Literature DB >> 26692593

Estimating surface NO2 and SO2 mixing ratios from fast-response total column observations and potential application to geostationary missions.

T Knepp1, M Pippin2, J Crawford2, G Chen2, J Szykman3, R Long3, L Cowen2, A Cede4, N Abuhassan5, J Herman6, R Delgado6, J Compton6, T Berkoff6, J Fishman7, D Martins8, R Stauffer8, A M Thompson8, A Weinheimer9, D Knapp9, D Montzka9, D Lenschow9, D Neil2.   

Abstract

Total-column nitrogen dioxide (NO2) data collected by a ground-based sun-tracking spectrometer system (Pandora) and an photolytic-converter-based in-situ instrument collocated at NASA's Langley Research Center in Hampton, Virginia were analyzed to study the relationship between total-column and surface NO2 measurements. The measurements span more than a year and cover all seasons. Surface mixing ratios are estimated via application of a planetary boundary-layer (PBL) height correction factor. This PBL correction factor effectively corrects for boundary-layer variability throughout the day, and accounts for up to ≈75 % of the variability between the NO2 data sets. Previous studies have made monthly and seasonal comparisons of column/surface data, which has shown generally good agreement over these long average times. In the current analysis comparisons of column densities averaged over 90 s and 1 h are made. Applicability of this technique to sulfur dioxide (SO2) is briefly explored. The SO2 correlation is improved by excluding conditions where surface levels are considered background. The analysis is extended to data from the July 2011 DISCOVER-AQ mission over the greater Baltimore, MD area to examine the method's performance in more-polluted urban conditions where NO2 concentrations are typically much higher.

Entities:  

Keywords:  Air quality; CAPABLE; DISCOVER-AQ; GEO-CAPE; Nitrogen dioxide; Remote sensing; Sulfur dioxide

Year:  2013        PMID: 26692593      PMCID: PMC4665805          DOI: 10.1007/s10874-013-9257-6

Source DB:  PubMed          Journal:  J Atmos Chem        ISSN: 0167-7764            Impact factor:   2.158


  13 in total

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1.  Effects of local meteorology and aerosols on ozone and nitrogen dioxide retrievals from OMI and pandora spectrometers in Maryland, USA during DISCOVER-AQ 2011.

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Journal:  Atmos Chem Phys       Date:  2021-07-23       Impact factor: 7.197

7.  Comparison of Near-surface NO2 Pollution with Pandora Total Column NO2 during the Korea-United States Ocean Color (KORUS OC) Campaign.

Authors:  Anne M Thompson; Ryan M Stauffer; Tyler P Boyle; Debra E Kollonige; Kazuyuki Miyazaki; Maria Tzortziou; Jay R Herman; Nader Abuhassan; Carolyn E Jordan; Brian T Lamb
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  10 in total

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