Waste to energy SCWG reactors

Organic waste in. Syngas and clean water out.

Sovran structures waste-to-energy projects around supercritical water gasification. The reactors are series-produced in Europe and operating today. Sovran handles the feedstock contract, the offtake, the finance, and the interface with the permitting authority.

374°C · 22.1 MPa

Above water's critical point, organics gasify in a single stage, without combustion.

Feedstock

Any organic stream.

Municipal sewage sludge, industrial wastewater, food-processing effluent, agricultural residues. Liquids feed directly. Solids enter as a water slurry.

Energy

Syngas on site.

A hydrogen and methane fuel gas, produced where the waste already is, for generation, chemical synthesis, or direct combustion.

Water

Treated, not landfilled.

Chemical oxygen demand falls by more than 98 percent through the reactor. Water is recovered and dissolved minerals are collected separately.

Ship the waste

Treatment at an operating reactor.

Liquid organic waste is received at operating installations in Europe. Gate terms follow feedstock composition and volume. Send a composition analysis and a monthly tonnage and terms come back inside a week.

Quote a waste stream.
Build a reactor

A unit on your own site.

Units are produced in series across a range of daily capacities and delivered to site. Feasibility runs on your own feedstock analysis. Reference installations and the full technical dossier are released to qualified project counterparties under NDA.

Request project terms.
Milling Cavitation

Cavitation milling and activation.

Cavitation milling

Fine-milling and activation.

Industrial fine-milling that grinds mineral or organic raw material to around 100 microns and activates the particle surface, turning sand, glass cullet, peat or wheat bran into higher value products for construction, animal feed, fertilisers and biostimulants. Around 5 tonnes an hour from a dry module that fits in one 20 ft container. Trials run on the client's own feedstock.

Discuss a feedstock.

State the feedstock and the volume.