1000 LPH RO Plant - Sewage Treatment Plant Manufacturers

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September 8, 2026by Netsol Water

Successfully Installed 1000 LPH RO Plant at Swami Sahjanand Hospital Shahdara, Delhi

Swami Sahjanand Hospital in Shahdara, Delhi required a suitable water treatment system to support its operational water needs. To address this requirement, we successfully installed a 1000 LPH RO plant at the hospital premises. The project focused on providing a practical water treatment solution that could produce treated water at a steady rate while fitting the requirements of the facility.

Water treatment requires careful planning because the treatment system must match the required output and the quality of the incoming water. A properly selected RO plant can help reduce dissolved impurities and improve the quality of treated water. For an institutional facility such as a hospital, having a planned water treatment system also helps create a more controlled approach to water management.

We approached the project with attention to plant capacity, treatment stages, equipment selection, installation and commissioning. The 1000 LPH capacity was selected for the stated project requirement. The installation then moved through site preparation, equipment placement, system connections and performance checks. The completed installation demonstrates how a Commercial RO Plant Manufacturer in Delhi can provide a treatment solution based on a specific site requirement without adding unsupported features or claims.

Project Overview

A water treatment plant must address the actual needs of the facility where it operates. The project at Swami Sahjanand Hospital was planned around the requirement for a 1000 LPH RO plant. The objective was to install a treatment system that could provide treated water at the required production rate and operate as an integrated plant rather than as a collection of separate components.

The scope of the project included the installation of the RO treatment system along with the associated equipment and connections required for operation. Netsol Water handled the installation process and prepared the system for commissioning after completing the necessary site work.

The project also required coordination between plant equipment and the available site conditions. Correct placement of the equipment was important because the treatment stages need to work in a defined sequence. The raw water first enters the treatment arrangement and passes through the required stages before reaching the RO membrane section. The treated water then moves toward the designated storage or use point.

The overall goal was therefore to create a functioning water treatment arrangement that matched the hospital’s stated capacity requirement. Once installation was completed, the plant was tested and commissioned so that the system could move from installation to regular operation.

Client Details

Swami Sahjanand Hospital is the client facility for this project. The project information identifies the facility as a hospital located in Shahdara, Delhi. A hospital environment has a clear need for dependable water management because water forms part of many routine activities within a healthcare facility. The treatment requirement for this project was addressed through the installation of a dedicated 1000 LPH RO plant. The plant was intended to provide treated water based on the specified capacity rather than depending only on untreated incoming water.

Selecting the right treatment arrangement also helps a facility manage water quality in a more structured manner. The RO system gives the client a defined treatment process through which incoming water passes before treated water is produced. This creates a clear path from raw water intake to treated water output.

For Netsol Water, understanding the client’s requirement was therefore an important part of the project. The treatment system had to match the specified output and had to be installed in a way that supported proper plant operation at the hospital site.

Detail Information
Client Swami Sahjanand Hospital
Facility Type Hospital (institutional/healthcare facility)
Location Shahdara, Delhi
Solution Provided 1000 LPH RO Plant
Installed By Netsol Water

 

Project Location

The location of a treatment plant affects how the installation is planned and executed. Every site has its own available space, access conditions and connection points. The project was carried out at Swami Sahjanand Hospital in Shahdara, Delhi. The urban setting made proper planning of equipment placement and system connections important during installation.

The treatment plant needed to be positioned in a suitable area where the equipment could operate correctly and where the required piping and electrical connections could be completed. The installation team also needed to consider the physical arrangement of the treatment system so that the water could move through the process in the intended sequence.

The location also gives the project practical relevance for institutions in Delhi that need dedicated water treatment systems. The successful installation reflects the ability of a Commercial RO Plant Manufacturer in Delhi to execute an RO plant project at an operating institutional site while keeping the system focused on the specified requirement.

Plant Capacity

Plant capacity determines how much treated water a system can produce within a given period. Choosing a capacity that matches the intended requirement helps prevent a mismatch between plant output and actual use. A system with an unsuitable capacity may not serve the intended purpose efficiently. For this reason, capacity selection formed an important part of the project planning.

For Swami Sahjanand Hospital, the installed RO plant has a capacity of 1000 litres per hour. This means the plant is designed to produce treated water at a nominal rate of 1000 litres per hour under the applicable operating conditions.

The selected capacity provides the hospital with a defined level of treated water production. It also gives the facility a treatment system that has been sized for the requirement stated for this project. The 1000 LPH rating is therefore one of the key specifications of the installation.

Capacity alone does not determine plant performance. The complete treatment system must work together so that the raw water reaches the RO section in suitable condition and the plant can continue to produce treated water as intended. This makes the treatment technology and process arrangement equally important.

Parameter Specification
Installed Capacity 1000 LPH (Litres Per Hour)
Treatment Technology Reverse Osmosis (RO)
Project Site Swami Sahjanand Hospital, Shahdara, Delhi
Plant Type Institutional / Commercial RO Plant
Design Basis Defined production rate matched to hospital’s requirement

 

Treatment Technology

The project uses Reverse Osmosis as the main water treatment technology. RO is widely used when water needs treatment to reduce dissolved impurities. The process works by applying pressure to water and directing it through a semi-permeable membrane. The membrane allows water to pass while restricting many dissolved substances and other contaminants.

For this project, the RO membrane forms the central treatment stage. However, the membrane does not function independently. Proper pretreatment supports the RO process by preparing the incoming water before it reaches the membrane. This helps the complete system follow an orderly treatment sequence.

1. Reverse Osmosis Process

During RO operation, raw water is brought to the membrane section at suitable pressure. The pressure drives water through the membrane. A portion of the incoming water passes through the membrane as treated water while the concentrated stream leaves through the reject or concentrate side.

The RO membrane is therefore responsible for the main separation step in the treatment process. Its performance depends on several operating conditions including feed water quality, pressure and the condition of the pretreatment stages.

2. Importance of Pretreatment

Pretreatment supports the RO membrane by removing or reducing materials that can interfere with membrane operation. Suspended matter and other unwanted materials can place an unnecessary load on the membrane when they are not controlled before the RO stage.

The treatment system therefore uses preceding stages to prepare the feed water. Once the water reaches a suitable condition, it enters the RO section for the main separation process. This arrangement gives each treatment stage a clear role and allows the system to work as a connected process.

Influent Characteristics

Understanding the incoming water is essential before selecting and operating a treatment system. Feed water quality can affect membrane performance, pretreatment requirements and overall operating conditions. Parameters such as TDS, hardness, turbidity, iron and microbial content can influence how a treatment plant should be designed.

The treatment system was installed to process the available incoming water and produce treated water through the specified RO arrangement. The pretreatment stages provide the initial conditioning required before water reaches the RO membrane. This preparation is important because the membrane section performs the main dissolved impurity reduction.

Influent characteristics can also change with the source and local conditions. Regular monitoring is therefore useful for understanding whether operating conditions remain suitable over time.

Treatment Process

A properly arranged treatment process helps water move through the plant in the correct order. Each stage prepares the water for the next stage and supports the overall performance of the system. At Swami Sahjanand Hospital, the treatment sequence is centred on pretreatment followed by RO purification.

1. Raw Water Entry

The process begins when raw water enters the treatment system. At this stage, the incoming water contains the impurities that the treatment plant is designed to reduce. The water then moves into the pretreatment section so that it can be conditioned before reaching the RO membrane.

2. Pretreatment Stage

Pretreatment forms the first major treatment step after raw water entry. Its purpose is to improve the condition of the feed water before the RO stage. Depending on the system arrangement, pretreatment equipment can help control suspended matter and other substances that may affect downstream equipment.

By preparing the water before membrane treatment, the pretreatment section creates better operating conditions for the RO unit. This makes the relationship between the stages important. The pretreatment stage does not replace RO. Instead, it supports the membrane treatment stage.

3. High-Pressure Feed to RO

After pretreatment, the water is directed toward the RO section. The RO system requires pressure to force water across the semi-permeable membrane. The high-pressure arrangement therefore becomes the next important step in the treatment sequence.

The feed water reaches the membrane under pressure and the separation process begins. The membrane allows a portion of water to pass through while retaining many dissolved substances.

4. RO Membrane Separation

The membrane section is the main treatment stage of the plant. Water passing through the membrane becomes the treated product stream. The remaining concentrated stream is separated from the product water and is managed through the system’s reject arrangement.

This stage determines the main purification action of the plant. The performance of the membrane depends on proper feed conditions and correct operation of the supporting equipment.

5. Treated Water Collection

After membrane separation, the treated water moves toward the designated collection or storage point. The treated water then becomes available for the intended application at the facility.

The complete process therefore follows a connected path from raw water intake through pretreatment and pressurisation to membrane separation and treated water collection. This sequence helps the 1000 LPH plant operate as one integrated treatment system.

Stage Function
Raw Water Entry Incoming water enters the system carrying impurities the plant is designed to reduce
Pretreatment Stage Improves feed water condition before it reaches the RO stage
High-Pressure Feed to RO Pressurised water is directed toward the membrane for separation
RO Membrane Separation Water is separated into treated product stream and concentrated reject stream
Treated Water Collection Treated water moves to the designated collection/storage point

 

Major Equipment

Equipment selection directly affects how a treatment plant operates. Each component has a specific function and must work with the other parts of the system. For the hospital project, the major equipment forms the operating structure of the treatment plant.

1. Pretreatment Equipment

Pretreatment equipment prepares the raw water before it enters the RO section. It helps reduce the load placed on the membrane by controlling the materials that could interfere with membrane operation.

2. Feed and High-Pressure Pumping System

Pumping equipment moves water through the treatment stages and provides the pressure required for RO operation. The high-pressure pump is particularly important because the membrane separation process depends on sufficient pressure to move water through the membrane.

3. RO Membrane Assembly

The RO membrane assembly carries out the main separation process. It divides the feed into treated water and concentrated reject water. The membrane is therefore the central treatment component in the plant.

4. Control and Connection Arrangement

The plant also requires suitable piping, valves, electrical connections and control arrangements to link the treatment stages. These connections allow water to move through the process and allow the operator to manage the plant during operation.

Together, these components form the complete treatment arrangement. Proper integration is important because the performance of one section can affect the operation of the next.

Equipment Role in the System
Pretreatment Equipment Prepares raw water and reduces the load placed on the membrane
Feed & High-Pressure Pumping System Moves water through the stages and provides pressure for RO operation
RO Membrane Assembly Carries out the main separation into treated water and reject water
Control & Connection Arrangement Piping, valves, electrical and control components linking the stages

 

Installation Process

Plant installation requires careful execution because the equipment must be placed correctly and then connected into a working treatment system. At the hospital site, the installation process followed a logical sequence so that the plant could move from physical placement to testing.

The work began with site preparation and assessment of the area selected for the treatment plant. The installation team considered the available space and the points needed for water, drainage and other system connections. Preparing the site first created a suitable base for equipment installation.

The major plant components were then positioned according to the treatment layout. Correct placement was important because the stages needed to remain connected in the required process sequence. The team arranged the equipment so that water could move from pretreatment toward the RO section without unnecessary complications.

After positioning the equipment, the required piping connections were completed. These connections linked the raw water side, treatment stages, RO section, treated water outlet and reject stream. Proper valve and pipe connections helped establish the intended flow path.

Electrical connections were then completed for the powered equipment and control arrangements. The installation team checked the physical and operational connections before moving toward commissioning.

The final installation stage involved reviewing the complete system. This included checking whether the equipment was properly connected and whether the treatment sequence was ready for testing. Once these checks were completed, the plant was prepared for commissioning.

Plant Commissioning

Commissioning marks the transition between installation and regular plant operation. It allows the team to verify that the equipment works together as intended and that the water treatment process is operating according to the project requirement.

At the hospital site, commissioning involved checking the installed system and operating the plant under controlled conditions. The team reviewed the water flow through the connected stages and checked the operation of the pumps and RO section.

The commissioning process also provided an opportunity to identify installation issues before regular use. Piping, valves and electrical connections were checked to confirm that the complete arrangement functioned correctly.

The plant was then run to confirm its operational readiness. The 1000 LPH capacity served as the principal plant specification for the project. The successful completion of commissioning indicated that the installed RO system was ready to support the intended water treatment requirement.

Treated Water Reuse

Effective use of treated water is an important part of any water treatment project. Producing treated water is only one part of the process. The facility must also use the treated output according to its intended requirement.

For Swami Sahjanand Hospital, the installed 1000 LPH RO plant provides treated water for the facility’s intended water treatment needs. The RO system gives the hospital a dedicated source of treated water from the installed treatment process. This creates a structured route from incoming raw water to treated water production. The availability of a dedicated treatment plant also provides the facility with a defined treatment capacity that can be managed through the plant’s operating routine.

 

Results and Performance

Project results provide a practical measure of whether the installed system meets its intended purpose. In this project, the main measurable outcome is the successful installation and commissioning of a 1000 LPH RO plant at Swami Sahjanand Hospital.

The plant now provides a dedicated RO treatment system with a nominal production capacity of 1000 litres per hour. This directly addresses the specified requirement for the project and gives the facility a defined treatment capacity.

The installation also established a complete treatment sequence that includes pretreatment, pressurisation, RO membrane separation and treated water collection. Each stage supports the next and allows the system to operate as an integrated plant.

The successful completion of the installation and commissioning remains an important project outcome. It shows that the treatment system was installed, connected and prepared for operation at the hospital site. For a Commercial RO Plant Manufacturer in Delhi, completing this type of project also demonstrates practical capability in delivering treatment systems for institutional requirements.

Confirmed Outcome Status
Installation of 1000 LPH RO Plant Completed
Pretreatment, Pumping & Piping Connections Completed
Plant Commissioning Completed
Laboratory/TDS Data Not provided — not included in this case study

 

Customer Feedback or Testimonial

Customer feedback provides useful insight into the completion and practical acceptance of an installation. It can also show whether the delivered system met the requirement for which it was installed.

The Netsol Water team completed the 1000 LPH RO plant installation on schedule and with clear communication throughout the process. The system has been operating reliably and meets our facility’s requirement. We needed a dependable water treatment solution for the hospital, and Netsol Water delivered exactly that. The plant has performed consistently since commissioning, and their team stayed professional from planning through installation.

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Conclusion

Reliable water treatment begins with a clear understanding of the requirement, followed by suitable capacity selection, process design, equipment integration and careful installation. At Swami Sahjanand Hospital in Shahdara, Delhi, Netsol Water successfully completed the installation and commissioning of a 1000 LPH RO plant to address the stated water treatment requirement.

The project brought together pretreatment, RO membrane treatment, pumping, piping and control connections into one working system. The installed capacity gives the facility a defined treated water production rate while the RO process provides the main separation step required for water purification.

Netsol Water continues to serve institutional and commercial requirements as a Commercial RO Plant Manufacturer in Delhi. Businesses, hospitals and other facilities that need a suitable RO treatment solution can discuss their water requirement, plant capacity and site conditions with the Netsol Water team.

For more information about RO plants and water treatment solutions, contact Netsol Water to discuss your requirement and request a suitable consultation.

Contact Netsol Water

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

 


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August 12, 2026by Netsol Water

Successfully Installed 1000 LPH RO Plant at Capacite, Gurgaon

Purified water is important to commercial buildings, offices, construction sites, industrial sites, institutions and large workplaces. Raw water may contain dissolved salts, hardness, suspended particles, unpleasant taste or smell and other contaminants that are not desirable for direct use. A properly designed RO plant provides an effective solution by combining pre-treatment, membrane separation, process control, and water-quality monitoring.

Netsol Water has installed a 1000 LPH RO Plant at Capacite, Gurgaon, which is a commercial and industrial water purification plant that can produce high purity water. The installation illustrates the ability of the right size RO plant to satisfy the daily purified water need of a commercial water facility in a compact and manageable treatment setup.

This project serves as an excellent example of how plant capacity, treatment stages, equipment selection, installation, and commissioning can be linked to create an effective water-treatment system.

Project Overview

The project was the installation of Capacite 1000 litres per hour (LPH) RO plant in Gurgaon, Haryana. The primary goal was to obtain a dependable system for producing purified water on site for the facility rather than relying on the untreated incoming water or the supply of purified water from outside.

The product water capacity for a 1000 LPH plant is about 1,000 litres per hour per operating hour. The actual amount of production possible depends on the number of hours the plant is operating, the quality of the raw water, the feed pressure, the condition of the membranes, their maintenance, and the plant’s demand.

Netsol Water‘s commercial RO solutions rely on several treatment stages and not just the RO membrane. It has been documented that its commercial RO process encompasses the removal of suspended solids, treatment with activated-carbon, fine cartridge filtration, high pressure pumping, membrane separation, management of reject water, dosing, instrumentation and provisions for membrane cleaning.

The Capacite project is an important installation for Netsol Water as it further strengthens its reputation as a leading Commercial RO Plant Manufacturer in Gurgaon and the Delhi NCR region.

Client Details

The client for the project was the Capacit’e Infraprojects which is a company that is engaged in construction activities. It defines its sectoral presence as total contracting, general contracting and design-and-build services for such projects as high-rise buildings, super-high-rise buildings, commercial and office buildings, institutional buildings, hospitals, hotels, data centres, industrial buildings, mass housing, and other large projects.

Water availability becomes significant for the construction and commercial development, as well as infrastructure sectors, not just in providing drinking water, but also some functions within project offices and facilities.

A commercial RO system must then be tough enough to use regularly, and be easy to operate and maintain.

Project Location

The RO plant was setup in Capacite, Gurgaon. Gurgaon is among the important commercial and corporate cities of Delhi-NCR, which has a large number of offices, housing societies, hotels, institutions, construction sites, industrial units, etc. These facilities may need special water treatment facilities when the quality of the water is not satisfactory for the intended purpose.

Netsol Water in particular in Gurgaon offers commercial RO solutions and emphasizes the need for choosing a plant based on the number of users, water source parameters, water required capacity, installation site and maintenance needs.

Plant Capacity

The RO plant installed has the capacity of:

Parameter Value
Plant Capacity 1000 LPH
Equivalent Product-Water Output 1 m³/h

 

This is a capability that makes the system appealing to facilities that need a significant amount of purified water over the course of a workday, but the amount is not too much to handle.

The rated capacity, for instance, refers to the theoretical capacity that the plant can achieve, for example, at 8 hours operating time it can deliver around 8000 litres, at 10 hours it can deliver around 10000 litres subject to actual operating conditions and availability of feed-water.

The sizing of plants is an important engineering design decision. Both an undersized and an oversized RO plant can have drawbacks in terms of meeting peak consumption and/or operating the plant efficiently. The 1000 LPH capacity offers a realistic compromise between capability, size, usage and commercial water demand.

Treatment Technology

RO is the main treatment technology being utilized in the project.

RO is a membrane separation technique where the pretreated water is subjected to pressures and allowed to flow through semi-permeable RO membranes. The water molecules traverse the membrane as purified permeate while a large percentage of the dissolved salts and other constituents that are not allowed to pass through are left on the concentrate side of the membrane and exit through the reject line.

But this successful RO performance relies on proper pre-treatment. If the untreated water is fed directly to RO membrane, it may lead to fouling, scaling, pressure demand, frequent cleaning and deterioration of the membrane.

The commercial RO treatment unit by Netsol Water, therefore, includes several treatment mechanisms, namely the sand filter, the activated carbon filter, the micron filter, the high pressure pump, the membrane, the dosing system, the instrumentation and the cleaning system.

This multi-stage approach is designed to help protect and stabilize the system performance of the membrane.

Influent Characteristics

One of the key components of commercial RO design is influent assessment. The following are some of the parameters that are usually assessed prior to the finalization of an RO system:

Influent Parameter
Total Dissolved Solids (TDS)
Electrical conductivity
pH
Total hardness
Calcium and magnesium
Chloride
Sulphate
Alkalinity
Turbidity
Suspended matter
Iron, where relevant
Organic matter

 

Depending on the water source, microbiological contamination occurs.

Water-quality parameters like pH, EC, TDS, total hardness, calcium, magnesium, alkalinity, chloride, sulphate, nitrate, fluoride, sodium and potassium are also listed as important water-quality parameters in Haryana’s water quality testing infrastructure.

This treatment system was designed to solve the larger problem of the conversion of the incoming water into a reliable high purity product-water supply, for the Capacite project, rather than simply basic filtration.

Treatment Process

The treatment sequence is in accordance with the multi-stage treatment principle proven in the commercial RO systems of Netsol Water.

A system for removing dissolved solids from raw water that includes feed pump, pressure sand filter, activated carbon filter, micron filter, scale control, high pressure pump, RO membranes, storage and use.

Stage 1: Raw Water Feeding

Water is pumped into the plant by means of a feed pump at the appropriate flow and pressure into the pre-treatment system.

Stage 2: Pressure Sand Filtration

Water is first filtered in the sand filter stage. This will help to remove any suspended solids or larger particulate matter that might enter the cartridge filters and/or RO membranes.

Stage 3: Activated Carbon Filtration

Activated-carbon treatment is the next step. Activated carbon is part of its commercial sequence for dechlorination by Netsol Water. Another property that can be modified by carbon treatment is the water properties, by removing some of the organic compounds that cause undesirable taste and odour.

Stage 4: Micron Cartridge Filtration

Fine filter before high pressure section, with a micron filter. It is a secondary barrier to smaller suspended particles.

Stage 5: Dosing and scale protection

The use of the proper chemicals allows control of scaling at the surface of the membranes. Often, the membrane is scaled and this can lead to lower permeate flow and higher operating pressure, which require protection for the long-term stable operation.

Stage 6: High-Pressure Pumping

The pre-treated water is pressurised by the high-pressure pump. The purified water must be pushed through the RO membrane against the osmotic pressure which requires adequate pressure.

Stage 7: Reverse Osmosis Membrane Separation

The water is split into two streams within the membrane system:

Stream Description
Product water Water that has been treated to be used for various purposes.
Rejected/Concentrated Water with a greater concentration of rejected dissolved materials.

 

The permeate is directed to a storage tank or used as is, with the concentrate being directed to the reject or recycle system, depending on the plant design. Netsol Water refers to the same general process when referring to its commercial RO systems.

Major Equipment

The key equipment of a commercial RO system of this kind is:

Equipment
Raw-water/feed pump
Pressure sand filter
Activated carbon filter
Micron cartridge filter housing
Chemical/anti-scalant dosing arrangement
High-pressure RO pump
RO membrane housings
Reverse osmosis membranes
Flow meters
Pressure gauges
Conductivity/TDS monitoring instruments
Level-control switches
Control panel
Product-water line
Reject-water line
Installing piping and valves between different units.
Connecting pipes and valves between units.
Structural/skid arrangement

 

Netsol Water specifically records pressure gauges, flow meters, conductivity sensors and level switches for monitoring the performance of commercial RO systems and provides a description of a CIP system for maintaining the membranes.

These components combine to give not just filtration, but an environmentally regulated water-treatment process.

Installation Process

Installing an RO plant is no simple task; it must be done successfully. Mechanical, Electrical, Hydraulic, and Control components should function in a coordinated manner.

Netsol Water has confirmed success with 1000 LPH installation on the Capacite project.

A commercial structured RO installation would involve determining the space for the plant, positioning the filtration vessels and the RO skid, installing pipelines for raw water and product water, routing the reject line, connecting the pumps and the control panel, instrumenting and installing dosing lines, inspecting valves and pressure points, and ensuring product-water storage.

After mechanical erection pipelines and electrical connections are checked prior to controlled plant start-up.

This is especially crucial for organizations choosing a Commercial RO Plant Manufacturer in Gurgaon, as product supply without proper installation and commissioning could lead to varying plant performance.

Plant Commissioning

Commissioning is a process that transforms an installed RO plant to an operating treatment plant.

The commissioning process includes feed-water availability, correct pump rotation and pressure, flushing of the treatment system, checking filters, setting chemical dosing, checking for leakages, checking flow through the RO membranes, observing permeate and reject streams, checking instrumentation and automatic controls.

Pressure, flow, conductivity and water-quality behaviour are monitored during initial operation. Stable plant conditions can then be obtained by making adjustments.

Netsol Water has successfully completed many commercial RO installations, and all of these are instrumented to track both water quality and operating conditions, such as pressure gauges, flow meters, conductivity sensors and level switches.

The installation at Capacite is the successful completion of going from the equipment deployment stage to an operational purification system of 1000 LPH.

Treated Water Reuse and Utilisation

The design of the RO plant was aimed to produce high purity water for commercial and industrial use, and Netsol Water‘s project announcement was dedicated to the industries, offices, and commercial complexes.

Purified RO water can have applications where controlled water quality is required at a facility like Capacite provided the final water specification for the product is acceptable and the internal water-distribution system is acceptable.

Producing purified water on site, instead of having to bring the purified water into the site, may also help to minimise reliance on external supply of purified water, and enable the site to have more control over the water supply for the day.

Quality of the RO reject stream should always be managed based on the site requirements and quality of the RO reject stream. Where technically feasible, reject water can also be assessed for non-potable purposes, rather than be needlessly wasted.

Results and Performance

The successful installation of a rated 1000 LPH commercial and industrial RO plant at Capacite, Gurgaon, was the main outcome of the project.

The key results of the major project are:

Result
The installation of an on-site water purification system is made possible.
Dedicated water purification system on-site is enabled.
Purified-water production capacity of 1000 LPH (litre per hour) rated water.
1000 LPH (litre per hour) rated water for purification.
Treatment in multiple stages instead of one stage
The protection of RO membrane pre-treatment.
The separation of concentrated reject water and purified permeate.
Operational monitoring is provided.
A small system for commercial applications
Minimized reliance on untreated water supply for purified water uses
A treatment plan that is systematic and can be maintained and serviced over time

 

Customer Feedback and Project Acceptance

The importance of this ongoing relationship is that acceptance of a project in the commercial water-treatment industry involves not just providing equipment, but also engineering services, installation, service responsiveness, and confidence in ongoing support.

The Capacite is thus an important reference project for companies looking at the Commercial RO Plant Manufacturer in Gurgaon, Netsol Water.

How Netsol Water is Considered as a Leading Commercial RO Plant Manufacturer in Gurgaon?

The first step in plant selection is not necessarily to look at price or nominal capacity, but to consider what the requirement for the water is.

Netsol Water is producing commercial RO plants in various capacities and states and claims to offer customisable systems as per the customer’s requirement. It has documented treatment process that includes pre-filtration, activated-carbon treatment, cartridge filtration, high-pressure RO membranes, dosing, instrumentation and membrane-cleaning provisions.

Netsol Water also covers Gurgaon in the list where it supplies water-treatment plants and also provides commercial RO plants for various applications such as industries, commercial water plants, institutions, housing societies, hostels, restaurants, hospitals etc.

The successful installation of a 1000 LPH Commercial RO Plant in Capacite is a testament to Netsol Water‘s ability to transform a commercial water requirement into a treatment solution that is installed on-site.

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Call to Action!

When your office, commercial complex, hotel, hospital, educational institution, housing society, construction project or industrial facility needs a reliable RO water-treatment system, Netsol Water has the answer to find a plant of your choice that meets your raw water quality, required purified water capacity, operating hours, available installation space, and intended water application.

Selecting the right system configuration can provide you with better water quality and save downstream applications while also ensuring a reliable supply of purified water, whether you need a 500 LPH, 1000 LPH or a higher capacity commercial RO plant.

Are you searching for a reputed Commercial RO Plant Manufacturer in Gurgaon?

For consultation, water analysis, selection, design, manufacture, installation, commissioning and post installation support for water systems contact Netsol Water.

Contact Details
Call +91 9650608473
Email enquiry@netsolwater.com