Environmental compliance automation
Bio-Automate OS automates water-chemistry dosing and circulation control for cold-water coral and marine-species propagation, and produces a cryptographically verifiable record of every decision the system makes — from a raw sensor reading to a confirmed pump command. It's built around one unusual claim for aquaculture automation: every dosing and circulation decision in the system's history is independently re-derivable and tamper-evident, not merely logged.
The core design commitment: no single layer's math is trusted by itself before it reaches a pump.
Raw sensor readings are standardized and health-checked, then analyzed against a species-specific chemistry envelope to produce a recommended dosing and circulation plan.
Before anything reaches a pump, every value is re-checked against independent physical safety limits — nothing executes on the recommendation layer's word alone.
What was recommended, what was commanded, and what hardware actually confirmed are reconciled into one tamper-evident record that holds up to an audit.
Cold-water species like Lophelia pertusa come from environments that are extremely chemically and thermally stable. The threat isn't an absolute limit being crossed — it's rate of change: a swing a tropical species tolerates without incident can trigger tissue damage in a fragment adapted to shifts that historically took weeks, not hours.
Holding alkalinity, calcium, and flow within tight rate-of-change limits, across multiple tanks, continuously, isn't something a technician can do reliably by hand at any meaningful scale. For this species class, automation isn't a convenience — it's what makes propagation possible at all.
Conservation propagation programs, permitted research facilities, and commercial operations all eventually have to answer, to a skeptical reviewer, exactly what a system did and whether the hardware actually did what it was told. That's the gap this platform's compliance chain is built to close — provable, not just claimed.
A shared chemistry-envelope architecture, not a one-off build per facility.
Rate-of-change-sensitive dosing and circulation for deep-water scleractinian species like Lophelia pertusa.
Mixed SPS/LPS reef chemistry profiles, tuned to a different tolerance envelope than cold-water species.
Penaeid shrimp / macroalgae polyculture systems, on the same underlying platform.
Built and tested. Not yet running a live facility — and we'd rather say that plainly than imply otherwise.
The core pipeline, safety architecture, and compliance/reporting layer are fully built and have been stress-tested end to end, including real hardware driver code exercised against simulated physical hardware. There is no live pilot running yet.
Tell us about your program and what you'd need out of a pilot. We'll tell you plainly whether this is a fit for where you are right now.