Risk: Low Diesel Power Plant Operational

Shopping Cidade Jardim Diesel Power Plant in São Paulo, Brazil

Brazil
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Overview

Shopping Cidade Jardim is a 4 MW diesel power plant located in São Paulo, Brazil. It provides backup or peak power generation for the shopping center.

Shopping Cidade Jardim is a diesel power plant situated in São Paulo, Brazil, with a capacity of 4 MW. It serves as a backup or peak power source for the shopping center, ensuring reliable electricity supply during grid outages or high demand periods. The plant operates on oil as its primary fuel, typical for small-scale diesel generators in urban settings. In Brazil, such facilities are regulated by national environmental standards, including emissions limits for particulate matter and nitrogen oxides. The plant's small capacity places it in the low-scale category for power generation. Located in a densely populated urban area, the plant's environmental impact is managed through local permitting and emission controls. Its role is to enhance energy security for the commercial facility, contributing to operational continuity without relying solely on the grid.

Environmental context

The plant's use of oil as fuel results in CO2, SOx, and NOx emissions, though its small 4 MW capacity limits overall impact. Proximity to São Paulo's urban population necessitates adherence to local air quality regulations. The facility likely operates intermittently, reducing its environmental footprint compared to baseload plants.

Frequently asked questions

Shopping Cidade Jardim power plant is located in São Paulo, Brazil, at coordinates 23.5952° S, 46.6880° W.

It is a diesel power plant that uses oil as its primary fuel, with a capacity of 4 MW.

The plant has a capacity of 4 megawatts (MW), suitable for backup or peak power generation.

Diesel power plants in Brazil must comply with national air quality standards set by CONAMA, including limits on particulate matter, NOx, and SOx emissions.

The plant provides backup power to the shopping center, ensuring energy reliability during grid outages or peak demand periods.
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