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AlgaeOxy™

Integrated oxygenation, catalytic oxidation and nutrient capture for healthier aquatic ecosystems

Algal Bloom Management

Restore water quality by addressing algae, oxygen depletion and excess nutrients

AlgaeOxy™ combines a solid oxygen source with a proprietary iron-based catalyst to support oxygenation, advanced oxidation and nutrient management in affected water bodies.

Harmful algal blooms are often associated with excessive nutrient loading, warm temperatures, stagnant conditions and disrupted aquatic ecosystems. AlgaeOxy™ is designed to increase dissolved oxygen while promoting the formation of reactive oxygen species, including hydroxyl radicals. Its iron-based catalyst also provides active surfaces that may bind phosphate and selected sulphur compounds. This combined approach targets existing algal biomass while addressing some of the environmental conditions that encourage recurring blooms. Every treatment programme should begin with water analysis, algae identification, cyanotoxin testing and a controlled site-specific trial.

More oxygen / Less nutrient pressure / Healthier water

AlgaeOxy Introduction

Advanced algae management across natural and engineered water bodies

AlgaeOxy™ can support professionally managed restoration programmes where algal growth, oxygen depletion, nutrient loading and associated water-quality problems occur.

Lakes & Recreational Waters

Supports water-quality restoration programmes for lakes affected by excessive algal growth, low dissolved oxygen and nutrient enrichment.

Ponds & Small Water Bodies

Applicable to ornamental, recreational and managed ponds after confirming ecological compatibility and treatment requirements.

Reservoirs & Raw-Water Sources

Supports source-water management where algae contribute to colour, taste, odour or downstream treatment difficulties.

Wastewater Lagoons

Helps manage algal biomass, sulphide odours and oxygen depletion in professionally operated wastewater lagoons.

Agricultural Water Bodies

Supports treatment programmes for ponds and reservoirs affected by nutrient-rich agricultural runoff.

Aquatic-Ecosystem Restoration

Can form part of a broader programme combining nutrient-source control, monitoring, aeration and ecological rehabilitation.

Four complementary functions / In one algae-management technology

O₂

Controlled Dissolved-Oxygen Support (OXYGENATION)

The solid oxygen component is designed to release oxygen into the water and support aerobic biological activity under controlled application conditions.

•OH

Catalytically Activated Oxidation (RADICAL-OXIDATION)

The iron-based catalyst supports the formation of reactive oxygen species capable of attacking susceptible components of algal cells and dissolved organic pollution.

P-CAP

Reduced Phosphorus Availability (PHOSPHATE-CAPTURE)

Iron-containing surfaces can bind phosphate through adsorption, surface complexation or precipitation, helping reduce one important nutrient that supports algal growth.

ECO

Integrated Ecosystem Support (WATER-RESTORATION)

Oxygenation and nutrient management can support improved water conditions when combined with source control, circulation and long-term ecological monitoring.

Science & Technology

AlgaeOxy™ combines oxygen release, catalytic oxidation and iron-based adsorption to address several factors associated with algal bloom development.

  • Solid Oxygen Release – The oxygen-releasing component increases oxygen availability in treated water, supporting aerobic biological processes and reducing severe hypoxia risks.
  • Catalytic Radical Formation – An iron-based catalyst activates the oxygen system and promotes hydroxyl-radical ($\bullet OH$) formation to oxidise susceptible organic molecules and cellular components.
  • Phosphate Surface Capture – Phosphate interacts with iron-based surfaces through ligand exchange, surface complexation and precipitation, reducing immediate bioavailability.
  • Sulphide and Odour Management – Iron-based materials interact with sulphide through oxidation or precipitation mechanisms, controlling hydrogen-sulphide odours in oxygen-depleted water and sediments.
AlgaeOxy Science and Technology
Product Specifications

Published Packaging & Technical Data

Packaging configurations, weight specifications, and handling guidelines for AlgaeOxy™.

Published Packaging Specifications
Packaging Type Net Product Weight Quantity per Pallet Published Gross Weight
Box containing four 5 kg bags20 kg48 boxes1,080 kg
Drum60 kg18 drums1,163 kg
Alternative packagingAvailable on request——
Safety and Environmental Controls
  • Follow the current AlgaeOxy™ SDS before handling or application; wear suitable PPE and respiratory protection.
  • Avoid inhaling airborne product dust and prevent uncontrolled discharge of concentrated product.
  • Monitor dissolved oxygen throughout the water column and avoid treatment under conditions increasing fish stress.
  • Never use in drinking-water sources without appropriate approval and obtain all required environmental permits.

Explore the AlgaeOxy™
Poster Library

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AlgaeOxy Algal Bloom Management
Product Overview

AlgaeOxy™ Algal Bloom Management

Integrated oxygenation, catalytic oxidation and nutrient capture for healthier water bodies.

Understanding HAB Development
Harmful Algal Blooms

Understanding HAB Development

How nutrients, temperature, sunlight and stagnant conditions contribute to bloom formation.

Restore Dissolved Oxygen
Oxygenation

Restore Dissolved Oxygen

Supporting aerobic conditions and reducing the risk of oxygen depletion.

Catalytically Activated Hydroxyl Radicals
Radical Chemistry

Catalytically Activated Hydroxyl Radicals

How reactive oxygen species interact with susceptible algal cells and organic contaminants.

Capture a Key Algal Nutrient
Phosphorus Management

Capture a Key Algal Nutrient

Iron-based phosphate capture as part of a broader nutrient-control programme.

Manage Sulphide and Anaerobic Odours
Odour Control

Manage Sulphide and Anaerobic Odours

Supporting oxidation and fixation of selected sulphur compounds.

Monitor Before During and After Treatment
Ecological Safety

Monitor Before, During and After Treatment

Protecting aquatic life through controlled application and water-quality monitoring.

Stop Nutrients at Their Source
Long-Term Control

Stop Nutrients at Their Source

Why sustainable bloom management requires runoff control and watershed action.

Frequently
Asked Questions

Important information about AlgaeOxy™ treatment, algal bloom risks, nutrient management and ecological monitoring.

Contact Support
What is AlgaeOxy™?
AlgaeOxy™ is a combined oxygenation and catalytic-treatment product designed to support algal bloom management and water-quality restoration.
How does AlgaeOxy™ work?
It combines a solid oxygen source with an iron-based catalyst. The system is designed to increase oxygen availability, generate reactive oxygen species and provide surfaces for phosphate capture.
Which water bodies can be treated?
Potential applications include lakes, ponds, reservoirs and professionally managed wastewater lagoons. Each site requires ecological and regulatory assessment before treatment.
Does AlgaeOxy™ permanently prevent algae?
No single treatment can guarantee permanent control. Algae can return if phosphorus, nitrogen, sunlight, temperature and hydraulic conditions remain favourable.
Does it remove cyanobacteria and cyanotoxins?
Oxidation may affect cyanobacterial cells and some toxins, but results are species- and toxin-specific. Treatment can also rupture cells and release intracellular toxins, so toxin monitoring is essential.
Can AlgaeOxy™ increase dissolved oxygen?
Its solid oxygen component is designed to release oxygen. Actual improvement depends on oxygen demand, biomass, temperature, water depth and circulation.
Can it remove phosphorus?
Iron-containing surfaces may capture phosphate through adsorption or precipitation. However, phosphorus is transferred to solids or sediment rather than destroyed.
Does the iron catalyst remove ammonia?
Complete ammonia adsorption by ordinary iron-based media should not be assumed. Ammonia removal normally requires biological nitrification, ion capture, stripping or another validated process.
Can it remove sulphate and sulphide?
Iron may effectively react with sulphide under suitable conditions. Sulphate is much more stable and requires a different treatment mechanism; the two should not be presented as equivalent.
Is AlgaeOxy™ safe for fish and aquatic organisms?
Safety depends on product composition, dose, water chemistry and application conditions. Aquatic-toxicity and field-monitoring data are required before an unconditional safety claim can be made.
Why is water analysis required before treatment?
Algae species, cyanotoxins, nutrient levels, pH, oxygen demand and ecological sensitivity determine whether treatment is appropriate and how it should be applied.
What monitoring is required after application?
Monitor dissolved oxygen, pH, temperature, oxidation-reduction potential, algae concentration, cyanotoxins, phosphorus, nitrogen, residual oxidant and aquatic-organism condition.

Get an algal bloom management solution

It all starts with water analysis and algae identification.

Send us your water body volume, area, depth, algal bloom profile and restoration objectives. Our specialists will help evaluate AlgaeOxy™ for your ecosystem.

Restoring Aquatic Ecosystems Through Oxygenation and Nutrient Control

Water treatment facility overview