Fine bubbles rising through turquoise underwater light

Seven systems, one physical argument.

Each system takes gas transfer at sub-micron bubble size and points it at a different problem. Each has its own name, its own site and its own buyer. None of them is a company you can hire — for that, see the operating companies.

01 — The base platform

SeaBreather

A novel-class service vessel. Gas handling, oxidation and delivery all sit on the hull, so the treatment goes out to the bay rather than the bay being pumped to a works.

Its own three duties are oxygen restoration through a depleted water column, a short sharp oxygen boost where stock is held, and breaking a thermal cap in the basin that formed it. Each of the other marine systems is a mode this platform runs, not a second fleet somebody has to fund.

seabreather.com

SeaBreather
A SeaBreather vessel running at speed, dark hull with azure trim, spray coming off the quarter
One hull under way. A vessel that exists is not the same as a fleet in service, and the difference is the whole subject of the due-diligence page.

05 to 07 — Away from the hull

The same gas transfer, on land and in plant.

Nothing about sub-micron bubbles is specific to the sea. Three systems take the mechanism into fixed water, into an irrigation line and into soil, where the buyer is an operator or a grower rather than a coastal authority.

Three of the photographs above are of the equipment itself — the SeaBreather hull, the ReefHealer platform and the SoilScrubber rig. The other four show the conditions those systems are built for, because nothing in this network's library shows HABslayer, ChemSlayer, Fluid Nano or NanoponiX in service. Worth knowing which kind you are looking at, on any page in this sector.

Why these seven and not others

Each one answers a documented, expensive problem.

The group did not pick markets by size. It picked the places where the failure is already measured by an agency, already priced by an industry, and already on somebody's budget line as a recurring loss.

2 mg/L The dissolved-oxygen line below which most aquatic life cannot hold on — the problem SeaBreather exists for NOAA NCCOS
US$97.5m Lost Dungeness crab landings from the 2015 West Coast bloom, plus about $40m in razor-clam tourism NOAA Fisheries
~50% Share of global desalinated water output produced by GCC states, which hold under one per cent of world population World Bank, March 2024
1,381 Mha Salt-affected soils worldwide, 10.7 per cent of global land area, with about a tenth of cropland touched FAO, Global status of salt-affected soils

From system to service

A system is a licence. A programme is a contract.

Nothing on this page can be bought from Credible Ventures. Each of the seven becomes purchasable only when an operating company puts crew, capital and a regulator behind it.

The chain is short and it is worth stating in full. Credible Ventures owns the system. It licenses that system to an operating company for a defined territory. The operating company builds or charters the platform, hires and certifies the crew, secures the gas supply, obtains the permits, and sells a programme with a season, a service zone and a set of upgrades.

For the Gulf, the Red Sea and international coastal waters, that operating company is Alarivean, Inc. If you want any of the seven systems in your water, the conversation is with them.

How licensing, jurisdiction and liability are actually arranged

Aquatic Prosperity as a Service

Which of the seven is your problem?

If you are not sure, describe the water and the season and let the operating company tell you. Sometimes the honest answer is that none of these is the right instrument.