Diesel Power Plant Operational

Napoleon Peaking Diesel Power Plant | Ohio, USA

United States of America
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Overview

Napoleon Peaking is a 5.4 MW diesel power plant in Ohio, USA, operated by American Mun Power-Ohio Inc. It provides peaking capacity to the local grid.

Napoleon Peaking is a diesel power plant located in Ohio, United States, with a capacity of 5.4 MW. The facility is owned by American Mun Power-Ohio Inc and is currently operational, serving as a peaking plant to meet electricity demand during peak periods. The plant operates on diesel fuel, a common choice for peaking plants due to its quick start-up capabilities. In the United States, such facilities are subject to the Clean Air Act (CAA) regulations, including National Ambient Air Quality Standards (NAAQS) and the Acid Rain Program, which impose emission limits for SOx, NOx, and particulate matter. As a small-scale peaking plant, Napoleon Peaking plays a role in grid stability by providing supplemental power during high demand. Its location in Ohio places it within a region with a diverse energy mix, including coal, natural gas, and renewables. The plant's environmental footprint is relatively modest due to its size and intermittent operation.

Environmental context

The plant's use of diesel fuel results in emissions of CO2, SOx, NOx, and particulate matter, though its small capacity (5.4 MW) and peaking operation limit overall impact. Proximity to populated areas may raise local air quality concerns, but compliance with US EPA CAA standards helps mitigate risks. Diesel engines typically have lower efficiency than combined-cycle gas turbines.

Frequently asked questions

Napoleon Peaking is located in Ohio, United States, at coordinates 41.4079 N, -84.1095 W.

Napoleon Peaking is a diesel power plant with a capacity of 5.4 MW, used for peaking power generation.

The plant is owned by American Mun Power-Ohio Inc.

Diesel power plants in the US must comply with the Clean Air Act, including NAAQS, the Acid Rain Program, and CSAPR, which limit emissions of SOx, NOx, and particulate matter.

Peaking plants provide electricity during periods of high demand, helping to stabilize the grid and prevent blackouts.
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