Overview
Great Blakenham EfW is a 20 MW biomass power plant in Suffolk, United Kingdom, operated by SITA UK. It converts waste into energy, supporting local grid stability.
Great Blakenham EfW is a biomass power plant located in Suffolk, United Kingdom, with a capacity of 20 MW. The facility is owned by SITA UK and is currently operational, contributing to the region's energy-from-waste infrastructure. The plant operates under the UK's regulatory framework, including the Environmental Permitting Regulations and the Industrial Emissions Directive (2010/75/EU). As a biomass facility using waste as fuel, it adheres to strict emission limits for pollutants such as NOx, SOx, and particulates, aligning with Best Available Techniques (BAT) for waste incineration. By converting non-recyclable waste into electricity, Great Blakenham EfW plays a key role in reducing landfill dependency and supporting the UK's renewable energy targets. Its 20 MW capacity serves local communities and contributes to the national grid, exemplifying the circular economy in power generation.
Environmental context
The plant's use of waste as fuel reduces methane emissions from landfills and displaces fossil fuel-based power. Located in Suffolk, it operates within a region with moderate population density, requiring careful management of air emissions. The facility's compliance with EU and UK emission standards helps mitigate local environmental impacts, while its energy recovery aligns with broader climate goals.
Frequently asked questions
Great Blakenham EfW is located in Suffolk, United Kingdom, near the village of Great Blakenham.
Great Blakenham EfW is a biomass power plant that uses waste as fuel to generate electricity.
The plant has a capacity of 20 megawatts (MW).
Biomass power plants in the UK must comply with the Environmental Permitting Regulations and the Industrial Emissions Directive (2010/75/EU), which set emission limits for pollutants like NOx, SOx, and particulates.
By converting waste into energy, the plant reduces landfill use and methane emissions, while generating renewable electricity for the grid.