Harry Brookes Allen Museum of Anatomy & Pathology, Parkville Air Quality Forecast - Today, Tomorrow
Air Quality Today
Today (7 October): Air quality in Harry Brookes Allen Museum of Anatomy & Pathology is moderate. AQI, PM2.5, and NO2 are moderate; PM10 is fair; O3, SO2, CO, HCHO, and PM1 are good. Pollution peaks around 8:00 PM (NO2: 42.4/100).
Air Quality Tomorrow
Tomorrow (8 October 2026): Air quality in Harry Brookes Allen Museum of Anatomy & Pathology is moderate. NO2 decreases to fair; all other pollutants stay as today. Pollution peaks around 2:00 AM (PM2.5: 44.9/100).
Explore Forecasts
Air Quality
Today - 7 October
| Pollen species | Level | Value |
|---|---|---|
| AQI | Moderate | 42.4/100 |
| PM2.5 (fine particles) | Moderate | 42.0/100 |
| PM10 (coarse particles) | Fair | 23.5/100 |
| NO2 (nitrogen dioxide) | Moderate | 42.4/100 |
| O3 (ozone) | Good | 10.6/100 |
| SO2 (sulfur dioxide) | Good | 6.7/100 |
| CO (carbon monoxide) | Good | 0.6/100 |
| HCHO (formaldehyde) | Good | 5.0/100 |
| PM1 (ultrafine particles) | Good | 13.7/100 |
Tomorrow - 8 October
| Pollen species | Level | Value |
|---|---|---|
| AQI | Moderate | 44.9/100 |
| PM2.5 (fine particles) | Moderate | 44.9/100 |
| PM10 (coarse particles) | Fair | 25.7/100 |
| NO2 (nitrogen dioxide) | Fair | 32.8/100 |
| O3 (ozone) | Good | 10.8/100 |
| SO2 (sulfur dioxide) | Good | 7.5/100 |
| CO (carbon monoxide) | Good | 0.7/100 |
| HCHO (formaldehyde) | Good | 6.1/100 |
| PM1 (ultrafine particles) | Good | 17.7/100 |
Local Environmental Conditions
Around this part of Parkville, dense development means road traffic is the main local source of nitrogen dioxide and fine particles. Pockets of trees and green space help filter a small share of the particles from traffic. Winds here are fairly strong, averaging around 15 km/h, which helps disperse local pollution. Air arriving from elsewhere in the region adds to what is produced locally.
Fine particle levels climb from June to August, as home heating and traffic combine with cold, still air averaging 9°C. Summer sun in January cooks traffic fumes into ozone, especially in the warmest month, which averages 20°C. On the plus side, stronger winds around September, about 20 km/h on average, usually bring some of the cleanest air of the year.
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Frequently Asked Questions About Air Quality in Victoria
Is air quality bad in Harry Brookes Allen Museum of Anatomy & Pathology right now?
On 7 October 2026, overall air quality in Harry Brookes Allen Museum of Anatomy & Pathology is moderate. AQI is the main air quality indicator at 42.4/100. Pollution peaks around 8:00 PM (NO2: 42.4/100).
Will air quality be worse tomorrow in Harry Brookes Allen Museum of Anatomy & Pathology?
On 8 October 2026, air quality conditions in Harry Brookes Allen Museum of Anatomy & Pathology will be similar to today, with AQI forecast at moderate at 44.9/100. Pollution peaks around 2:00 AM (PM2.5: 44.9/100).
When is air pollution at its worst in Harry Brookes Allen Museum of Anatomy & Pathology?
Fine particle levels climb from June to August, as home heating and traffic combine with cold, still air averaging 9°C. Summer sun in January cooks traffic fumes into ozone, especially in the warmest month, which averages 20°C. On the plus side, stronger winds around September, about 20 km/h on average, usually bring some of the cleanest air of the year.
Are air quality levels in Harry Brookes Allen Museum of Anatomy & Pathology based on measurements or forecasts?
It is forecasts derived by downscaling forecasts provided by EU’s Copernicus Atmosphere Monitoring Service (CAMS) by taking into account local conditions such as traffic patterns. CAMS bases its forecast on satellite measurements of particles and chemical compounds in the atmosphere. Airmine’s services were developed with support from the European Space Agency (ESA)’s Business Applications and Space Solutions (BASS) team.
Why doesn’t the forecast always reflect wildfire impacts?
Airmine’s forecast uses CAMS (Copernicus Atmosphere Monitoring Service) as its background atmospheric model. While CAMS includes wildfire emissions, these are derived from satellite observations and are not available in real time. During rapidly evolving wildfire events, there may therefore be a delay before increased emissions are incorporated into the model. As a result, the forecast may temporarily underestimate PM₂.₅ and other pollutants associated with wildfire smoke.
During rapidly evolving wildfire events, CAMS may lag by approximately 1–2 days before increased wildfire emissions are fully represented, which can lead to temporary underestimation of PM₂.₅ concentrations in Airmine’s forecast.
Understanding the Scale
The 0–100 air quality scores represent risk levels, not direct air pollutant concentrations. Higher scores indicate higher risk.
Air Quality
| Good | 0-20 | Low air quality risk. Air quality is expected to be good, with low levels of pollution. |
| Fair | 20-40 | Generally low air quality risk. Air quality is expected to be acceptable, with some pollution present. |
| Moderate | 40-60 | Moderate air quality risk. Air pollution is elevated and air quality may be less favorable. |
| Poor | 60-80 | High air quality risk. Air pollution is high and air quality is expected to be poor. |
| Very Poor | 80-100 | Very high air quality risk. Air pollution is very high and air quality is expected to be very poor. |