CarbonM Fuelmax
Oleum V1 conversion platform — CarbonM Fuelmax
Technology

One platform. Two intelligence layers. Consistent circular fuel.

Our integrated system combines Oleum V1's continuous conversion with Alkanalyze's process intelligence to deliver the consistency that makes waste-derived fuel industrially viable.

How It Works

From landfill-bound plastic to circular industrial fuel.

A six-stage integrated process powered by Oleum V1 and Alkanalyze.

Step 1

Landfill-Bound Waste

Non-recyclable mixed plastic waste collected from landfill and disposal routes.

Step 2

Feedstock Preparation

Quality mapping, sorting, and preparation of plastic feedstock for conversion.

Step 3

Oleum V1 Conversion

Continuous thermal conversion of difficult plastic waste into circular fuel/feedstock.

Step 4

Alkanalyze Intelligence

Real-time monitoring, quality prediction, and reactor optimization via ML.

Step 5

Circular Fuel Output

Consistent circular fuel/feedstock meeting industrial blending specifications.

Step 6

Marine & Industry

Powering ships, heavy industry, and cement plants with circular fuel.

Oleum V1

Continuous Conversion Platform

Oleum V1 is our continuous conversion platform designed to process difficult plastic waste streams and produce circular fuel/feedstock at industrial consistency. Built from the ground up for mixed, non-recyclable plastics that other systems reject, Oleum V1 delivers reliable throughput and output quality across variable feedstock.

  • Continuous-feed operation for high throughput and reliability
  • Handles difficult mixed and contaminated plastic feedstock
  • Integrated thermal management for consistent output quality
  • Modular design for scalable deployment
  • Designed for minimal operator intervention

Operating Mode

Continuous

Feedstock

Mixed non-recyclable plastics

Capacity

Under validation

Output

Circular fuel/feedstock

Oleum V1 continuous conversion reactor — CarbonM Fuelmax

Alkanalyze

Process Intelligence Layer

Alkanalyze is our process intelligence layer, built to analyze feedstock quality, predict output properties, monitor reactor conditions, and optimize the system for consistent production. It combines machine learning models with inline sensor data to close the quality loop that makes waste-to-fuel systems unreliable.

  • Feedstock quality analysis and characterization
  • Real-time reactor condition monitoring via inline sensors
  • Output property prediction using trained ML models
  • Process optimization for consistent fuel/feedstock quality
  • Traceability and data logging for compliance readiness

ML Models

Proprietary

Sensors

Inline multi-parameter

Quality Detection

Real-time

Data Output

API-ready

Alkanalyze ML intelligence platform — CarbonM Fuelmax
Integration

The whole is greater than the sum of its parts.

When Oleum V1 and Alkanalyze work together, they create a closed-loop system that delivers what neither can achieve alone.

Consistency

Alkanalyze's real-time optimization ensures Oleum V1 produces consistent output regardless of feedstock variability.

Traceability

Every batch is characterized, monitored, and logged — creating an auditable chain from waste to fuel.

Scalability

The modular design of Oleum V1 combined with Alkanalyze's digital infrastructure enables systematic scale-up.

Ready to explore how our technology can work for your operation?

Whether you're processing plastic waste or sourcing circular fuel — let's talk.