Overview
Ballylumford C is a 616 MW gas-fired power plant in the United Kingdom, operated by AES. It plays a key role in the region's electricity grid.
Ballylumford C is a gas-fired power station located in the United Kingdom, with a capacity of 616 megawatts. The plant is operated by AES and is currently operational, contributing to the country's energy mix. As a gas power plant, it represents a significant part of the UK's transition towards lower-carbon electricity generation compared to coal. The plant operates under the UK's regulatory framework, which includes the Industrial Emissions Directive and national emission standards. Gas-fired plants like Ballylumford C typically use combined cycle gas turbine (CCGT) technology, offering higher efficiency and lower emissions than older coal plants. The UK's power sector is increasingly reliant on gas as a flexible backup for renewable sources. Ballylumford C supports grid stability and provides dispatchable power to meet demand fluctuations. Its location in Northern Ireland serves the local community and industrial users. The plant's environmental impact is managed through strict emission controls, aligning with the UK's climate targets.
Environmental context
The plant's gas fuel source results in lower CO2, SOx, and NOx emissions compared to coal, but still contributes to greenhouse gas emissions. Its location near populated areas requires careful management of local air quality. The UK's regulatory framework, including the Industrial Emissions Directive, imposes strict emission limits and monitoring requirements.
Frequently asked questions
Ballylumford C is located in the United Kingdom, near the coast of Northern Ireland.
Ballylumford C has a capacity of 616 megawatts, making it a medium-to-large gas power plant.
Ballylumford C is operated by AES, a global power company.
Gas power plants in the UK must comply with the Industrial Emissions Directive (IED) and national emission standards, including limits on NOx, SOx, and CO2.
Ballylumford C provides flexible, dispatchable power to support grid stability and complement renewable energy sources like wind and solar.