Overview
Gary Works is a 161 MW gas power plant in Indiana, United States, operated by United States Steel-Gary. It provides electricity for industrial operations and the local grid.
Gary Works is a gas-fired power generation facility located in Gary, Indiana, United States. With a capacity of 161 MW, it is a medium-scale plant within the US power sector, primarily serving the energy needs of the adjacent steel manufacturing operations. The plant operates under the regulatory framework of the US Environmental Protection Agency, including the Clean Air Act and associated programs such as the Acid Rain Program and CSAPR. As a gas-fired facility, it benefits from lower emissions of sulfur dioxide and nitrogen oxides compared to coal plants, aligning with modern environmental standards. Gary Works plays a key role in supporting the industrial base of the Great Lakes region. Its integration with steel production highlights the importance of on-site power generation for large manufacturing facilities, contributing to grid stability and local energy reliability.
Environmental context
The plant's gas fuel type results in lower CO2, SOx, and NOx emissions compared to coal-fired units, reducing its local air quality impact. Located in an industrial area of Gary, Indiana, it is near Lake Michigan and populated communities. Its capacity of 161 MW places it in a moderate scale, with environmental performance subject to US EPA regulations under the Clean Air Act.
Frequently asked questions
Gary Works is located in Gary, Indiana, United States, near the southern shore of Lake Michigan.
Gary Works has a capacity of 161 megawatts (MW), making it a medium-scale gas power plant.
Gary Works is operated by United States Steel-Gary, a subsidiary of United States Steel Corporation.
As a US power plant, Gary Works must comply with the Clean Air Act, including the Acid Rain Program and the Cross-State Air Pollution Rule (CSAPR), which limit emissions of SO2 and NOx.
Gary Works uses natural gas as its primary fuel, which produces lower emissions of sulfur dioxide and nitrogen oxides compared to coal.