sewage treatment plant installation Noida - Sewage Treatment Plant Manufacturers

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September 2, 2026by Netsol Water

Successfully Installed 45 KLD STP Plant with MBBR Technology at Phoenix, Suprajit, Noida

Effective sewage treatment has become an important requirement for facilities that need to manage wastewater in a responsible and practical manner. At Phoenix, Suprajit, Noida, Netsol Water successfully installed a 45 KLD Sewage Treatment Plant based on MBBR technology. The project was planned to provide a suitable solution for the treatment of sewage generated at the facility and to support better wastewater management.

The client required a treatment plant that could handle the expected sewage load while providing a structured treatment process within the available site conditions. To address this requirement, the project included the design and installation of a 45 KLD sewage treatment system using Moving Bed Biofilm Reactor technology. The selected process offered a biological treatment approach that could be integrated into a compact treatment arrangement.

The project was important because proper sewage treatment helps facilities manage wastewater before it is reused or discharged according to their operational requirements. It also requires careful planning because plant capacity, process arrangement, equipment selection, installation and commissioning all need to work together. This project brought these elements together in one complete treatment solution.

A sewage treatment plant manufacturer in Noida, completed the installation with a focus on creating a functional system that matched the stated project capacity and treatment requirement.

Project Overview

A sewage treatment project must begin with a clear understanding of the wastewater requirement and the operating conditions of the site. The purpose is not simply to place treatment equipment at a location. The complete system must be planned so that wastewater can move through the treatment stages in a controlled manner and receive the required biological and physical treatment.

For Phoenix, Suprajit, Noida, the project focused on installing a 45 KLD Sewage Treatment Plant with MBBR technology. The main objective was to provide an organised treatment system for sewage generated at the facility. The plant was selected according to the stated treatment capacity and was planned as a complete system rather than as an individual piece of equipment.

The scope of the project covered the installation of the treatment plant and the integration of its major process components. This required proper equipment placement, interconnection of the treatment stages and preparation of the plant for operation. Every part of the installation had to support the overall treatment sequence so that the system could operate as one coordinated unit.

The project also required attention to practical site conditions. A treatment plant must fit into the available space and remain accessible for inspection and routine operation. With these considerations in mind, the installation was carried forward through a structured sequence that moved from preparation and equipment placement to connection, testing and commissioning.

Client Details

The client for this project was Suprajit at its Phoenix facility in Noida. The need for a Sewage Treatment Plant generally arises when a facility generates sewage that requires treatment before the treated water can be managed according to its intended use or disposal arrangement. In such situations, the treatment system becomes an important part of the site’s wastewater management infrastructure.

For the client, the requirement centred on a 45 KLD system. This meant that the proposed plant had to be designed around the stated sewage treatment capacity and arranged in a way that supported continuous movement of wastewater through the treatment stages. The project therefore required more than a capacity calculation. It also required a suitable process configuration and proper installation of the supporting equipment.

The client’s requirement was addressed through MBBR-based biological treatment. This approach allowed the plant to use a controlled biological process within the overall sewage treatment arrangement. The installed system was then prepared for operation through systematic testing and commissioning.

Project Location

The project was carried out at Phoenix, Suprajit, Noida. The location was an important part of the planning process because sewage treatment plants must be installed according to the physical conditions of the site. Equipment placement, available working space, connections and access for operation all influence how a plant is installed.

Noida is an active urban and industrial region where facilities may require organised wastewater management systems as part of their infrastructure. For an individual project such as this one, however, the treatment requirement is determined primarily by the sewage generated at the facility and the intended treatment capacity.

At the Phoenix, Suprajit site, the plant therefore had to be positioned and connected in a way that allowed the wastewater treatment process to function properly. The installation had to account for the movement of sewage through the treatment stages while also leaving adequate access for plant operation and maintenance.

The project location also made proper execution important because a treatment plant is a permanent operational system rather than a temporary installation. Once the equipment is positioned and connected, each process stage must work in the intended sequence. This made careful site execution an essential part of the project.

Plant Capacity

Correct plant capacity is one of the first considerations in any sewage treatment project. A plant that is not matched to the intended sewage load can create operational difficulties and reduce the effectiveness of the treatment arrangement. Capacity selection therefore needs to reflect the expected wastewater flow and the purpose for which the plant is being installed.

For the Phoenix, Suprajit project, the installed Sewage Treatment Plant has a capacity of 45 KLD, which means it is designed for a treatment capacity of 45 kilolitres per day. The stated capacity formed the basis for the process arrangement and equipment planning for the project.

The 45 KLD capacity provided the client with a defined treatment framework for managing the sewage generated at the facility. It also established the scale at which the biological treatment system and associated components needed to operate.

Capacity is closely linked with treatment sequence and equipment selection. Each stage has to accommodate the flow entering the plant so that sewage receives adequate treatment as it moves through the system. By installing a system designed for 45 KLD, the project established a treatment arrangement suited to the stated requirement.

Treatment Technology

The choice of treatment technology has a direct effect on how sewage is biologically treated inside the plant. Since the project required a sewage treatment solution with a defined capacity, the treatment process needed to provide effective biological contact within the available system configuration.

The plant at Phoenix, Suprajit, Noida uses MBBR technology, which stands for Moving Bed Biofilm Reactor. MBBR is a biological treatment process in which microorganisms grow on small carrier media placed inside the biological reactor. These microorganisms help break down organic matter present in sewage as the wastewater passes through the reactor.

1. Working Principle of MBBR

The MBBR process creates an environment where microbial growth can take place on the surface of carrier media. Aeration keeps the media moving within the reactor and supplies oxygen for the biological process. As sewage comes into contact with the media, microorganisms attached to the carriers consume and degrade biodegradable pollutants.

The continuous movement of the carrier media helps maintain contact between the wastewater and the biological growth. This allows the biological stage to remain active while the system operates. The process can therefore provide a controlled biological treatment stage within the overall sewage treatment sequence.

2. Role of Aeration

Aeration is an important part of the MBBR process. Air is introduced into the biological tank through an aeration arrangement that provides oxygen for microbial activity. At the same time, the air movement helps keep the carrier media in motion.

The combination of biological growth, wastewater contact and aeration supports the treatment process. Once the biological stage is completed, the treated stream moves forward to the next stage where suspended solids and other remaining materials can be separated.

The use of MBBR technology at the project site therefore provided a clear biological treatment mechanism within the 45 KLD STP arrangement.

Influent Characteristics

Understanding incoming sewage is important before establishing a treatment system because the treatment process must be able to handle the characteristics of the wastewater entering the plant. Parameters such as organic load, suspended solids, turbidity, pH and microbial content can influence treatment requirements.

Sewage typically contains organic matter and suspended impurities that need to be reduced through a controlled treatment sequence before the treated water can be managed further.

The MBBR process was selected to address the biological component of sewage treatment. The treatment system then uses downstream separation stages to help remove the solids generated during the treatment process. This shows why influent understanding and process design are closely connected.

The absence of detailed laboratory figures in the available project brief does not change the installed capacity or technology. It simply means that exact influent values should not be presented as project data unless they are supported by actual test records.

Treatment Process

A sewage treatment plant works through a sequence of stages in which each step prepares the wastewater for the next one. The overall purpose is to gradually remove physical impurities, biodegradable matter and suspended solids so that the treated water reaches the intended quality for its next use or management.

At the Phoenix, Suprajit site, the 45 KLD plant uses MBBR as the central biological treatment technology. The sewage first enters the preliminary treatment stage where larger physical impurities can be removed. This protects the downstream equipment and reduces the chance of blockage in later stages.

Process Stage Description
Preliminary Treatment The incoming sewage is first screened to remove larger materials that should not enter the biological system. Screening helps protect pumps, pipes and other equipment by stopping coarse solids before they move further into the plant. After this stage, the flow moves into the collection and equalisation arrangement. Equalisation helps manage variations in incoming flow and provides a more consistent feed to the biological treatment stage.
Biological Treatment From the preliminary stage, the sewage proceeds to the biological reactor containing MBBR carrier media. Air is supplied to the reactor to support microbial activity and keep the media moving. The microorganisms growing on the carrier surfaces consume biodegradable organic matter in the sewage. As the wastewater remains in contact with the biological media, the organic load is reduced through microbial action. This stage forms the main treatment step in the installed process.
Solids Separation Following biological treatment, the water contains biological solids that need to be separated before the treated stream moves further. The treated mixture therefore passes into a settling stage where heavier solids can separate from the liquid. The settled solids can then be managed through the sludge handling arrangement while the clarified water proceeds to the subsequent treatment stage.
Final Treatment and Treated Water After solids separation, the clarified water can undergo the final treatment steps included in the plant configuration. These stages help improve the treated water quality and prepare it for its intended reuse or disposal arrangement.

 

The complete process therefore works as a chain. Screening protects the system. Equalisation supports stable flow. MBBR provides biological treatment. Settling separates biological solids. Final treatment prepares the treated water for further use or management.

Major Equipment

Proper equipment selection supports dependable plant operation because every component has a specific role in moving, treating or separating the wastewater. Even when the biological process is the main focus, the supporting equipment must also work correctly for the complete system to perform as intended.

The 45 KLD MBBR STP includes the major equipment and process components required to support the treatment sequence:

Equipment / Component Function
Inlet and Screening Arrangement Forms the first stage by controlling what enters the treatment system.
Pumps and Piping Help move wastewater between the different process sections.
MBBR Biological Reactor The central treatment unit where carrier media and aeration support microbial activity.
Aeration Arrangement Provides the air required for the biological process and also helps maintain movement of the media.
Settling Arrangement Supports separation of biological solids after the MBBR stage.
Sludge Handling Components Used to manage the solids collected during the treatment process.
Interconnecting Pipelines and Valves Link the various sections and control the movement of wastewater between stages.

 

All of these components contribute to the performance of the plant. A treatment system cannot depend on a single machine or tank. Its operation depends on the combined performance of the process units, pumps, air system, piping and controls.

Installation Process

Successful installation begins with proper planning because treatment equipment must be positioned in a logical sequence and connected correctly. The installation at Phoenix, Suprajit followed a structured approach that allowed the treatment system to be assembled step by step.

The first stage involved preparing the installation area and confirming the placement of the treatment components. The available space had to support equipment installation while also allowing access for operation and maintenance. Once the site arrangement was established, the main process equipment could be positioned according to the planned treatment flow.

The next stage involved connecting the major process units. Piping was used to link the treatment sections so that sewage could travel from the inlet stage to the biological reactor and then toward clarification and treated water handling. Pump connections and other utility connections were also completed as part of the system assembly.

The MBBR reactor and aeration arrangement required particular attention because biological treatment depends on proper air supply and movement of the carrier media. The equipment and connections therefore had to be checked before the plant was prepared for trial operation.

After mechanical and process connections were completed, the system was inspected as a complete installation. This provided a transition from physical installation to commissioning and operational testing.

Plant Commissioning

Commissioning is an important stage because it confirms that the installed plant can operate as a connected treatment system. It provides an opportunity to inspect the equipment, check the connections and verify the movement of wastewater through the process stages before regular operation begins.

For the 45 KLD STP, commissioning involved checking the installed equipment and the connections between the different treatment units. Pumps, aeration equipment and process pathways needed to operate as intended so that wastewater could move through the plant without interruption.

The MBBR section was also checked as part of the commissioning process because the biological reactor is central to the treatment sequence. The aeration arrangement needed to supply air properly while supporting movement of the carrier media inside the reactor.

The commissioning stage also helped identify installation issues that could be corrected before the plant entered regular operation. By testing the system as a complete unit, the project team could confirm that the plant was ready for its intended treatment duty.

This step completed the transition from installation to operational readiness and provided the basis for continued operation of the treatment system.

Treated Water Reuse

Treated water becomes more useful when a facility has a clear plan for how it will manage or reuse the treated stream. Reuse can reduce the need for fresh water for suitable non-potable applications and can form part of a broader wastewater management strategy.

The installed STP provides the client with a treated water stream that can be managed according to the site’s approved requirements and intended reuse practices. The treatment process is designed to reduce pollutants through biological treatment and solids separation before the water moves to its next stage of use or disposal.

The practical value of the plant therefore extends beyond treatment alone. By establishing a dedicated sewage treatment system, the facility has a structured process for managing the wastewater generated at the site.

 

Results and Performance

Project results help demonstrate whether the installed treatment solution meets its intended purpose. In a sewage treatment project, performance should be assessed through measurable operating data and water quality results rather than broad claims.

The key confirmed outcome for Phoenix, Suprajit is the successful installation and commissioning of a 45 KLD MBBR-based Sewage Treatment Plant. The project established a complete treatment arrangement that moves sewage through preliminary treatment, biological treatment, solids separation and final treated water handling.

The installed capacity provides a defined treatment framework of 45 kilolitres per day. The use of MBBR technology gives the plant a dedicated biological treatment stage in which microbial growth on carrier media supports the reduction of biodegradable pollutants.

The project also resulted in an operational treatment system rather than an incomplete equipment installation. Major equipment was placed and connected so that the treatment stages could function together. Commissioning further prepared the plant for regular operation.

Customer Feedback / Testimonial

Customer feedback provides useful insight into how a completed treatment project is viewed from the client’s side. A direct testimonial can help confirm satisfaction with installation quality, project execution and system performance.

The installation was completed as a 45 KLD MBBR sewage treatment solution for the stated facility. The successful completion of the installation and commissioning indicates that the project moved through the required delivery stages and resulted in a functioning treatment plant.

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Call to Action

A well-planned sewage treatment system can help facilities manage wastewater through a defined and organised treatment process. The successful installation of the 45 KLD MBBR STP at Phoenix, Suprajit, Noida demonstrates how a project can bring together capacity planning, biological treatment, equipment installation and commissioning to create a complete sewage treatment arrangement.

For facilities that are evaluating similar requirements, choosing the right treatment capacity and process technology is an important starting point. The plant configuration should match the expected wastewater load while allowing the treatment stages and supporting equipment to work together effectively.

Netsol Water, a Sewage Treatment Plant Manufacturer in Noida, provides solutions for sewage and wastewater treatment requirements based on the needs of individual projects. Organisations planning a new treatment plant or looking to improve their wastewater management can contact Netsol Water to discuss their requirements, understand suitable treatment options and request a project consultation.

Contact Netsol Water

Phone: +91-9650608473

Email: enquiry@netsolwater.com


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August 21, 2026by Netsol Water

Successfully Installed 40 KLD STP Plant Installation at Phoenix, NSEZ Noida

Handling of wastewater is an essential criteria for all industrial, commercial and institutional buildings, especially in the emerging industrial areas like Noida. The proper design of the Sewage Treatment Plant can not only treat effluents before releasing them into the water bodies but also allow the treated wastewater to be reused for non-potable purposes, thereby minimizing the use of freshwater for non-potable applications and promoting sustainable water management.

Being an established sewage treatment plant manufacturer in Noida, we have successfully installed a 40 KLD Sewage Treatment Plant in Phoenix, NSEZ Noida. The design of the plant is meant to treat sewage produced at the plant, and ensure consistency in treatment by means of a simple, systematic, and convenient treatment process.

The project comprised of planning, procurement of equipment, installation, pipework, electrical integration, testing and commissioning of the entire sewage treatment plant. Operational reliability, space use, treatment efficiency and routine maintenance were given special consideration.

This case study describes the project requirements, treatment process, major equipment, installation methodology, commissioning process, treated-water reuse opportunities and overall benefits of the 40 KLD STP installation.

Project Overview

The project comprised successful installation and commissioning of a 40 KLD Sewage Treatment Plant at Phoenix, NSEZ, Noida. The goal was to create one efficient wastewater-treatment process which would be capable of treating wastewater produced by the activities carried out in the premises on a daily basis.

Domestic wastewater is untreated and is found to contain suspended solids, organic matter, nutrients, microorganisms and other contaminants. Such wastewater may cause environmental issues, odour, unhygienic situations and burden existing drainage system.

The 40 KLD STP was thus designed to treat the wastewater, biologically, clarifying, filtering and dis-infecting it before re-use or proper disposal.

The project was aimed at:

  • Capacity of up to 40 kL per day of sewage treatment
  • Organic pollutants and suspended solids are reduced.
  • The treated water should be clearer and of a better quality.
  • A stable biological treatment process is provided.
  • Minimize odour and operating difficulties.
  • Promoting opportunities for reuse of treated water
  • Conservation of freshwater to be used for appropriate non-potable uses
  • Offering a small system for the limited installation space.
  • Enabling easier plant operation and maintenance

The installation reflects our ability as a trusted Sewage Treatment Plant Manufacturer in Noida to deliver customised sewage-treatment solutions based on the capacity, available space, working conditions and sewage-treatment needs of various plants.

Client Details

The STP was set up for Phoenix at NSEZ, Noida.

The plant had to have a wastewater treatment plant that was appropriately sized to treat the wastewater produced on site. The system had to be reliable, easy to fit and be able to run without undue complexity for the facility-management team.

The following aspects were taken into account before finalizing the system: The expected hydraulic load, treatment objectives, site conditions, wastewater generation requirement, and available space.

Considering these requirements, a 40 KLD STP was chosen as an adequate treatment capacity.

The project encompassed integration of the various treatment stages to ensure that the wastewater flowed systematically through three treatment stages, collection, biological treatment, clarification, filtration, disinfection and final treated water storage.

Project Location

Sewage Treatment Plant was installed at: Phoenix, NSEZ, Noida, Uttar Pradesh

The Noida Special Economic Zone (NSEZ) is an important industrial and commercial zone. Wastewater from the toilets, washrooms, canteen, housekeeping, and other domestic activities at these facilities must be managed in an effective manner by implementing proper infrastructure.

If an STP is installed on the premises, the wastewater can be treated in the vicinity of its production. This decentralized solution minimizes reliance on external wastewater-management solutions and opens up potential re-use of treated water on site.

Choosing a Sewage Treatment Plant Manufacturer who is well-versed in the local industrial operating conditions can also make the plant installation, plant servicing, plant maintenance and future plant modifications easy.

Plant Capacity

Sewage Treatment Plant (STP) capacity that are installed:

40 KLD – 40 Kilolitres Per Day.

It will be able to treat about 40,000 litres of sewage a day, based on the hydraulic loading and operating conditions that the plant specifies.

One of the most crucial phases in the design of an STP can be the sizing of the plant. A system that is too small can fail during times of high wastewater production, and an oversized system will mean extra capital and operating expenses.

Based on the anticipated sewage production and facility requirements, the Phoenix project capacity was chosen.

The plant design also takes into account variations in wastewater flow during different periods of the day. Typically, the generation of sewage does not happen at a steady rate all day. Peak flows can happen at work time, on break or at the end of a shift. Equalisation and controlled pumping is thus essential to achieve more even loading on the biological treatment system.

Treatment Technology

The treatment system is a Moving Bed Biofilm Reactor (MBBR)-based STP, which is a popular biological wastewater-treatment technology for compact commercial and industrial sewage-treatment applications.

MBBR treatment is based on the principle of treating water in an aeration tank with specially designed plastic media. The beneficial microorganisms grow on these media as a biofilm on the surface. In the biological reactor microorganisms decompose biodegradable organic pollutants when wastewater is introduced to the reactor.

The continuous aeration has two significant roles:

It provides oxygen needed for aerobic microorganisms. Ensures bio-film is in good contact with wastewater by moving the MBBR media around the reactor.

The MBBR system is especially beneficial in situations that need a compact biological treatment system. The large protected surface area on the media allows the growth of microorganisms which continue to allow treatment to be performed even if the characteristics of the wastewater fluctuate within the design limits of the plant.

Downstream clarification, filtration and disinfection stages are included to enhance the final treated water quality for the treatment system.

Influent Characteristics

The major component of the influent to the STP is human domestic sewage resulting from activities like washing, cleaning and sanitary operations in the facility.

Common waste products that may be added to a sewage plant include:

  • Biodegradable organic matter
  • Suspended solids
  • Dissolved organic impurities
  • Nitrogen-containing compounds
  • The presence of traces of oil and grease
  • Cleaning residues and detergents
  • Microorganisms and pathogens
  • Other contaminants that are usually found in domestic wastewater.

Some of the important parameters taken into account while analyzing sewage are: pH, Biological Oxygen Demand (BOD), Chemical Oxygen Demand (COD), Total Suspended Solids (TSS), oil and grease, and microbial contamination.

The true level of these parameters may vary significantly according to water consumption, occupancy, cleaning operation, canteen program and other site conditions.

Therefore, actual plant design data and wastewater-analysis reports should be used to base plant design and operation, rather than a single design composition being assumed.

The 40 KLD system was designed to offer numerous treatment barriers to enable the progressive reduction of the physical solids, biodegradable pollutants, suspended matter and microbial contaminants at successive treatment stages.

Treatment Process

The 40 KLD STP is a sequential treatment facility with a treatment sequence to treat raw sewage to the required treated effluent quality for the intended use or discharge.

The typical process flow of the installed system is:

Raw Sewage → Screening → Collection/Equalization → Biological Treatment → Clarification → Treated-Water Storage → Pressure Sand Filtration → Activated Carbon Filtration → Disinfection → Final Treated Water

Process Step Description
Screening The first step in the wastewater treatment system is through a screening process. Screening is designed to catch large floating and suspended substances like plastics, fabrics, paper and junk. This action will prevent damage or blocking of downstream pumps, pipelines and treatment equipment.
Collection and Equalization Sewage is fed into collection or equalisation tank after preliminary screening. The equalization stage helps to equalize fluctuations in wastewater flow and pollutant concentration. By allowing the wastewater to enter the biological treatment system at a more controlled rate, sudden hydraulic surges will not enter the system. Depending on the system design, mixing or aeration can also be provided to minimize septic conditions and keep the wastewater in a relatively homogeneous condition.
Biological Treatment The equalized sewage is pumped to the biological treatment area. An MBBR process uses specially designed bio-media, which are kept in an aerated reactor. Biodegradable organic pollutants in sewage are removed by microorganisms attached to the media. Media is kept moving and aerobic conditions are maintained throughout by air supplied from blowers and diffusers. This phase is mainly responsible for the minimisation of biodegradable organic contaminants and is, therefore, one of the most crucial processes of the STP.
Clarification The biological treatment effluent includes biological solids which must be removed from the treated water. The clarification stage offers conditions for settling the suspended biological solids and obtaining a clearer supernatant. Sludge collected is dealt with on a regular basis based on the plant design and operating procedure.
Treated-Water Storage The clarified wastewater goes to an intermediate treated-water tank. This allows storage prior to tertiary treatment and allows the filtration system to function in a controlled pumping condition.
Pressure Sand Filter The Pressure Sand Filter is tertiary treatment unit in which fine suspended particles which have not been removed during biological treatment and clarification processes are removed. Filtration enhances the physical quality and clarity of the water and decreases remaining suspended solids.
Activated Carbon Filter Water from the sand filter is then fed into an Activated Carbon Filter. Activated carbon can be used to enhance the quality of treated water by adsorbing some dissolved organic compounds and compounds that contribute to water colour and odour.
Disinfection The last treatment step is disinfection either by a dosing or disinfection system. Disinfection is so crucial for the reduction of microbial contamination before treated water is reused and/or discharged properly. After disinfection, the treated water is stored in a final storage facility and can be used for appropriate non-potable uses.

Major Equipment

A Sewage Treatment Plant can only perform satisfactorily if the mechanical, electrical, biological and filtration systems work as a whole.

The main equipment used in a typical 40 KLD STP system is:

Equipment Function
Sewage Transfer Pumps To convey sewage from one stage to the next in the collection, equalization, biological, and treatment process.
Air Blowers Provide the oxygen for the aerobic biological treatment. Blower selection is crucial to maintaining dissolved oxygen and good biological activity.
Fine-Bubble Diffusers These are fitted in the biological tank to spread the air evenly throughout the wastewater.
MBBR Media High surface area media to grow the microorganisms as biofilm.
Settling/Clarification System Remove the biological solids from treated wastewater after biological treatment.
Filter Feed Pumps Feed clarified water at the required pressure to tertiary filters.
Pressure Sand Filter Eliminates the fine suspended impurities that can not be removed by the clarifier.
Activated Carbon Filter Reduces odour, color and some type of dissolved organic materials.
Disinfection System System for controlling microbial contamination prior to treated-water reuse.
Piping Connect treatment units and facilitate correct flow, isolation and access for maintenance of piping.
Electrical Control Plant Used to control pumps, blowers and other electromechanical equipment, and to systemically operate the plant.
Level-Control System Automates the operation of the pumps and prevents tank overflow or dry running.

Selection of equipment was undertaken while considering equipment capacity, reliability, operating requirements, maintenance requirements, etc.

Installation Process

Installation of 40KLD STP at Phoenix, NSEZ, Noida was done in a planned sequence to ensure proper integration of civil, mechanical, piping and electrical components.

1. Site Assessment

The installation process started with a site assessment of the available space for the STP, access to the site, arrangement of sewage inlet, treated water outlet, electrical availability, pipe routing, and equipment placement.

2. Equipment Positioning

Equipment was arranged in the sequence of the treatment processes. Wherever possible, sufficient access was provided for inspection, operation, servicing and routine maintenance.

3. Mechanical Installation

Pumps, blowers, filters, diffusers, piping accessories, valves and others were installed and connected as per process design.

Special consideration was given to the alignment of equipment and routing of pipes.

4. Piping Integration

Pipe connections were made between the various tanks and treatment units.

Valves were installed at suitable points to allow for equipment and pipelines to be isolated for maintenance or inspection.

5. Electrical Work

The plant control system was used to provide power connections to pumps, blowers and electrical equipment.

Before trial operation, the control wiring, protection systems, level-based operation and equipment switching arrangements were checked.

6. System Inspection

After installation, mechanical and electrical systems were checked for potential leaks, wrong connections, loose parts, wrong direction of flow and electrical problems.

These checks were performed before the plant could be commissioned.

Plant Commissioning

Commissioning is a necessary step as it is not enough to turn on the pumps and blowers.

The 40 KLD STP was commissioned, which required the whole treatment system to be systematically tested.

The first step was to inspect individual pieces of equipment such as pumps, blowers, control panels, valves and filters for correct operation.

Water trials were carried out to check:

  • Pump functioning
  • Flow direction
  • Pipeline integrity
  • Valve operation
  • Tank connectivity
  • Air distribution
  • Filter operation
  • Electrical controls
  • Level-control functions
  • Leakage or Abnormal Vibration

Biological system involves the development and stabilisation of microorganisms for treatment of the wastewater. The aeration conditions, loading of water waste, characteristics of sludge and operation of the plant thus have to be monitored in the stabilization period.

After a stable biological environment was established, the entire treatment system from the inlet to final collected treated water was reviewed.

The operating personnel were also trained on the normal plant operation, routine inspection, cleaning needs, sludge management, and filter operation and preventive maintenance.

Treated Water Reuse

A significant benefit of having an STP is the opportunity to re-use treated wastewater rather than using fresh water to each and every application.

Water from the 40 KLD STP may be used for appropriate non-potable purposes including but not limited to:

The landscaping irrigation and gardening are well done.

  • Toilet flushing
  • Floor washing
  • Paved areas are cleaned.
  • General housekeeping
  • Any other approved non-potable utility applications

Treated-water recycling can contribute significantly to water conservation.

For instance, if a significant portion of the treated water is recycled within the premises, the plant’s need for fresh water for gardening, flushing, or cleaning can be decreased.

Recycling also promotes a more circular management of water, as the wastewater can be seen as a resource to be recovered rather than a waste stream.

When deciding on the final use of treated water, the quality of the water verified by the test results should always be considered as well as environmental or regulatory application parameters.

 

Results and Performance

After the completion of 40 KLD STP installation in Phoenix, NSEZ Noida, the facility was equipped with an organized wastewater-treatment system, which will collect and treat sewage produced on its premises.

The plant that is already installed offers a number of operational and environmental benefits.

Result Description
Reliable Wastewater Treatment This multi-stage treatment system consists of preliminary, biological, clarification, tertiary filtration, and disinfection, which enable more efficient sewage treatment than a single stage system.
Prevention of Organic Pollution Biological treatment will lower the amount of biodegradable organic pollutants found in wastewater. This has a significant impact on the quality of water prior to the use for tertiary treatment and reuse.
Improved Water Clarity Clarification by pressure sand filtration process yields treated water with improved clarity due to removal of suspended solids and fine particles.
Better Odour Control Aeration and biological treatment will ensure the sewage does not stay in uncontrolled septic conditions and aid in better odour control.
Water Conservation Treated water may be used for certain non-potable purposes, thus conserving fresh water.
Compact Treatment Solution The treatment process is appropriate for plants where plant space is limited and the wastewater needs to be treated effectively.
Operational Convenience Regular operation and maintenance of the plant are easier because of the proper equipment layout, valves, pumps, control systems, and filtration arrangements.
Sustainable Wastewater Management The plant’s treatment at the point of generation and reuse of the treated wastewater helps the facility become more responsible and sustainable with water.

Actual plant performance should be recorded by periodic laboratory testing of inlet and treated-water samples. Parameters of pH, BOD, COD, TSS, oil and grease and microbiological indicators may be monitored based on operating and compliance needs of the facility.

The installation adds to our capability as a Sewage Treatment Plant Manufacturer in Noida that can provide a customized STP solution for commercial, institutional, residential and industrial needs.

Customer Feedback / Testimonial

Treatment technology is not the only key factor for a successful implementation of an STP project, but also for the correct installation, equipment integration, commissioning and technical support.

The 40 KLD STP at Phoenix NSEZ, Noida was designed with the aim of offering a practical and reliable wastewater-treatment plant that meets the specific needs of the site.

Testimonial

Installed and commissioned our NSEZ, Noida Sewage Treatment Plant (STP) systematically and the team provided all the technical coordination and assistance during the project. The STP has been designed in a way that it is going to be treated efficiently and is going to be operated easily.

Looking to hire a Sewage Treatment Plant Manufacturer in Noida?

For any of the commercial buildings, factories, institutions, residential complexes, hotels, hospitals, offices, warehouses, or industrial site, you need an efficient wastewater-treatment system, and the right STP partner is key.

We are a leading Sewage Treatment Plant Manufacturer in Noida, offering customized Sewage Treatment Plant as per the quantity of the wastewater, treatment requirement, available space, functioning condition and the aim for reusing the treated water.

Our sewage-treatment solutions can include:

  • STP design and engineering
  • Equipment manufacturing and supply
  • Complete STP installation
  • MBBR-based treatment systems
  • Biological treatment solutions
  • Pressure Sand Filters
  • Activated Carbon Filters
  • Pumps and blowers
  • Piping and electrical integration
  • Plant testing and commissioning
  • STP modification and upgrading
  • Operation and maintenance support
  • Troubleshooting of existing STPs
  • Treated-water recycling solutions

Whether you need a 40 KLD STP in Noida or a customized sewage-treatment plant of another capacity, our team can help develop a solution according to your facility’s wastewater-treatment requirements.

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Need an STP for Your Facility in Noida?

Contact us today for consultation, site assessment, STP design, installation, commissioning, or upgrading of your existing wastewater-treatment system.

Choose an experienced Sewage Treatment Plant Manufacturer in Noida for a reliable, efficient, and sustainable wastewater-management solution.

From wastewater treatment to treated-water reuse, we provide complete STP solutions designed around your site’s actual requirements.

Contact Netsol Water

Phone: +91-9650608473

Email: enquiry@netsolwater.com