A complete water plant in a container footprint. It treats, recovers, runs itself, and signs a record for every litre.
Heat is the energy, not the source. Pleia is configured per site around whatever water exists, and the physics that can be recovered from it.
The site's own grey and process water, treated for reuse so less is drawn from supply.
Local ground or surface water, upgraded through heat-driven membrane distillation.
Sorbent capture of atmospheric moisture where climate allows, released with low-grade heat.
The energy input: reject heat from generators and equipment drives the recovery train instead of new load.

Standardized docking interfaces join units into one hydraulic and data system. One becomes two in an afternoon.

Reinforced corner castings stack rows into a plant, serviced from a walkway, run by one remote operator.
Printed enclosures, manifolds and thermal lattice cores. Complex geometries with no tooling capital, so the design can iterate weekly.
Proven wet-side components in a standardized frame. Units arrive configured and connect on site in days.
Replacement parts printed near the site instead of flown in. Fixable by local hands with common tools.
We publish performance when it is measured on a Pleia unit, and not before. That discipline is the same one that signs the water record.
We are selecting pilot hosts and deployment partners now. Measurement-first, low-risk, and verifiable from day one.