Erratum: Corrigendum: Soot superaggregates from flaming wildfires and their direct radiative forcing

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Soot superaggregates from flaming wildfires and their direct radiative forcing

Wildfires contribute significantly to global soot emissions, yet their aerosol formation mechanisms and resulting particle properties are poorly understood and parameterized in climate models. The conventional view holds that soot is formed via the cluster-dilute aggregation mechanism in wildfires and emitted as aggregates with fractal dimension Df ≈ 1.8 mobility diameter Dm ≤ 1 μm, and aerodyn...

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Corrigendum: Soot superaggregates from flaming wildfires and their direct radiative forcing.

The original version of this Article contained an error in the Abstract. " We estimate that SAs contribute, per unit optical depth, up to 35% less atmospheric warming than freshly-emitted (D f ≈ 1.8) aggregates, and ≈90% more warming than the volume-equivalent spherical soot particles simulated in climate models. " now reads: " At 550 nm wavelength, we estimate that SAs contribute, per unit opt...

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Beyond direct radiative forcing

Introduction Conclusions References

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Breakthrough in the understanding of flaming wildfires.

In this article, I give an overview of the recent contribution of Finney et al. (1) to our understanding of how wildfires spread by providing its scientific context and also by putting forward the possible impact on the field. The rise of humanity was intimately bound to fire. Humans first observed flames when fleeing wildland fires, the natural version of the phenomenon that would then become ...

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ژورنال

عنوان ژورنال: Scientific Reports

سال: 2016

ISSN: 2045-2322

DOI: 10.1038/srep18530