WWI makes usable oxygen available to the native bacteria already living in wastewater. With oxygen available, those bacteria can stop producing hydrogen sulfide and become more effective at breaking down fats, oils, grease and organic sludge.
No bacteria or enzymes added. No major capital equipment. It works inside the system you already operate.
Maximize efficiency
Eliminate corrosion
Save energy
No capital expenditure
WWI keeps an office in Florida and serves wastewater systems across the United States.
When bacteria run out of usable oxygen, they can turn to sulfate instead, creating the sulfide that becomes H₂S gas.
WWI supplies usable oxygen upstream so the biology can take a different path, addressing H₂S formation at the source rather than only treating the gas after it exists. Stopping the gas at the source also stops the sulfuric acid corrosion it causes in wet wells and force mains.
Best fit: lift stations, force mains and collection systems.
Fats, Oils & Grease
FOG can coat wet wells, interfere with pumping and create an ongoing maintenance problem.
With usable oxygen available, the bacteria already present can become more effective at digesting organic material instead of allowing grease to continue accumulating.
Best fit: lift stations, wet wells and high-organic waste streams.
Organic Sludge
Organic sludge occupies volume that could otherwise be used for treatment and can eventually lead to pumping, hauling or dredging costs.
WWI helps the existing biology break down the organic portion of that material over time.
Important: sand, grit and other inorganic material remain.
BUILT FOR EXISTING WASTEWATER SYSTEMS
Start with the infrastructure you already have.
Whether the problem begins in a lift station, a long force main, a lagoon or the treatment plant itself, WWI works within existing wastewater infrastructure.
Lift Stations
Reduce H₂S formation, odor, grease accumulation and organic buildup.
Force Mains
Make usable oxygen available where conventional aeration cannot reach.
Wastewater Lagoons
Target organic sludge and recover useful treatment volume.
Treatment Plants
Support the biology already doing the work.
WWI reviews the flow, volume, waste stream and problem before determining where and how treatment should be introduced.
MEASURED IN WORKING SYSTEMS
Results you can actually look at.
Hydrogen sulfide
280 ppm0 ppm
Before
After
At a Texas lift station, H₂S fell from 280 ppm to zero and remained at zero for eight consecutive days during the documented test period.
Every wastewater system is different. WWI establishes a baseline and measures the response in the actual system rather than assuming another site's results will repeat exactly.
WHAT HAPPENS NEXT
Straightforward for your operators.
01
Review the system
Send WWI the basics: system type, approximate flow, volume and the problem you are trying to solve.
02
Determine treatment
WWI calculates the appropriate dose and evaluates the best delivery point for the system.
03
Set up and treat
WWI installs the tank and dosing equipment, monitors treatment and keeps the material supplied while your operators continue running the facility.
04
Measure the change
Water-quality parameters are measured against the original baseline so your team can see what actually changed.
WWI handles the treatment. Your team keeps running the plant.
A DIFFERENT APPROACH
Work with the biology instead of fighting the symptoms.
Uses native bacteria
No additional bacteria cultures are introduced.
No enzymes added
DRP Accelerator is an inorganic compound that makes usable oxygen available to existing bacteria.
Works inside existing infrastructure
No new treatment plant is required simply to begin evaluating the approach.
Measured against your baseline
WWI tracks changes in the system rather than relying only on theoretical performance.
TALK TO WWI
Could this work in your system?
You don't need engineering drawings or perfect numbers to start.
Tell us what type of system you operate, approximately how much flow it sees and what problem you want to solve. Estimates are fine.