Water Abundance Through Capital Efficiency
Legacy treatment relies on fragile membranes that merely concentrate pollutants into hazardous waste. Evora bypasses this framework with a filterless, solid-state architecture engineered to run natively on abundant solar DC electricity, trading energy overhead for extreme mechanical simplicity.
Target: Chemical-Free Separation
Engineered to eliminate the need for harsh antiscalants, biocides, or chemical washes under standard operating parameters, protecting vulnerable aquatic ecosystems from industrial shock.
Conditioned Molecular Dissociation
By aiming specific plasma resonance waveforms at concentrated streams, our goal is to cleave PFAS carbon-fluorine bonds, mineralizing complex target compounds into harmless fluoride salts and CO₂.
Objective: Zero Liquid Discharge & Circular Recovery
Designed to systematically convert wastewater liabilities into distilled water and dry, harvestable mineral complexes—such as nitrogen compounds and trace technical salts—via continuous thermal crystallization loops.
High-Resilience Continuous Throughput
Replacing porous membranes with a geometric, filterless architecture to significantly minimize fouling and maintain predictable flow rates, even when handling high-turbidity industrial streams.
Turning Atoms into Code
For decades, innovation in the physical world has been bottlenecked by capital-heavy, empirical iteration cycles. While software evolved exponentially, hardware engineering remained tethered to manual prototyping.
We draw inspiration from computational leaps like DeepMind’s AlphaFold, which reframed biology as a programmable stack. However, we recognize a fundamental difference: while biology had massive public data repositories, fluid dynamics and plasma-water physics do not. Data scarcity is the real bottleneck.
Evora addresses this by building localized optimization loops. We use high-fidelity physics surrogates to turn complex hardware trade-offs into software optimization problems, allowing us to squeeze maximum performance out of mass-produced, standardized physical components.
Flipping the Energy Equation: CapEx over Efficiency
For a century, the water industry has been obsessed with thermodynamic perfection to save every possible kilowatt-hour. In an era of episodic solar abundance, that framework is changing.
When peak solar generation drives the marginal cost of electricity near zero, optimization priorities shift. Saving fractional energy is no longer the primary objective—Capital Efficiency (CapEx) is what matters.
Designing for Durability, Not Complexity
Traditional facilities must run continuously to amortize massive infrastructure expenses. Evora is designed to bypass this. By engineering standardized, mass-producible modules from robust materials, we aim to build highly durable hardware with significantly lower manufacturing costs.

Dynamic Grid Integration
Tailored Power Sourcing
Designed to operate off-grid on direct solar DC, on standard grid AC, or via a dynamic hybrid mix customized to your site's physical infrastructure.
Smart Grid Arbitrage (Optional)
Interface directly with your industrial Energy Management System (EMS) to manage your margins. The system can adapt dynamically to fluctuating energy inputs, acting as a flexible, grid-stabilizing buffer, where the grid rewards you for consuming excess electricity.
What We Are Still De-Risking
We have a strong thesis and the software and AI expertise to execute. However, bridging the gap between high-fidelity simulation and harsh wastewater realities requires solving deep physics problems. Some open questions we are actively working on:
Short-Chain PFAS Interfacial Partitioning
Regulated hydrophilic short-chain PFAS (PFBA, PFBS) exhibit minimal surface activity and routinely bypass standard foam phases. We are modeling how complex surfactant matrices migrate to the air-water interface under high shear stress. Seeking fluid dynamicists to ground-truth microbubble size distributions and Venturi cavitation dynamics.
Dynamic Foam Drainage & Film Rupture
To achieve our target 1,000x volumetric concentration, the rising foam must remain stable enough to transport targeted pollutants up the column, yet collapse instantly upon entering the passive vortex breaker.
Multi-Phase Aerosolization & Closed-Loop Stability
Bursting bubbles in the foam breaker trigger toxic aerosolization and gaseous volatilization. To enforce a zero-waste loop without disposable filters, we engineered a 95% closed-loop gas recycling system with a software-controlled slipstream routed to an inline raw water scrubber or used directly as a plasma carrier gas.
Securing European Water Sovereignty
Over 90% of advanced polymer membranes and resins are manufactured outside the EU (primarily Asia). In a fracturing global trade landscape, Europe’s ability to keep its factories running, its agriculture feeding the continent, and its citizens supplied with pure water relies heavily on vulnerable foreign supply lines.
How we aim to ensure that Europe’s most vital resource remains resilient:
Minimizing Foreign Consumables
The filterless, solid-state engine is designed to eliminate the requirement for imported replacement components. Once deployed, the system aims for long-term autonomous operation.
European-Engineered Supply Chain
Engineered and developed within the Netherlands, aligning directly with the Strategic Technologies for Europe Platform (STEP) mandate for critical technology independence.
Air-Gapped Resilience
Decentralized, modular pods operate on localized solar networks, protecting heavy industry, agricultural hubs, and defense installations from centralized grid vulnerabilities.
Founding Team
At Prometheon™, we treat complex physical infrastructure not as an immutable hardware constraint, but as a multi-parameter software optimization problem. By combining deep-tech software engineering with physical science frameworks, we design automated deployment loops that compress decades of slow, empirical hardware iteration into rapid computational cycles. We build the digital architectures that make physical abundance economically viable.

Mario spearheads Evora’s commercial growth and external partnerships, translating complex scientific challenges into a focused product, validation, and market roadmap.
Drawing on his background in biotechnology, industrial data strategy, and AI engineering, he connects customer needs, technical constraints, and business opportunities while ensuring that Evora’s multi-phase system is built around measurable real-world impact.
Milan owns the computational stack. He transforms physical models into optimized software and builds the simulation tooling that allows the team to iterate at the speed of code rather than fabrication.
A graduate of Codam (42 network), he specialized in low-level C/C++ systems and computational graphics math (raytracing, transformation matrices), consistently maxing out advanced project baselines. He previously co-founded Auris Ear Training, a gamified music platform used by European conservatories.


Open Position

You are a rigorous scientist and sharp critical thinker who operates from first principles and refuses to be constrained by conventional industry practices.
Driven by a demand for tangible, real-world impact, you know how to translate deep technical analysis into decisive, physical execution. You will bridge the gap between our high-fidelity digital architectures and the messy realities of physical scale, co-owning the empirical validation strategy to move the needle on global resource abundance.
Active Co-Creation & Team Expansion
We are actively reaching out to and engaging with top-tier scientists, industrial water operators, and institutional researchers. We are stress-testing our assumptions, closing remaining domain gaps, and solidifying our physical conviction through candid, curiosity-driven dialogue.
Join the Mission
We are looking for elite specialists who favor first-principles thinking over industry status-quo. If you have deep expertise in non-thermal plasma physics and chemistry, electrochemistry, or fluid dynamics, we are eager to hear from you.
We are flexible regarding configuration and are open to bringing on exceptional talent in whichever role delivers the highest strategic leverage and alignment. If you want to move the needle on global water abundance and ecological restoration, let's start a conversation.

