Risk: Low Diesel Power Plant Operational

Atacadão SA Cuiaba Porto - Diesel Power Plant in Cuiabá, Brazil

Brazil
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Overview

Atacadão SA Cuiaba Porto is a 1.2 MW diesel power plant in Cuiabá, Brazil. It operates on oil and serves local energy needs.

Atacadão SA Cuiaba Porto is a small-scale diesel power plant located in Cuiabá, Mato Grosso, Brazil. With a capacity of 1.2 MW, it falls into the small-scale category for power generation, typical for backup or peak-load facilities in the region. The plant operates on oil as its primary fuel, a common choice for smaller diesel generators. In Brazil, such facilities are regulated under national environmental standards, including CONAMA resolutions for air emissions. Diesel plants of this size often use reciprocating engines. As an operational facility, Atacadão SA Cuiaba Porto contributes to local grid stability, particularly during peak demand or emergencies. Its location in Cuiabá, a major city in the central-west region, supports the area's energy infrastructure. The plant's environmental impact is typical for diesel generation, with CO2 and particulate emissions managed under Brazilian regulations.

Environmental context

The plant's use of oil as fuel results in CO2, SOx, NOx, and particulate emissions. Its small capacity limits overall impact, but proximity to urban areas may raise local air quality concerns. Brazilian regulations, such as CONAMA Resolution 382/2006, set emission limits for stationary engines. Older diesel generators may have higher emission rates.

Frequently asked questions

Atacadão SA Cuiaba Porto is located in Cuiabá, Mato Grosso, Brazil.

The plant has a capacity of 1.2 MW, making it a small-scale diesel power facility.

The plant operates on oil, which is typical for diesel power plants.

Diesel power plants in Brazil are regulated by CONAMA resolutions, including Resolution 382/2006 for air emissions, and must comply with state environmental agencies.

As a small diesel plant, it likely provides backup or peak-load support to the Cuiabá grid, enhancing reliability during high demand or emergencies.
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