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Evaluation of Meteorological Variables and Their Influence on Air Quality at the La Oroya Metallurgical (#1290)

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Date of Conference

July 15-17, 2026

Published In

"Engineering without Borders: Artificial Intelligence, Knowledge, Innovation, and Alliances for a Future from the Americas"

Location of Conference

Santiago (Chile)

Authors

Chirre Flores, Jaqueline Heidy

Robles Calderón, Roberto

Diaz Ruiz, Julian

Cervantes Peralta, Marieta

Chino De La Cruz, Isabel

Abstract

The present research project aims to evaluate environmental air quality parameters and analyze the influence of meteorological variables within the district of La Oroya, Yauli Province, Junín Department, Peru, during the month of April 2025. Analyses of air quality parameters related to SO₂, together with environmental monitoring, constitute fundamental and necessary tools to assess environmental impacts and to adopt environmental management measures related to air pollution processes. Objectives: One of the objectives of this study is to analyze the SO₂ parameter and determine the influence of meteorological variables on the concentration and dispersion of SO₂ in the environment of Junín, in order to establish preventive measures against pollution. Methods: The methodology applied consisted of the analysis and collection of data from the database of the Environmental Surveillance Center of OEFA – La Oroya Metallurgical Complex, regarding SO₂ parameters and meteorological variables. Results: The 24-hour concentrations of sulfur dioxide (SO₂) obtained in April 2025 exceeded the reference Air Quality Environmental Standard (ECA) value of 250 µg/m³ on one (1) occasion (Supreme Decree No. 003-2017-MINAM). Likewise, the air quality ECA for sulfur dioxide of 250 µg/m³ was exceeded (Supreme Decree No. 003-2017-PCM). The maximum 24-hour SO₂ concentration was 255.3 µg/m³, recorded on April 26, 2025. Conclusions: During the April 2025 monitoring period at the CA-CC-01 environmental monitoring station, the wind direction showed a predominance from the west (W) with a monthly frequency of 23.3%, followed by west-southwest (WSW) winds with 14.6%.

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