Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Observations and analysis of organic aerosol evolution in some prescribed fire smoke plumes
by
Akagi, S.
, Urbanski, S.
, Kreidenweis, S. M.
, Sullivan, A. P.
, Yokelson, R. J.
, McMeeking, G. R.
, Lee, T.
, May, A. A.
in
Aerosols
/ Ageing
/ Aging
/ Aging aircraft
/ Air pollution
/ Aircraft
/ Analysis
/ Atmospheric evolution
/ Atmospheric transport
/ Atmospherics
/ Biomass
/ Biomass burning
/ Black carbon
/ Burning
/ Carbon
/ Carbon dioxide
/ Carbon monoxide
/ Dilution
/ Emissions
/ Environmental chambers
/ Evaporation
/ Evolution
/ Evolution (Biology)
/ Fires
/ Forest & brush fires
/ Fragments
/ Gases
/ Instrumentation
/ Lutrinae
/ Mass
/ Mass spectrometry
/ Methane
/ Mixing ratio
/ Parameterization
/ Particulate emissions
/ Particulate matter
/ Photometers
/ Plumes
/ Pollutants
/ Prescribed fire
/ Secondary aerosols
/ Smoke
/ Smoke plumes
/ Soot
/ Statistical analysis
/ Statistical methods
/ Suspended particulate matter
/ Test chambers
/ Transformations
/ Transport
/ Volatile organic compounds
/ Wind
2015
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Observations and analysis of organic aerosol evolution in some prescribed fire smoke plumes
by
Akagi, S.
, Urbanski, S.
, Kreidenweis, S. M.
, Sullivan, A. P.
, Yokelson, R. J.
, McMeeking, G. R.
, Lee, T.
, May, A. A.
in
Aerosols
/ Ageing
/ Aging
/ Aging aircraft
/ Air pollution
/ Aircraft
/ Analysis
/ Atmospheric evolution
/ Atmospheric transport
/ Atmospherics
/ Biomass
/ Biomass burning
/ Black carbon
/ Burning
/ Carbon
/ Carbon dioxide
/ Carbon monoxide
/ Dilution
/ Emissions
/ Environmental chambers
/ Evaporation
/ Evolution
/ Evolution (Biology)
/ Fires
/ Forest & brush fires
/ Fragments
/ Gases
/ Instrumentation
/ Lutrinae
/ Mass
/ Mass spectrometry
/ Methane
/ Mixing ratio
/ Parameterization
/ Particulate emissions
/ Particulate matter
/ Photometers
/ Plumes
/ Pollutants
/ Prescribed fire
/ Secondary aerosols
/ Smoke
/ Smoke plumes
/ Soot
/ Statistical analysis
/ Statistical methods
/ Suspended particulate matter
/ Test chambers
/ Transformations
/ Transport
/ Volatile organic compounds
/ Wind
2015
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Observations and analysis of organic aerosol evolution in some prescribed fire smoke plumes
by
Akagi, S.
, Urbanski, S.
, Kreidenweis, S. M.
, Sullivan, A. P.
, Yokelson, R. J.
, McMeeking, G. R.
, Lee, T.
, May, A. A.
in
Aerosols
/ Ageing
/ Aging
/ Aging aircraft
/ Air pollution
/ Aircraft
/ Analysis
/ Atmospheric evolution
/ Atmospheric transport
/ Atmospherics
/ Biomass
/ Biomass burning
/ Black carbon
/ Burning
/ Carbon
/ Carbon dioxide
/ Carbon monoxide
/ Dilution
/ Emissions
/ Environmental chambers
/ Evaporation
/ Evolution
/ Evolution (Biology)
/ Fires
/ Forest & brush fires
/ Fragments
/ Gases
/ Instrumentation
/ Lutrinae
/ Mass
/ Mass spectrometry
/ Methane
/ Mixing ratio
/ Parameterization
/ Particulate emissions
/ Particulate matter
/ Photometers
/ Plumes
/ Pollutants
/ Prescribed fire
/ Secondary aerosols
/ Smoke
/ Smoke plumes
/ Soot
/ Statistical analysis
/ Statistical methods
/ Suspended particulate matter
/ Test chambers
/ Transformations
/ Transport
/ Volatile organic compounds
/ Wind
2015
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Observations and analysis of organic aerosol evolution in some prescribed fire smoke plumes
Journal Article
Observations and analysis of organic aerosol evolution in some prescribed fire smoke plumes
2015
Request Book From Autostore
and Choose the Collection Method
Overview
Open biomass burning is a significant source of primary air pollutants such as particulate matter (PM) and non-methane organic gases (NMOG). However, the physical and chemical atmospheric processing of these emissions during transport is poorly understood. Atmospheric transformations of biomass burning emissions have been investigated in environmental chambers, but there have been limited opportunities to investigate these transformations in the atmosphere. In this study, we deployed a suite of real-time instrumentation on a Twin Otter aircraft to sample smoke from prescribed fires in South Carolina, conducting measurements at both the source and downwind to characterize smoke evolution with atmospheric aging. Organic aerosol (OA) within the smoke plumes was quantified using an aerosol mass spectrometer (AMS); refractory black carbon (rBC) was quantified using a single-particle soot photometer, and carbon monoxide (CO) and carbon dioxide (CO2) were measured using a cavity ring-down spectrometer. During the two fires for which we were able to obtain aerosol aging data, normalized excess mixing ratios and \"export factors\" of conserved species (rBC, CO, CO2) suggested that changes in emissions at the source did not account for most of the differences observed in samples of increasing age. An investigation of AMS mass fragments indicated that the in-plume fractional contribution (fm/z) to OA of the primary fragment (m/z 60) decreased downwind, while the fractional contribution of the secondary fragment (m/z 44) increased. Increases in f44 are typically interpreted as indicating chemical aging of OA. Likewise, we observed an increase in the O : C elemental ratio downwind, which is usually associated with aerosol aging. However, the rapid mixing of these plumes into the background air suggests that these chemical transformations may be attributable to the different volatilities of the compounds that fragment to these m/z in the AMS. The gas–particle partitioning behavior of the bulk OA observed during the study was consistent with the predictions from a parameterization developed for open biomass burning emissions in the laboratory. Furthermore, we observed no statistically significant increase in total organic mass with atmospheric transport. Hence, our results suggest that dilution-driven evaporation likely dominated over the chemical production of secondary organic aerosol (SOA) within our smoke plumes, presumably due to the fast dilution and limited aging times (< ~ 5 h) that we could sample.
MBRLCatalogueRelatedBooks
Related Items
Related Items
This website uses cookies to ensure you get the best experience on our website.