Anaerobic Digestion
Sealed digesters break down organic and municipal waste into biogas, clean water and recovered metals — turning a disposal cost into several revenue streams.
Integrated renewable energy
One distinct mission puts WTP Carin in a class by itself. We consolidate integrated renewable-energy businesses — EV charging, EV drones, grid services, anaerobic digestion and waste-plastic conversion to renewable fuels — across Ireland, Poland, Canada and the United States, and provide the expertise to support the marketing and storage of synthetic aviation fuels into Europe.
What we consolidate
WTP Carin consolidates integrated renewable-energy businesses under one company. Waste becomes clean power and renewable fuels; that power drives EV charging, EV drones and grid services; and our synthetic aviation fuel expertise carries the model into European aviation. Together they close the loop.
Sealed digesters break down organic and municipal waste into biogas, clean water and recovered metals — turning a disposal cost into several revenue streams.
Waste plastics — including grades the EU no longer allows in landfill — are converted into renewable fuels and low-carbon products, turning a banned waste stream into clean energy.
Scalable charging networks built for real journeys, engineered to close the range-anxiety gap on long-distance routes across Ireland and Europe.
Battery-electric drone platforms extend our clean power into the air — low-emission aerial services for logistics, inspection and monitoring, charged from our own network.
Stationary and EV batteries aggregated into a virtual power plant — delivering frequency reserve, grid balancing and demand-response services to utilities.
Alongside our fuel partners, the WTP Carin team provides the expertise to support the marketing and storage of synthetic aviation fuels into Europe — where mandates are driving demand.
The raw material
Feedstock is the raw material we feed into a plant. In anaerobic digestion it is the organic and municipal waste that micro-organisms break down — releasing biogas, clean water and recoverable materials. The feedstock we take in decides what a plant can recover, and how much.
Mixed household and commercial waste otherwise bound for landfill. It is sorted — the organic fraction goes to digestion, while metals and recyclable materials are recovered.
Source-separated food and green waste from households, hospitality and retail — the richest, highest-energy feedstock for biogas.
Crop residues, manures and organic by-products from food and beverage processing that would otherwise be discarded.
A reference operating model
A single digester takes in around 250 tonnes of feedstock a day. From that one input we recover three revenue streams, power the first wave of EV charging, and underpin the project with grant funding — the snapshot below describes one such plant.
Estimated energy output: at roughly 100–150 m³ of biogas per tonne, a 250 t/day digester can support a plant of about 2.5–3.5 MW — generating an estimated ~25 GWh of electricity a year, enough for several thousand homes, plus recoverable heat. Actual output depends on the feedstock mix; figures are planning estimates, not guarantees.
The circular economy
A circular economy rests on three ideas: design out waste, keep materials and energy at their highest value, and regenerate natural systems. Our infrastructure puts all three to work — with WTP Carin at the centre of the loop.
By some estimates a more circular European economy could add around €1.8 trillion in value and 700,000 jobs by 2030. We are building the plants and networks to help capture it.
Municipal, organic and commercial waste is collected and brought to our plants — diverted from landfill.
Anaerobic digestion and material sorting break it down in sealed, controlled systems.
Biogas and clean energy, water, metals and feedstock for renewable and synthetic fuels are captured and graded.
That energy powers EV charging, EV drones and grid services; recovered materials become green products.
Clean power, renewable fuels and materials re-enter the economy — cutting emissions and closing the loop.
By the numbers
The digestion cycle
Our anaerobic digestion plants follow a single, continuous process — each stage adding value to material that would otherwise be waste.
Municipal, organic and commercial waste delivered to the plant.
Material breaks down in sealed, oxygen-free tanks under controlled conditions.
Biogas, clean water and recovered metals are captured and graded.
Electricity, gas, EV charging, water sales and tipping fees.
The WTP group
WTP Carin is part of the WTP group. WTP holds an equity stake in WTP Carin and in a portfolio of companies spanning waste-to-product, clean fuels, e-mobility and charging.
A Canadian “Waste-To-Product” developer building turnkey municipal solid waste diversion systems — converting waste into energy and green products on the path to a zero-waste, zero-emissions economy.
wtptechnologies.com →Synthetic and low-carbon fuel technology that complements our energy-recovery output.
Partners synthecfuels.com → MilesGo E-mobility · CanadaCanadian e-mobility company informing our charging models and grant strategy.
Partners milesgo.ca → Amik Technologies EV & energy software platform · IndiaAn India-built software platform for electric mobility and energy that runs the whole value chain from a single login — unifying nine products across charging, fleet, energy, financing, CRM and more on one shared data layer. Hardware-neutral, OCPP-compliant and AI-first.
Partners amiktechnologies.com →Work with WTP Carin
Whether you are an investor, a grant body, a municipality or an industry partner, we would like to hear from you.