Canada

Lennox Generating Station — 2,140 MW Natural Gas

Natural Gas Verified

Lennox Generating Station is a 2,140 MW gas power plant located in Canada. View location, capacity, and technical details.

Capacity
2,140 MW

Installed

Commissioned
2000

Year online

Owner
Ontario Power Generation

Operator

Location
44.15, -76.85

Coordinates

Insights

#18
largest in Canada
#148
largest Natural Gas worldwide
#704
largest worldwide
2000
1 yrs newer than avg
45
operated by Ontario Power Generation
78
plants within 100 km

Technical Details

Fuel Type
Natural Gas
Capacity
2,140 MW
Commissioned
2000
Status
Operational
Owner
Ontario Power Generation
Country
Canada
Coordinates
44.146, -76.853
Wikipedia
Link

Carbon Footprint

Annual CO₂
4,133,581 t

tonnes / year

Lifetime CO₂
124,007,436 t

over ~30 yrs

Intensity
490 g

Est. gCO2/kWh

Annual emissions equivalent to

898,605
cars per year
551,144
homes per year
187,890,055
trees to offset

Indicative estimate from standard life-cycle emission and capacity factors — not a measured figure. Open calculator

Nearby Plants

About this plant

The Lennox Generating Station is a natural gas-fired power plant located in Ontario, Canada, with a remarkable capacity of 2,140 megawatts (MW). Owned and operated by Ontario Power Generation (OPG), this facility plays a pivotal role in the energy landscape of Ontario and contributes significantly to the province’s efforts to meet its electricity demands. As one of the largest gas-powered plants in Canada, Lennox serves as a crucial resource for providing reliable, peaking power, particularly during periods of high electricity consumption, such as in the summer months when air conditioning usage surges.

The Lennox Generating Station utilizes natural gas as its primary fuel source, a choice that reflects a broader trend in the energy sector towards cleaner-burning fuels. Natural gas is considered a more environmentally friendly alternative compared to coal and oil, as it produces fewer greenhouse gas emissions and pollutants when combusted. The plant employs advanced gas turbine technology, allowing for efficient energy conversion and lower operational emissions. This technological edge enables Lennox to respond rapidly to fluctuations in electricity demand, thus enhancing the stability and reliability of the grid.

In terms of environmental impact, the Lennox Generating Station is designed to meet stringent regulatory standards aimed at minimizing its ecological footprint. The use of natural gas significantly reduces the emission of sulfur dioxide (SO2) and particulate matter, which are common byproducts of coal combustion. Additionally, modern gas turbines are equipped with low-NOx burners, which lower nitrogen oxide (NOx) emissions, a precursor to smog formation. However, while natural gas is cleaner than other fossil fuels, it still contributes to carbon dioxide (CO2) emissions, raising concerns about its long-term sustainability in the context of climate change.

Regionally, the Lennox Generating Station is vital not only for its power generation capabilities but also for its role in the local economy. The facility provides jobs and supports local businesses, contributing to the economic stability of the region. Furthermore, it plays a strategic role in Ontario’s energy strategy, which aims to reduce reliance on coal and transition towards more sustainable energy sources. As part of this transition, Lennox is integrated into a broader mix of renewable energy sources such as wind and solar power, ensuring that Ontario can meet its energy needs while also pursuing environmental stewardship.

In conclusion, the Lennox Generating Station stands as a cornerstone of Ontario’s electricity generation framework. Its significant capacity and reliance on natural gas make it a key player in the province’s efforts to provide reliable and cleaner energy. While it supports the region’s economic viability and grid stability, ongoing discussions about the environmental implications of fossil fuel use highlight the need for continued innovation and investment in renewable energy alternatives.

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