Cathelijne Stoof

@dr-firelady.bsky.social

Pyrogeographer based in The Netherlands - coordinator SparkleFire - PyroLife - wildfire - scicomm - diversity - transdisciplinarity

Urban firestorms like the one that devastated Spokane Saturday have been growing more common because of increased development in the Wildland Urban Interface (WUI) and climate change. In this post, I document 9 such fires since 2016 in the U.S. yaleclimateconnections.org/2026/08/urba...

Urban firestorm devastates Spokane as dense smoke envelops the Northwest » Yale Climate Connections

Climate change, combined with development in high-risk areas, is making urban wildfires more likely.

yaleclimateconnections.org

If you are an expert on air quality and have 10-15 minutes to talk to me today or tomorrow about important things journalists should know while reporting on wildfires and smoke, my DMs are open, or you can email me at karen at OpenNews dot org.

This video, captured by Meteosat-12 between 24-26 July, shows smoke from large wildfires affecting southern Europe - including fires in France and Spain. For more information on the fires in Spain and more focused imagery on the region, visit our Image of the Week page: bit.ly/4fxgfQP

Los 3 incendios ya juntos en uno, #IFsierraOeste El de Ávila ( #IFBurgohondo) y los dos de Madrid ( #IFSanMartindeValdeiglesias, #IFVilladelPrado), según FIRMS (26 de julio). La línea horizontal de referencia es de 50 km. 🔥🌳🔥🍁 wildfires

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juli g pausas@jgpausas.bsky.social · 2w ago

Separación de unos 9 km entre el incendios de Ávila ( #IFBurgohondo) y los dos de Madrid ( #IFSanMartindeValdeiglesias, #IFVilladelPrado), según FIRMS (24 julio) Rojo: arde recientemente Amarillo: hace más horas #IFSierraNorte 🔥🌳🔥🍁

Unfortunately, in our latest work, we estimated an 8-fold increase in bacterial diversity for smoke with a hazardous AQI rating (PM2.5 >225 ug/m-3). #bioaerosol #smoke #microbiome doi.org/10.1186/s424...

The ecology of a smoke plume: bioaerosol patterns reveal abiotic and biotic drivers of diversity - Fire Ecology

Background Wildland fire is known to play an important role in aerosolizing microbes sourced from vegetation and soil communities, but little is known about their spatiotemporal patterns across environmental gradients in smoke plumes. During prescribed fires in Kansas tallgrass prairies, simultaneous deployment of three uncrewed aerial vehicles (UAVs) equipped with bioaerosol sampling and environmental sensor payloads enabled simultaneous measurements (~100 m intervals) across smoke plumes to better understand patterns of aerosolized microbes, relationships to their environment and sources, and their transport. Using data collected from nine smoke plume transects, we made comparisons to samples collected from ambient air to evaluate hypotheses about microbial composition and diversity as the smoke advected with prevailing winds. Results As distance from the flaming front increased, our data indicated changes in the composition of smoke-borne microbial assemblages that correlate to plume environmental gradients. The detectable contribution of terrestrial communities as sources of smoke bioaerosols decreased with deposition, smoke aging, and dilution with background air. Microbial composition of the smoke also differed based on the historical fire regimes of the burn units compared. Our results also demonstrate that “hazardous” Air Quality Index levels, based on particulate matter concentrations, corresponded to a fourfold increase in bacterial taxa richness, relating a novel microbial component to the metric most widely used to communicate with the public about smoke hazards. Conclusions Grassland fires demonstrated an attenuated smoke signal as smoke aged, traveled, and diffused, but across the ~300 m distance measured, the plume and its biological assemblage remained distinct from background air. Smoke assemblages were driven by fluctuation in relative humidity (RH), particulate matter (PM) concentration, and differences among the vegetation and soils of the source communities as influenced by historical fire frequency in the tallgrass prairie sites. The distinction between smoke and background air microbial composition and diversity was not as pronounced as in previous studies of higher intensity fires consuming greater fuel loads, yet richness and diversity increased with deteriorating air quality indices. This relationship shows that fire behavior producing more PM emits and transports a wider variety of terrestrial microbes from tallgrass prairies.

doi.org

Krista Bonfantine 🔥💧@aridideas.bsky.social · 3w ago

Seriously! 😷 We know SO many terrible impacts of smoke exposure. And, we haven’t even started looking at the health consequences of microbes in smoke. It’s alive. www.wnycstudios.org/story/9d5209...

Every single regulatory grade monitor in the Chicago area is recording over 400 µg/m³ of PM2.5 smoke pollution. This is so far beyond anything in the historical record it’s difficult to communicate how extreme this event really is

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Genuinely extreme--and quite frankly explosive--fire behavior ongoing within #CottonwoodFire in SW Utah late this evening, with a persistent, deep, and apparently rotating *nocturnal* pyrocumulonimbus. This region had record low snowpack a following record warm winter. Yikes.

Current satellite snapshot showing glaciated anvil atop a very intense wildfire plume in Utah (circled in yellow).Screenshot of current dual panel radar imagery showing smoke plume in Utah. At left is reflectivity, a measure of the density of the smoke plume, and at right is  the relative velocity of the particles within the smoke plume, which exhibits a "couplet" of winds in opposite directions in close proximity (circled), indicative of plume rotation.

Monitoring wildfires from space. The April fire near ’t Harde highlights rising wildfire risk. #TROPOMI on ESA Sentinel-5P detected increased CO and aerosols. ECMWF reports Europe is warming fastest, with more extremes and wildfires.

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There is no good smoke. Yet it is an illusion to think all fire can be eliminated. The question is therefore: how would you like your smoke? When do you want it to burn?

Mark Parrington@mparrington.bsky.social · 8mo ago

#Wildfire smoke impacts on #airquality from the recent @easac.bsky.social report easac.eu/publications... presented by @dr-firelady.bsky.social in the Clean Air Forum session on super pollutants & extreme events #CleanAirEU @ecmwf.int @copernicusecmwf.bsky.social