Diesel Power Plant Operational

LIVORNO MARZOCCO Diesel Power Plant in Livorno, Italy | 310 MW Facility

Italy
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Overview

LIVORNO MARZOCCO is a 310 MW diesel power plant in Livorno, Italy, operated by ENEL. It provides electricity to the regional grid using oil as primary fuel.

LIVORNO MARZOCCO is a diesel power plant located in Livorno, Italy, with a capacity of 310 MW. Owned and operated by ENEL, the facility plays a role in the country's power generation mix, contributing to grid stability in the Tuscany region. The plant operates on oil as its primary fuel, a common choice for diesel plants that offer flexibility and quick start-up capabilities. In Italy, power generation is regulated under the EU Industrial Emissions Directive (2010/75/EU), which sets emission limits for SOx, NOx, and particulate matter. The facility likely employs Best Available Techniques (BAT) to comply with these standards. As a medium-scale diesel plant, LIVORNO MARZOCCO supports peak demand and grid balancing. Its location near the port of Livorno facilitates fuel supply. The plant's environmental impact is managed through adherence to EU regulations, and it contributes to the local economy by providing reliable power.

Environmental context

The plant's use of oil as fuel results in higher CO2, SOx, and NOx emissions compared to natural gas. Its location in an industrial port area near Livorno may affect local air quality, though EU regulations require emission controls. The 310 MW capacity places it in a medium-scale category, with environmental impacts mitigated by modern combustion technology and abatement systems.

Frequently asked questions

LIVORNO MARZOCCO is located in Livorno, Italy, near the port area.

It is a diesel power plant that uses oil as its primary fuel to generate electricity.

The plant is owned and operated by ENEL, a major Italian energy company.

Diesel power plants in Italy must comply with the EU Industrial Emissions Directive (2010/75/EU), which sets emission limits for pollutants like SOx, NOx, and particulate matter, and requires the use of Best Available Techniques (BAT).

The plant has a capacity of 310 megawatts (MW), making it a medium-scale power generation facility.
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