as a leading Commercial RO Plant Manufacturer in Gurgaon and delivers customized RO solutions to residential complexes, commercial buildings, institutions, industries, hotels, hospitals, corporate buildings, and more, that demand reliable water purification.

Project Overview

The project entailed the supply, installation, testing and commissioning of a 2000 litres per hour (LPH) commercial RO plant for Godrej Zenith, Gurgaon.

The main goal was to implement a well-designed water-treatment method that could remove dissolved contaminants and enhance the water quality of the raw water. The performance of an RO membrane is highly dependent on the quality of water fed to the membrane system, so the project was planned as an integrated treatment system rather than just putting up an RO membrane unit.

All of these features – pretreatment, filtration, high pressure pumping, reverse osmosis membrane separation, instrumentation, flow control mechanisms, and collected treated water – constituted the full treatment arrangement.

The following were given special consideration:

  • Consistent treated-water production
  • Decrease in dissolved salts and undesirable impurities
  • Protection of RO membranes
  • Operational reliability
  • Ease of maintenance
  • Use of available space is maximized.
  • Maintains a stable system pressure and flow.
  • Convenient operator access
  • The ability to install in a safe and systematic manner
  • Long-term plant performance

The 2000 LPH capacity is based on the treated water demand of the site and anticipated operating conditions.

Its successful installation enables Godrej Zenith to have a water-treatment system that is planned to give its customers treated water of 2,000 litres per hour for the above stated operating conditions and parameters.

Client Details

Project Detail Information
Client/Project Godrej Zenith
Water Resources Water Resources Management, Water Treatment, Water Quality Management
Type of RO plant Commercial.
Rated Capacity 2000 LPH
Location Gurgaon, Haryana

 

Godrej Zenith needed a water treatment system that could supply a reliable amount of treated water, with consistent quality.

When choosing a RO for projects like this, the right choice of RO capacity is just part of the equation. Other factors to consider include water chemistry, operating hours, recovery expectations, pressure requirements, feed-water characteristics, pretreatment requirements, equipment accessibility and future maintenance requirements.

These requirements were analyzed by our technical team as part of the treatment configuration development.

This led to the development of a tailor-made 2000 LPH commercial RO unit, which is optimized for a combination of water quality enhancement, plant efficiency, protection of RO membranes and ease of maintenance.

Project Location – Godrej Zenith, Gurgaon

The RO plant was commissioned in Godrej Zenith at Gurgaon, Haryana.

Gurugram, popularly known as Gurgaon, has undergone a large scale residential, corporate, institutional and commercial growth. The region’s large properties need reliable water-management systems to keep them running.

Ground water and other sources of water may contain various amounts of dissolved minerals, hardness, suspended materials, and other contaminants. Other sources of water, seasonal changes, storage conditions, and area water supply systems can also impact water quality.

Therefore, plant capacity is not the only criterion to consider when choosing a water-treatment system. Water quality and water quantity must both be taken into account for proper treatment design.

Being one of the leading Commercial RO Plant Manufacturer in Gurgaon, we do not use a one size fits all approach for all projects, but customize the design of RO systems for each site.

Plant Capacity – 2000 LPH

The treated water production capacity of the RO system installed is:

2000 Litres Per Hour (LPH)

Plant size typically means that it is designed to give a purified water output of around 2,000 litres an hour under the plant design conditions.

The chosen capacity offers an ideal combination of:

  • Required treated-water demand
  • Available feed-water quantity
  • Operating duration
  • RO recovery
  • Membrane loading
  • Pump capacity
  • Storage requirement
  • Space availability
  • Expected future usage

When a RO plant is installed correctly, it does not result in the problems caused by under sizing or oversizing the plant.

An undersized system can be running all the time and could come up short of meeting peak demand. A system that is too large, however, will waste money on capital expense, equipment size and power use.

The configuration of 2000 LPH was therefore chosen, to provide an effective solution for the water-treatment requirement of the site, yet maintain the ability to operate and maintain the system.

Treatment Technology

This project employs the main treatment technology of RO.

Reverse osmosis is a pressure driven membrane-separation process, which is widely used for removal of dissolved salts and other undesirable component from water.

In RO water treatment, feed water is pumped at high pressure through semi-permeable membranes, which are treated beforehand. As the water molecules cross the membrane, they leave behind a high concentration of salts and other rejected components as the concentrate stream.

But an effective commercial RO plant is more than just an RO membrane.

The treatment system installed at Godrej Zenith consists of various stages to ensure that the RO membranes receive the feed water suitably treated.

The overall technology is comprised of:

  • Feed-water handling
  • Pressure boosting
  • Multimedia/sand filtration
  • Activated carbon filters
  • Micron cartridge filtration
  • Chemical conditioning – as appropriate.
  • High-pressure pumping
  • Reverse Osmosis Membrane Separation
  • Product-water collection
  • Monitoring the flow and pressure.
  • Influent Characteristics

The source or feed water had impurities that required further treatment prior to use.

In the context of local source and supply conditions, raw water from Gurgaon may pose treatment issues like:

  • Dissolved salts or elevated TDS
  • Hardness
  • Fine suspended matter
  • Turbidity
  • Calcium and magnesium compounds
  • Chlorides and other dissolved ionic constituents
  • Colour or odour-causing substances
  • Organic impurities
  • Fine particles capable of fouling RO membranes

Wherever possible, the design of any RO system should be based on a water analysis.

The treatment train is designed for this installation to allow the removal of the contaminants from the water before it reaches the membranes and to create water with a much better quality.

Direct feeding of untreated water into RO membranes can lead to:

  • Membrane scaling
  • Fouling
  • Reduced permeate flow
  • Increased pressure requirement
  • Reduced salt rejection
  • More frequent membrane cleaning.
  • Shortened membrane life

The influent water conditions thus influenced the type and configuration of the pretreatment equipment.

Treatment Process

Godrej Zenith Gurgaon installed 2000 LPH commercial RO plant which has a systematic treatment sequence.

Step 1: Feed Water Collection

Water that comes from the designated raw water source or water storage facility to the treatment system.

To maintain the continuous operation of the RO plant it is essential to have enough feed-water.

Step 2: Feed/Raw Water Pumping

The pretreatment units require a certain flow and pressure, which is achieved using a feed pump.

Feed pressure stability is crucial because fluctuations in feed pressure can impact the filtration process downstream and RO performance.

Step 3: Multimedia/Sand Filtration

Water for the feed is passed through a filtration unit which removes:

  • Suspended particles
  • Sediment
  • Silt
  • Turbidity
  • Coarser particulate matter

These contaminants are removed to ensure protection of subsequent treatment stages.

Step 4: Activated Carbon Filtration

Activated carbon filtering to remove compounds that cause an undesirable colour, odour and some organic contaminants is required by the feed-water characteristics in most cases.

It can also serve as a protection for downstream membranes where there are oxidizing compounds to be controlled.

Step 5: Chemical Conditioning

Appropriate dosing can be added to prevent scaling and optimize membrane performance, depending on the chemistry of the feed water.

Dissolved minerals can be deposited on the surface of the membrane, causing scale formation, which is a critical issue in RO systems.

Chemical conditioning minimizes precipitation and can increase the operating life of the membrane.

Step 6: Micron Cartridge Filtration.

Water is filtered through small cartridge filters prior to entering the high pressure RO section.

This filtration stage serves as an extra layer of protection by getting rid of fine particles that might have gotten through the preceding filtration stages.

Step 7: High-Pressure Pumping

The feed water is pumped up to the required pressure for membrane separation by a high-pressure pump.

The pump is one of the most significant parts of the commercial RO plant as the required pressure should be sufficient to overcome the osmotic pressure for the desired product-water production.

Step 8: Reverse Osmosis Membrane Treatment

Feed water is pressurized and fed into the RO membrane housings.

The membrane system splits the feed stream into:

Permeate/Product Water: Water that goes through the RO membrane and has much lower concentration of dissolved impurities.

Rejected/Concentrated Water: Salt and impurities rejected by the membranes, while the water is concentrated.

Step 9: Product water collection tank

The purified permeate is fed to the treated-water storage facility, from where it is used.

Step 10: Monitor and control

Essential operating parameters can be monitored via pressure gauges, flow meters, valves and other instrumentation.

This allows the detection of plant performance changes before they become serious maintenance problems.

Major Equipment for 2000 LPH RO Plant.

The entire plant design includes equipment chosen based on the required treatment conditions, operating pressure and flow.

Major Equipment Purpose / Description
Raw Water/Feed Pump Provides sufficient water flow and pressure to the pretreatment section.
Multimedia/Sand Filter Minimizes suspended matter, silt, sediment and turbidity of incoming water.
Activated Carbon Filter Removes undesirable organics, odours, colour and other contaminants.
Chemical Dosing System Used for water conditioning and/or membrane-scale control based upon the characteristics of the raw water.
Micron Cartridge Filter Fine filtration directly in front of the RO section.
High-Pressure Pump Produces the operating pressure for efficient reverse osmosis.
RO Membrane Housings Hold the reverse osmosis membrane elements and be able to resist the operating pressure of the system.
RO Membranes Carry out the main dissolved-solids separation operation.
Flow Meters Allow product-water and reject-water flow to be observed by operators.
Pressure Gauges Assist in measuring pressure at significant treatment points and detect abnormal operating conditions.
Control Panel Central Controls for electricity and helps in safe operation of pumps and other equipment.

IPV is the process of connecting pipes and valves together.

Regulates and regulates water flow between treatment processes.

All major components have been installed to ensure ease of operation and future maintenance.

Installation Process

The installation of a commercial RO plant involves appropriate planning because even the well-designed RO plant can perform poorly if there is improper piping, electrical connection, foundation alignment, foundation preparation, or improper commissioning.

The installation of Godrej Zenith project was a systematic process.

1. Site Assessment

Prior to the final position of the equipment the available installation space and utility arrangements were evaluated.

Considerations included:

  • Available floor area
  • Water inlet location
  • Drainage arrangement
  • Electrical supply
  • Treated-water outlet
  • Operator movement
  • Maintenance clearance
  • Equipment accessibility
  • Equipment Positioning

Key treatment components were placed in a logical sequence that started at the raw water intake and ended at the treated water discharge.

Equipment spacing was observed to allow for routine inspection and servicing as much as possible.

2. Piping Connections

The piping between the feed-water section, filters, dosing arrangement, cartridge filtration system, high-pressure pump, membrane system, reject line and permeate outlet was installed.

3. Electrical Connections

Electrical connections were made to pumps and control systems based on the plant operating criteria.

4. Instrument Installation

Monitoring equipment such as pressure, flow, valves, etc. placed at appropriate locations.

5. Leakage and Connection Checks

Inspection for leaks and alignment of piping joints, membrane housings, valves and connections were performed prior to regular operation.

Plant Commissioning

One of the most critical phases of any water-treatment system installation is commissioning.

It is not just about starting the RO plant, but it is about checking whether all the treatment stages are working properly or not and whether the whole system is working in an integrated manner.

The commissioning of the 2000 LPH RO plant at Godrej Zenith Gurgaon was a commissioning exercise that involved the following:

  • Inspection of installed equipment
  • Verification of piping connections
  • Checking electrical connections
  • Confirmation of valve positions
  • Filter flushing
  • Cartridge-filter inspection
  • Pump operation checks
  • High-pressure section inspection
  • Membrane-system startup
  • Pressure adjustment
  • Flow-rate adjustment
  • Permeate-flow monitoring
  • Reject-flow monitoring
  • Product-water quality checking
  • System leakage inspection
  • Overall operational testing

It was initially under a controlled operation until the pressure and flow of the system was stabilized.

The RO system was then tested to verify the production of the treated water is in line with the rated capacity and operating conditions of the plant.

The plant was successfully tested and put into operation for regular use.

The one of the biggest benefit of an onsite commercial RO plant is that you can generate treated water as per the operational requirements of the property.

Some potential applications of treated RO water are:

  • Domestic water requirements
  • Cleaning applications
  • Utility requirements
  • Process-water applications
  • Food processing equipment that uses low TDS water

We also accept other alternative uses for property, as outlined below:

Treatment levels should always match the use(s) of the treated water and the regulatory/operational requirements.

The water quality of RO reject water may also be considered for potential non-potable reuse opportunities, when water quality, infrastructure, and local needs allow.

Applications may be selected cleaning, flushing or other non-critical uses, following suitability determinations.

This re-use can help to achieve more responsible water management and minimise unnecessary water waste.

 

Results and Performance

Godrej Zenith 2000 LPH RO plant was successfully installed and commissioned and it was found to be operating very stable with the designed parameters.

The main outcomes of the project were:

1. Consistent Treated-Water Production

Under the design operating conditions, the system was designed to produce about 2000 litres per hour of treated water.

A substantial decrease in the concentration of dissolved impurities.

The dissolved salts and other membrane-rejectable components of the feed water were significantly decreased through the use of the RO membrane stage.

2. Improved Water Quality

The treated water was significantly better than the untreated feed water and is suitable to the intended site use.

3. Stable Operating Pressure

The high pressure system was tuned during the commissioning process to obtain stable operation of the membrane.

4. Effective Pretreatment

The particulate and contaminant load entering the RO membrane section is reduced by the use of the pretreatment units.

5. Membrane Protection

The system minimizes the chances of fouling and scaling of the membranes by using the right pretreatment and chemical conditioning.

6. Reliable System Operation

Dependable day to day operation relies on correct size, systematic piping, instrumentation and commissioning.

7. Maintenance-Friendly Layout

The equipment layout enables filters, valves, gauges, pumps and membrane housings to be easily accessed for routine inspection and maintenance.

This successful installation proves that the proper combination of selection, pretreatment and the professional commissioning is of key importance.

Customer Feedback / Testimonial

Godrej Zenith’s commissioned 2000LPH RO plant is a testament to the client’s need for a reliable and professionally set up commercial water treatment system.

Client testimonial:

*The LPH RO plant was installed at our site successfully and the system is operating with a regular rate of treated water production. Technical team provided proper support during installation, testing and commissioning.*

The successful completion of this project further highlights our commitment for designing, fabricating, installing, commissioning, and after-sales technical support of not only RO equipment, but an entire water treatment solution.

Why opt for us as your Commercial Ro Plant Manufacturer in Gurgaon?

Capacity and price are not the only two criteria that should be used to select an RO plant.

The lifespan of a commercial RO system is determined by a number of factors such as:

  • Raw-water analysis
  • Appropriate plant sizing
  • Pretreatment design
  • Membrane selection
  • Pump sizing
  • Operating pressure
  • Recovery percentage
  • Instrumentation
  • Installation quality
  • Preventive maintenance
  • Technical support, availability of support.

We are a Commercial RO Plant Manufacturer in Gurgaon and offer plants according to site specific needs.

RO solutions that are commercial and industrial, can be made to fit various capacities and applications such as:

  • Residential societies
  • Commercial complexes
  • Corporate offices
  • Hotels
  • Hospitals
  • Educational institutions
  • Restaurants
  • Manufacturing facilities
  • Food-processing units
  • Industrial plants
  • Construction projects
  • Institutional buildings
  • Warehouses
  • Shopping complexes

RO plants can be combined with other technologies like multimedia filtration, activated carbon filtration, softening, antiscalant dosing, UV treatment, ozone treatment, ultrafiltration and other water-treatment technologies, depending on the water characteristics and application.

Project Summary

Details of the project: Installation of Commercial RO Plant.

Project Detail Details
Client Godrej Zenith
Location Gurgaon, Haryana
Plant Capacity 2000 LPH
Primary Technology Reverse osmosis.
Pretreatment Filtration and water conditioning according to the needs of the feed water.
Treatment The use of treated water for plant needs.
Project Scope Design, supply, installation, test and commissioning.
Install and Commission Status Successfully Installed and Commissioned;

The project illustrates the potential of a well-designed RO plant to be a reliable solution for consistent treated water quality for commercial and residential developments.

Every stage of the treatment requirement to the final commissioning was completed with a focus on operational reliability, membrane protection, efficiency and maintainability over time.

Call to Action

In cases where the issues are high TDS, hardness, dissolved salt, water quality, or intermittent availability of treated water in residential societies, commercial buildings, hotels, hospitals, institutions, offices, restaurants or industrial facilities, the right commercial RO system will be able to help.

We produce and install the customized RO plant as per your requirement:

  • Raw-water quality
  • Required treated-water capacity
  • Daily water consumption
  • Available installation space
  • Operating conditions
  • Intended application
  • Budget
  • Automation requirements

The system can be designed to meet the specific requirements of the project, whether for a 5000 LPH or any other higher capacity RO plant, or a 5000 LPH, 3000 LPH, 2000 LPH, 1000 LPH or 500 LPH RO plant.

Read some interesting information for the Industrial RO Plant Manufacturer in Faridabad

Need a Commercial RO Plant in Gurgaon?

Contact us for:

  • Site Assessment
  • Water Quality Evaluation
  • RO Plant Design and Capacity Selection
  • Commercial RO Plant Manufacturing
  • Installation and Commissioning
  • RO Membrane Replacement
  • Plant Maintenance and AMC Services
  • Existing RO Plant Upgradation
  • Technical Support and Troubleshooting

If you are searching for a reliable Commercial RO Plant Manufacturer in Gurgaon, contact our water-treatment specialists to discuss your requirement and receive a customized solution.

Get in touch today for a commercial RO plant consultation, site visit, and customized quotation.

Contact Netsol Water at:

Phone: +91-9650608473

Email: [enquiry@netsolwater.com](mailto\:enquiry@netsolwater.com)