Environmental Closed Loop Incineration Process

Waste Value. Zero-Emission Thermal Recycling.

ECLIPS is a closed-loop thermal waste treatment platform. Designed to convert waste into electricity, steam, industrial gases, water, ash/clinker and hydrogen — without atmospheric discharge.

  • No smokestack
  • No atmospheric discharge
  • Modular deployment model
  • Proven components, unique system
  • Multi-revenue output model
  • MSW, clinical, industrial and biomass capable
The problem

Conventional thermal waste treatment is reaching its limits.

Atmospheric discharge, planning resistance and tightening economics are slowing exactly the infrastructure that society needs more of.

Atmospheric discharge remains the norm

Conventional thermal waste systems still vent treated gases to atmosphere. Public scrutiny of stack emissions continues to intensify.

Public opposition slows deployment

Visible smokestacks and perceived emissions risk make siting new facilities slow, costly and politically exposed.

Disposal economics under pressure

Waste volumes are rising while landfill, export routes and gate-fee economics are squeezed. Operators need cleaner, more bankable infrastructure.

Industry needs reliable local supply

Industrial users want dependable local access to power, heat and gases. Today's waste sector rarely supplies them at the right scale or quality.

The ECLIPS solution

A single closed loop. Waste in. Power, gases and materials out.

ECLIPS combines thermal treatment, containment, gas cleaning, separation and by-product recovery into one integrated closed-loop system. Combustion takes place inside a recirculated, oxygen-enriched environment rather than open atmospheric air.

That single change is decisive: nitrogen is removed from the combustion environment, so NOx is prevented at source rather than treated downstream. Flue gases are contained, cleaned and separated into discrete streams that are sold as industrial outputs — not vented through a stack.

Built from proven industrial equipment in a unique integrated configuration, and designed around a Balanced Mass control approach that keeps combustion stable and optimised.

How it works

Eight stages, one closed loop.

A clear engineering sequence — designed for stable operation, environmental performance and commercial yield.

  1. 01

    Waste intake and pre-treatment

    Mixed feedstock is received in a sealed facility, characterised and prepared for the closed-loop process.

  2. 02

    Oxygen-enriched closed-loop thermal process

    Combustion takes place in a recirculated flue-gas environment enriched with oxygen, replacing conventional atmospheric air.

  3. 03

    Balanced Mass control

    A Balanced Mass control approach manages the recirculation loop and combustion conditions for stable, optimised operation.

  4. 04

    Heat recovery

    Process heat is captured for electricity generation, steam supply and district or industrial heating.

  5. 05

    Flue gas cleaning and treatment

    Multi-stage cleaning removes particulates and acid species inside a contained loop — not vented to atmosphere.

  6. 06

    Gas separation and compression

    Cleaned gases are separated and compressed into discrete, saleable streams of oxygen, nitrogen, carbon dioxide and water.

  7. 07

    By-product recovery

    Solid residues are recovered as ash and clinker fractions suited to construction and industrial reuse.

  8. 08

    Output to power, heat, gas and materials

    Electricity, steam, industrial gases, water, ash/clinker and hydrogen are delivered to off-takers and the grid.

Outputs

One platform. Multiple revenue streams.

Each output is captured, stabilised and delivered to off-takers — not vented as a loss.

Commercial model

Bankable on multiple revenue streams.

Gate fees, power and heat sales, and industrial gas and by-product off-take — combined under a project-company structure with regional partners.

Gate fees

Contracted fees for accepting clinical, municipal, industrial and biomass waste streams under long-term arrangements.

Power and heat

Electricity export under PPA arrangements and steam / heat supply to district networks or co-located industry.

Industrial gases and by-products

Sale of oxygen, nitrogen, carbon dioxide, water, ash/clinker and a hydrogen pathway as additional revenue streams.

Local deployment via JV / project company

ECLIPS supports project-company structures with regional partners, off-takers and feedstock providers.

Feedstock and off-take partnerships

Long-term feedstock agreements with waste operators and off-take agreements with industrial buyers underpin bankability.

Permitting, FEED and delivery support

ECLIPS works alongside EPC and O&M partners to support permitting, FEED, build, commissioning and operations.

Why ECLIPS now

The conditions for closed-loop thermal recycling have arrived.

  • 01

    Conventional incineration faces rising public, political and permitting friction.

  • 02

    Industrial buyers need reliable, lower-carbon local supply of power, heat and gases.

  • 03

    Capital is rotating into infrastructure that is bankable and verifiably cleaner.

  • 04

    Hydrogen and CO₂ off-take markets are forming around exactly this kind of platform.

Company

An engineering-led team based in Portsmouth, UK.

ECLIPS is developed by a small, senior team focused on delivering serious clean-tech infrastructure. The platform is designed for deployment with regional partners, EPC and O&M providers, feedstock suppliers and industrial off-takers.

Detailed leadership profiles, technical packs and commercial materials are available on request under appropriate confidentiality.

Common questions

What partners and stakeholders typically ask.

Ready for a strategic discussion?

ECLIPS works with investors, waste operators, public-sector partners and industrial off-takers on serious deployment conversations.