90 m3/day Hospital Wastewater Treatment System Exported To Pakistan

For this hospital project in Pakistan, we engineered and exported an integrated system rated for 90 m3/day. The A/O biological route was selected to reduce organic and nutrient loads while keeping the equipment compact and practical to operate.

90 m3/day integrated system prepared for overseas transport

The main treatment enclosure and project piping were secured on the transport vehicle before export.

90 m3/day

Treatment capacity

Pakistan

Project destination

A/O

Main biological process

Engineered & Exported

Project status
Project Overview

What Motiva Engineered And Exported

We configured one integrated 90 m3/day unit around an Anaerobic-Oxic biological route for the hospital wastewater and discharge requirement in Pakistan.

Project At A Glance

DestinationPakistan
ApplicationHospital wastewater
Design capacity90 m3/day
Main processA/O (Anaerobic-Oxic) biological treatment
Equipment formIntegrated hospital wastewater treatment equipment
Delivery stageEngineered and exported for the Pakistan hospital project
Operating outcomeHigh COD, BOD, nitrogen and phosphorus removal with stable operation
Effluent outcomeMeets and exceeds Pakistan's national standards and aligns with WHO guidelines
Planning A Comparable System

Confirm The Design Basis Before Reusing This Route

The Pakistan project is a useful capacity and process reference, but it is not a plug-and-play specification. For another hospital, we confirm:

Average, peak and daily design flow
Influent indicators and load variation
Local discharge or reuse requirements
Disinfection, monitoring and control duties
Equipment, installation and commissioning scope
Engineering Decision

Why A/O Fit The Project Requirement

The project needed biological treatment for both organic matter and nutrients. A/O provided two defined process environments inside one integrated system.

01

Organic And Nutrient Control

The treatment objective covered COD, BOD, nitrogen and phosphorus rather than organic removal alone. That requirement shaped the biological process choice.

02

Separate Biological Duties

The anaerobic zone supports breakdown of complex organic matter and phosphorus release. The oxic zone oxidizes remaining organics and supports further nutrient reduction.

03

Practical Daily Operation

In operation, the system remained stable under wastewater-load variation. Simple maintenance and low energy demand also supported lower operating expense.

Equipment Integration

How The Integrated System Was Prepared For Export

The main treatment enclosure, process interfaces and accessory packages were coordinated at the factory before overseas transport.

Enclosure

Compact Factory-Built Unit

The main treatment zones are integrated into a rectangular enclosure that can be fabricated, checked and prepared before shipment.

Biological Zoning

A/O Zones In One System

The enclosure separates the anaerobic and oxic environments so each biological stage can perform its intended role.

Project Interfaces

Connections Prepared Before Shipment

Openings, access points and associated piping were coordinated around the main unit before it left the factory.

Export Preparation

Main Unit And Supporting Items

The main enclosure, related pipes and accessory packages were secured together for transport to Pakistan.

Factory Dispatch

Main Unit And Accessories Loaded For Export

The second project view shows the equipment enclosure, associated pipework and transport arrangement before the shipment left the factory.

Integrated 90 m3 per day hospital wastewater treatment equipment on a transport trailer for export to Pakistan
Dispatch Detail

Main Equipment And Project Accessories Loaded Together

The transport view shows how the main treatment enclosure and supporting items were grouped for the Pakistan hospital project before export.

Full integrated treatment enclosure
Factory-prepared access openings
Related pipes and accessory packages
Transport securing and loading arrangement
Treatment Functions

Treatment Duties Inside The A/O System

The 90 m3/day system combines anaerobic and oxic biological duties inside an integrated enclosure. Pretreatment, disinfection, sludge handling and monitoring are confirmed for each new hospital.

Treatment AreaProject ConfigurationEngineering Role
Influent BasisHospital wastewater with organic matter and nutrient loadsThe water analysis and flow profile determine biological loading, tank sizing and any required pretreatment.
Anaerobic StageAnaerobic biological treatmentAnaerobic microorganisms break down complex organic matter into simpler compounds and support the phosphorus-release step.
Oxic StageOxic aerobic biological treatmentAerobic microorganisms oxidize remaining organics and support further reduction of nutrient loads and harmful substances.
Integrated EquipmentFactory-built treatment enclosureThe equipment form coordinates the biological zones, access points, piping interfaces and transport preparation.
Final EffluentTreated water meeting and exceeding Pakistan's national standards and aligning with WHO guidelinesThe operating project achieved the required discharge outcome for the hospital.

For a new hospital project, Motiva designs the treatment route from actual wastewater data, flow variation, the required outlet and the agreed equipment and service scope.

Project Status

90 m3/day System Engineered And Exported

The integrated A/O equipment was configured for the hospital project, prepared at the factory and exported to Pakistan.

Request A Comparable Design
Plan A Comparable System

Move From This Project To A Site-Specific Design

A similar project starts with wastewater data and the outlet requirement, then moves into equipment form, factory scope and site interfaces.

Industry Solution

Hospital Wastewater Treatment Systems

Review wastewater-stream separation, biological treatment, disinfection, monitoring and outlet planning for healthcare facilities.

Evaluate Hospital Treatment Routes
Equipment Form

Package Wastewater Treatment Plants

Compare factory-built treatment formats, process options, installation forms and the inputs that control packaged-plant selection.

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Factory Delivery

Manufacturing And Quality Control

Review how equipment fabrication, inspection, project interfaces and dispatch preparation are coordinated before delivery.

Review Manufacturing Support
Engineering Support

Project Design And Equipment Configuration

Prepare water data, flow conditions, site limits, target standards and supply scope for a hospital-specific system review.

Prepare Design Inputs
Project Questions

What To Check Before Planning A Similar System

Capacity, process scope and discharge requirements must be checked against the new facility rather than copied from the Pakistan project.

What was supplied for the Pakistan hospital project?

We engineered and exported an integrated hospital wastewater treatment system rated for 90 m3/day. The main biological process was A/O.

Which treatment process was used?

The project used an Anaerobic-Oxic (A/O) biological process. The anaerobic zone supports breakdown of complex organics and phosphorus release, while the oxic zone oxidizes remaining organics and supports further nutrient reduction.

What treatment results were achieved?

The project achieved high removal of COD, BOD, nitrogen and phosphorus. The treated water meets and exceeds Pakistan's national standards and aligns with WHO guidelines.

How did the system perform in operation?

The system operated steadily under variations in wastewater load. Low energy demand and straightforward maintenance also reduced operating expense and supported long-term savings.

Can the same 90 m3/day configuration be used for another hospital?

Not automatically. The flow rate, wastewater streams, influent indicators, outlet target, site limits, disinfection plan and required supply scope must be reviewed for the new facility.

What information is needed for a hospital wastewater RFQ?

Send the hospital type and departments, wastewater sources, daily and peak flow, available COD, BOD, SS, ammonia, nitrogen, phosphorus and microbiological data, the required outlet, site layout and expected installation and commissioning scope.

Similar Hospital Project RFQ

Request A Hospital Wastewater System Review

Send one set of facility, wastewater and site inputs. Our engineering team will review the likely treatment route, equipment form and supply interfaces for your hospital project.

Hospital type, departments and wastewater sources
Average, peak and daily design flow
COD, BOD, SS, ammonia, TN, TP and microbiological indicators
Discharge or reuse target and local requirements
Footprint, access, utilities and required supply scope

Motiva RFQ / Water Data Form

Water-quality reports, facility drainage information, site layouts and project photographs can be included with the inquiry. Do not submit patient or clinical personal data.

Attach PDF, Excel or image reports when available. Actual configuration depends on wastewater characteristics and project requirements.

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Request A Quote

Attach PDF, Excel or image reports when available. Actual configuration depends on wastewater characteristics and project requirements.

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