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Glorinda’s services

Advanced oxidation & on-site
hydrogen peroxide generation

At Glorinda, we design and deliver on-site hydrogen peroxide systems that generate oxidant directly from water, air, and electricity, removing trace organic contaminants without the transport, storage, or handling risks of bulk chemical delivery.

About the technology

Advanced oxidation and on-site hydrogen peroxide generation

Hydrogen peroxide produced on site from water, air, and electricity. No deliveries, bulk storage, or handling exposure, with an oxidant strong enough to treat trace organics.

Glorinda, in partnership with HPNow, provides sustainable hydrogen peroxide solutions for clean water and sanitation in municipal and industrial applications. GOgen® technology produces high-purity hydrogen peroxide directly from water, air, and electricity, offering a safe, efficient solution designed for decentralised use.

Your solution can be on-site H₂O₂ and AOP.

“Hydrogen sulphide odour is generating complaints”.

The starting point

What problem does it solve?

On-site generation changes the economics of oxidation. Bulk peroxide requires deliveries, storage, permits, handling procedures, and safety measures. Generating hydrogen peroxide on demand removes these requirements and provides an autonomous system with no chemical inputs.

Why it pays

Benefits

No chemical logistics

Reduced chemical usage, lower logistical and handling costs, and improved supply reliability and occupational safety. Eliminates transport, storage and safety risks entirely.

Fully autonomous

A fully autonomous system with no chemical inputs. It starts with water and ends with water; the membrane-based electrolyte design removes the need for handling liquid chemicals or gaseous hydrogen.

Modular and scalable

The system is modular and scalable, with cells that can be stacked to meet different capacity needs; so a pilot duty and a full plant duty use the same technology.

Chlorine-free chemistry

Replaces corrosive chlorine, reduces corrosivity and improves cooling efficiency while extending system lifespan. No corrosion, salinity or toxic byproducts.

Real oxidation power

Hydrogen peroxide removes trace organic contaminants, pharmaceuticals, cosmetics, pesticides, with zero chemical residues and enhanced discharge compliance.

Lower footprint

Also reduces the carbon footprint and overall environmental impact of water treatment, and it is compatible with renewable power for zero-emission oxidation.

Process

How it works

The technology produces high-purity hydrogen peroxide directly from water, air and electricity. Oxygen from air is reduced electrochemically in the presence of water; the membrane-based electrolyte design means the solution is generated without the need for gaseous hydrogen or water vapour, and without handling liquid chemicals.

Downstream, the peroxide is dosed into the duty it serves. For advanced oxidation, UV activation generates hydroxyl radicals that attack organic contaminants conventional treatment leaves behind.

01

Generation

Direct electrochemical production of hydrogen peroxide from water, air and electricity. Safe, efficient and designed for decentralised use, with stackable cells for different capacities.

02

Storage and dosing

The generated peroxide is held in a reservoir and dosed by pump into the line being treated. Because generation is continuous and on demand, the reservoir is small compared with a bulk chemical installation.

03

Oxidation duty

Depending on the application: direct oxidation of contaminants, UV-activated advanced oxidation for trace organics, biofilm control in closed loops, or hydrogen sulphide neutralisation for odour control.

Industries & applications

Where this is used

On-site hydrogen peroxide generation is applied wherever oxidant needs to be produced safely and consistently without the risks of bulk chemical transport and storage. Glorinda, in partnership with HPNow, delivers these systems across industrial, municipal, agricultural, food and beverage, data center, and electronics applications, including cooling water treatment, effluent treatment, and advanced oxidation for trace organic removal.

Oil, gas and petrochemical

ower generation

Food and pharma

Chemical

Steel

Petrochemical

Mining

Textile

Pulp and paper

Industries & applications

Typical usages

Engineering detail

Which treatment train suits your needs?

Selecting a boiler feed water and cooling water system is an engineering decision, not a purchasing one. We evaluate your water analysis, steam pressure, and site utilities, compare the options on capital and operating cost, and act as owner’s engineer while somebody else builds it if that suits you better.

Other Waster and Wastewater Technologies

Related Technologies

Equipment

Related Products

FAQ

Frequently asked questions

Directly from water, air and electricity, by electrochemical reduction of oxygen. The membrane-based electrolyte design means the solution is generated without gaseous hydrogen or water vapour and without handling liquid chemicals.

The system is modular and scalable; cells stack to meet different capacity needs, so the same technology covers a small municipal duty and a large industrial one. Tell us the dose rate and flow and we will size it.

It depends on your site. The direct chemical price is only part of it: the comparison also has to include delivery, storage, permits, handling procedures, dilution losses and the safety case. On remote sites, and on sites where chemical storage is constrained, on-site generation usually wins comfortably.

That is one of its main duties. It prevents biofilm buildup in closed-loop systems, replaces corrosive chlorine, reduces corrosivity and improves cooling efficiency while extending system lifespan with no salinity or pH change.

need help

Take this further

Send us the stream data, the discharge limit or the equipment list you are working from. An engineer reads every enquiry and replies with the questions that actually decide the solution — not a brochure.