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Carson Cogeneration55.8 MW Gas

Gas

Carson Cogeneration is a 55.8 MW gas power plant in the United States, operated by Carson Cogeneration Co and commissioned in 1990. Ranked #1099 of 1,883 gas plants in the United States, it represents 0.01% of the total gas capacity of 592,244 MW. The largest gas plant in the United States is West County Energy Center at 4,263 MW, making Carson Cogeneration 76.4 times smaller. Nearby plants within 50 km include Alamitos Generating Station (Gas, 1,893 MW) and Haynes (Gas, 1,739.1 MW). The facility is located in California, approximately 30 km south of downtown Los Angeles.

Capacity
55.8 MW
Commissioning Year
1990

36 years old

Owner
Carson Cogeneration Co
Location
33.8759°, -118.2491°

United States of America, North America

Location

Coordinates:: 33.875900, -118.249100
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Carbon Footprint490 g CO₂/kWh
Annual CO₂
107.8 Kt
220 GWh/year × 490 g/kWh
Cumulative CO₂
3.88 Mt
Over 36 years of operation
Past Retirement
2020
6 years past expected retirement
Annual emissions equivalent to
23.4K
cars per year
14.4K
homes per year
4.9M
trees to offset

Estimates based on Gas emission factor (490 g CO₂/kWh) and capacity factor (45%). Actual emissions may vary based on operating conditions, efficiency, and fuel quality.

Technical Details

Primary Fuel Type
Gas
Energy Source
Non-Renewable
Country
United States of America
Continent
North America
Data Source
Global Power Plant Database

United States of AmericaEnergy Profile

10,047
Total Plants
1386.4 GW
Total Capacity
GasCoalNuclearHydro
Top Fuels

Gas Power Generation: An Overview of Its Mechanisms, Benefits, and Future Prospects

Gas power generation is a significant component of the global energy landscape, characterized by the use of natural gas to produce electricity. This process typically involves either gas turbines or combined cycle gas plants. In a gas turbine, compressed air is mixed with natural gas and ignited, producing high-temperature exhaust gases that spin a turbine connected to a generator. Combined cycle plants enhance efficiency by utilizing both gas and steam turbines. After the gas turbine generates electricity, the waste heat is used to produce steam, which drives a steam turbine, thereby maximizing energy extraction from the fuel.

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