Risk: Low Diesel Power Plant Operational

Miracema Nuodex Diesel Power Plant, Brazil - Small-Scale Oil-Fired Generation

Brazil
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Overview

Miracema Nuodex is a 1.016 MW diesel power plant located in Brazil, operating on oil. It serves as a small-scale generation facility within the country's energy mix.

Miracema Nuodex is a diesel power plant situated in Brazil, with coordinates approximately 22.96°S, 47.09°W. It has a capacity of 1.016 MW and uses oil as its primary fuel, classifying it as a small-scale generation facility within the Brazilian power sector. The plant operates under Brazil's national environmental and energy regulations, which include standards for emissions and operational efficiency. Diesel and oil-fired plants in Brazil are typically used for backup or peak-load generation due to their flexibility and relatively higher operational costs compared to hydroelectric and renewable sources. As a small-scale diesel plant, Miracema Nuodex contributes to local grid stability and may serve industrial or community needs in its vicinity. Its environmental impact is limited by its small capacity, but it still adheres to emission control requirements set by Brazilian authorities.

Environmental context

The plant's use of oil as fuel results in CO2, SOx, and NOx emissions, though its small capacity (1.016 MW) limits overall impact. Proximity to populated areas is a consideration for local air quality. Brazilian regulations, such as CONAMA resolutions, govern emission limits for such facilities.

Frequently asked questions

Miracema Nuodex is located in Brazil, with coordinates approximately 22.96°S, 47.09°W.

Miracema Nuodex is a diesel power plant that uses oil as its primary fuel.

The plant has a capacity of 1.016 megawatts (MW), making it a small-scale generation facility.

Diesel power plants in Brazil must comply with CONAMA resolutions for air emissions and environmental licensing, as well as national energy sector regulations.

As a small-scale diesel plant, it likely provides backup or peak-load power, supporting grid stability and local energy needs.
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