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Live AQI in Alta Floresta

Alta Floresta Air Quality Index (AQI)

Real-time AQI for Alta Floresta, Mato Grosso, Brazil.

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About Alta Floresta

Alta Floresta, nestled in the heart of Mato Grosso, Brazil, occupies a strategically important position within the Amazon biome. Located at approximately -9.8758° latitude and -56.0858° longitude, the city sits at an elevation of roughly 300 meters (984 feet) above sea level, contributing to a relatively mild climate despite its tropical location. The surrounding landscape is dominated by dense tropical rainforest, interspersed with areas of pastureland and soy cultivation – a characteristic feature of the region’s agricultural expansion. The Xingu River, a major tributary of the Amazon, flows nearby, influencing local humidity and weather patterns. Alta Floresta’s urban character is that of a regional hub, serving as a commercial and logistical center for agricultural activities in the northern Mato Grosso. The urban–rural gradient is relatively sharp; the city transitions quickly into agricultural lands and then into the vast expanse of the Amazon rainforest. This proximity to extensive agricultural zones, particularly soy farms, means that agricultural practices, including the use of fertilizers and pesticides, can influence local air quality. While Alta Floresta isn't situated near major industrial belts, the transportation of agricultural goods via roads and potentially river transport contributes to localized emissions. The terrain is generally flat, which can exacerbate the accumulation of pollutants, particularly during periods of stagnant air. The city’s location within the Amazon basin also means it is susceptible to the transport of biomass burning smoke from distant wildfires, a significant factor in regional air quality fluctuations.

Air Quality Across Seasons

Alta Floresta experiences a distinct wet and dry season, profoundly impacting its air quality profile. The dry season, typically from May to September, is characterized by lower rainfall and increased temperatures, often leading to a build-up of pollutants. During this period, biomass burning from agricultural clearing and land preparation becomes a major concern. The lack of rainfall and reduced cloud cover allow smoke particles to persist in the atmosphere for longer durations. Temperature inversions, where cooler air is trapped beneath warmer air, are also more frequent during the dry season, further hindering the dispersion of pollutants. The wet season, from October to April, brings higher rainfall and increased humidity, which naturally helps to cleanse the air by washing away particulate matter. However, periods of intense rainfall can also lead to increased soil erosion and dust emissions, temporarily degrading air quality. Fog, particularly in the early morning hours during the transition periods between seasons, can trap pollutants near the ground. Sensitive groups, such as children, the elderly, and individuals with respiratory conditions, should exercise caution during the dry season, limiting outdoor activities on days with visible smoke. While the wet season generally offers improved air quality, periods of heavy rainfall and subsequent dust events warrant similar precautions. The intensity of agricultural burning significantly influences the severity of air quality issues, with peak concerns typically occurring in August and September as farmers prepare fields for the next planting cycle. Careful monitoring of regional fire activity is crucial for anticipating and mitigating potential air quality impacts.

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