Diesel Power Plant Operational

Lake Park Diesel Power Plant | Lake Park, Iowa | United States

United States of America
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Overview

Lake Park is a 4 MW diesel power plant in Lake Park, Iowa, United States. It is owned by the City of Lake Park and operates on oil fuel.

Lake Park is a diesel power plant located in Lake Park, Iowa, United States. With a capacity of 4 MW, it is a small-scale facility serving the local community. The plant is owned by the City of Lake Park and is currently operational. As a diesel-fired power plant, Lake Park operates using oil as its primary fuel. Diesel plants are typically used for peaking power or backup generation due to their quick start-up capabilities. The plant's small capacity suggests it plays a role in local grid stability rather than baseload power. Environmental considerations for diesel plants include emissions of CO2, SOx, and NOx, which are regulated under the US Clean Air Act. The facility contributes to the energy resilience of Lake Park and the surrounding region.

Environmental context

The Lake Park diesel plant uses oil fuel, which produces higher CO2 emissions per MWh compared to natural gas. Its small capacity (4 MW) limits overall emissions, but diesel combustion also emits SOx and NOx, contributing to local air quality concerns. The plant's location in a rural area with lower population density reduces direct exposure, but regulatory compliance with the Clean Air Act is required.

Frequently asked questions

Lake Park power plant is located in Lake Park, Iowa, United States, at coordinates 43.430100, -95.315300.

Lake Park is a diesel power plant that uses oil as its primary fuel. It has a capacity of 4 MW.

Lake Park power plant is owned by the City of Lake Park in Iowa.

Diesel power plants in the United States must comply with the Clean Air Act, including emissions limits for SOx, NOx, and particulate matter. Facilities may also be subject to state-level air quality permits.

As a small 4 MW diesel plant, Lake Park likely provides peaking power or backup generation to support the local grid during high demand or emergencies.
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