Industrial & Domestic Water Treatment Systems
Water Treatment Systems

Overcome water treatment challenges & drive efficiency

Treatment Challenges

Facing Chemistry, Compliance, or Capacity limits?

Biological Treatment

Lower mechanical demand with biological treatment

Industrial Systems

Fit-for-purpose treatment trains for complex scenarios

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Laboratory Services

Validate treatment design under representative conditions

Technology selection carries material capital exposure when treatment performance is assumed rather than validated under representative operating conditions. Influent variability, scaling potential, and contaminant interactions can materially affect long-term reliability.

Our laboratory testing and modelling services quantify process response through bench-scale validation and calibrated simulation, informing equipment selection and defining design envelopes to improve technical accuracy and reduce downstream redesign.

Chemical Modelling, Microbiology, and Genomics Laboratory Services

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Remote Water Treatment Facility Operations Programs
Mine Water Treatment Gravel-Bed Bioreactor Design
Saturated Rock Fill - Technology Readiness Assessment and Regulatory Strategy
Saturated Rock Fill System Design & Field Performance Validation
Saturated Rock Fill Tracer Study and Hydrogeological Investigation
Mine Water Treatment Saturated Rock Fill Development & Testing
Contact Water Discharge Best Achievable Technology Study
Remedial Response & Closure Planning Services, Reclamation
Waste Rock Cover System Modelling, Data Review & Geotechnical Memo
Mine Constructed Wetland Treatment System Pilot Testing and Expert Panel Review
Constructed Wetland Pilot Study for Closure Water Treatment
Water Storage Reservoir Wetland Assessment
gbbr performance assessment and technology readiness evaluation
Gravel Bed Bioreactor Pilot and Technical Advisory Committee Support
Mine Water Treatment System Enhancement Study

Mine Water Treatment Operations for a Moving Bed Biofilm Reactor (MBBR) System

Integrated Sustainability assumed full operational responsibility for a water treatment plant 5 months into operation, optimizing moving bed biofilm reactor performance, closing commissioning gaps, and establishing reliable maintenance, operating, and reporting systems.

3,000 m3/d Bioreactor System for Ammonia Removal at a Copper Gold Mine

Integrated Sustainability designed a 3,000 m³/d mine water treatment plant integrating a gravel bed bioreactor and equalization pond for variable flows and long-term closure planning.

Tracer-Based Field Investigation to Evaluate Saturated Rock Fill Suitability for Semi-Passive Mine Water Treatment

Integrated Sustainability supported a tracer-based field investigation of saturated rock fill for semi-passive mine water treatment. The program characterized flow, retention, and contaminant attenuation to advance treatment feasibility.

Pilot-Scale Saturated Rock Fill System with Tracer Testing for Mine Contact Water Treatment

Design and field performance validation of a semi-passive saturated rock fill system for contact water treatment.

Tracer Testing and Hydrogeological Evaluation of Saturated Rock Fill for Selenium Removal

Integrated Sustainability completed a hydrogeological field study of Saturated Rock Fill for semi-passive selenium and nitrate treatment. Tracer testing and geophysical surveying supported pilot planning and advancement toward full-scale implementation.

Consistency Testing of Semi-Passive Water Treatment

Integrated Sustainability evaluated saturated rock fill technology for semi-passive mine water treatment. Regulatory, hydrogeological, laboratory, and pilot-scale testing defined treatment boundaries and supported further system development.

Integrated Source Control & Biological Treatment Study to Reduce Selenium, Nitrate & Sulfate Prior to Discharge

Integrated Sustainability completed a Best Achievable Technology assessment for contact water containing elevated selenium, nitrate, and sulfate. The assessment identified biological treatment and flow diversion strategies to support discharge compliance and future permitting.

Comprehensive Mitigation Strategy for Total Suspended Solids

Integrated Sustainability developed a mine water quality mitigation strategy for selenium, nitrate, sulphate, and suspended solids, integrating passive, semi-passive, and active treatment pathways.

Delivery of Phased Geotechnical Review

Integrated Sustainability completed a phased geotechnical review to support cover system design over mine waste rock and saturated waste rock fills. The assessment defined viable capping strategies for closure planning, contact water reduction, and hydraulic modelling.

Design, Construction and Operation of Passive Water Treatment System

Integrated Sustainability designed and operated a year-long constructed wetland treatment pilot, validating performance under updated site conditions and supporting regulatory review ahead of demonstration-scale deployment.

2-Year Modular Constructed Wetland Pilot for Mine Closure Water Treatment

Integrated Sustainability advanced a passive constructed wetland treatment system through a 2-year pilot, combining controlled off-site testing and on-site trials to refine full-scale mine closure design.

Wetland Assessment and Regulatory Support for Water Storage Reservoir Development

Integrated Sustainability completed wetland assessment and permitting support for a freshwater storage reservoir. The work defined mitigation and reclamation measures to support Water Act approvals and reduce wetland impacts.

Nitrate and Selenium Treatment Performance Review for Gravel Bed Bioreactor (GBBR) Retrofit

Integrated Sustainability assessed conversion of existing biochemical reactor basins to gravel bed bioreactors for nitrate and selenium treatment, including performance modelling and technology readiness evaluation.

Technical Advisory Support for Gravel Bed Bioreactor Pilot Development

Integrated Sustainability provided subject matter expertise as part of a Technical Advisory Committee for the development of a gravel bed bioreactor (GBBR) pilot project.

Ammonia Treatment Capacity Expansion Using Fixed Film and Gravel Media Systems

Integrated Sustainability assessed options to increase ammonia treatment capacity across multiple mine water nitrification cells. The review identified system upgrades and treatment enhancement strategies to improve performance and reliability.

Lifecycle Accountability = Commercial Outcomes

Fragmented delivery weakens performance – so we built something different

Traditional models divide engineering, equipment, and integration across separate firms with competing priorities. Engineers sell hours. Equipment vendors sell their technology. Integration is left to make it all work (whether it fits or not).

The result is compromise. Higher costs, weaker environmental outcomes, and systems that don’t perform as intended. We built a different model that consolidates advisory, engineering, equipment fabrication, and operations together under one team to control performance and stand behind what we deliver.

Water Management Infrastructure Engineering and Project Development Services

sustain performance through unified operations, monitoring and data management

Over time, production rates fluctuate, influent chemistry shifts, regulatory thresholds tighten, infrastructure ages, and corporate reporting requirements evolve.

Sustained performance requires right-sized operations, a unified instrumentation and data architecture, and expert technical insight to consolidate asset diagnostics, maintenance, and compliance within a single operational framework.

Water Management Infrastructure Engineering and Project Development Services
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Partner with an integrated team

Achieve greater performance and cost control with accountable infrastructure designed for high-consequence operations.