Gas Power Plant Operational

Mississippi Baptist Medical Center Gas Power Plant | Jackson, Mississippi

United States of America
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Overview

Mississippi Baptist Medical Center operates a 4.2 MW gas power plant in Jackson, Mississippi, providing on-site electricity for the medical facility.

Mississippi Baptist Medical Center operates a gas-fired power plant located in Jackson, Mississippi, United States. With a capacity of 4.2 MW, this facility is classified as a small-scale power generation unit, primarily serving the energy needs of the medical center. The plant uses natural gas as its primary fuel, a cleaner-burning fossil fuel compared to coal. As a small-scale facility, it likely operates under state and federal regulations, including the Clean Air Act, which sets emission standards for pollutants such as NOx and SO2. The plant's technology is typical for on-site cogeneration or backup power in institutional settings. This facility plays a critical role in ensuring reliable electricity for healthcare operations, supporting patient care and emergency services. Its location within an urban area underscores the importance of efficient and low-emission power generation to minimize local air quality impacts.

Environmental context

The plant's use of natural gas results in lower CO2, SOx, and NOx emissions compared to coal or oil, reducing its environmental footprint. Its location in a populated area necessitates compliance with local air quality standards. The small capacity limits overall emissions, but continuous monitoring under the Clean Air Act ensures adherence to emission limits.

Frequently asked questions

The power plant is located at the Mississippi Baptist Medical Center in Jackson, Mississippi, USA.

The plant uses natural gas as its primary fuel.

The plant has a capacity of 4.2 megawatts (MW).

Gas power plants in the US must comply with the Clean Air Act, including emission limits for NOx, SO2, and other pollutants, as well as state-level regulations.

The plant provides on-site electricity generation, ensuring reliable power for critical healthcare services and reducing dependence on the grid.
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