Literature DB >> 25019919

A measurement of total reactive nitrogen, NOy, together with NO₂, NO, and O₃ via cavity ring-down spectroscopy.

Robert J Wild1, Peter M Edwards, William P Dubé, Karsten Baumann, Eric S Edgerton, Patricia K Quinn, James M Roberts, Andrew W Rollins, Patrick R Veres, Carsten Warneke, Eric J Williams, Bin Yuan, Steven S Brown.   

Abstract

We present a sensitive, compact detector that measures total reactive nitrogen (NOy), as well as NO2, NO, and O3. In all channels, NO2 is directly detected by laser diode based cavity ring-down spectroscopy (CRDS) at 405 nm. Ambient O3 is converted to NO2 in excess NO for the O3 measurement channel. Likewise, ambient NO is converted to NO2 in excess O3. Ambient NOy is thermally dissociated at ∼700 °C to form NO2 or NO in a heated quartz inlet. Any NO present in ambient air or formed from thermal dissociation of other reactive nitrogen compounds is converted to NO2 in excess O3 after the thermal converter. We measured thermal dissociation profiles for six of the major NOy components and compared ambient measurements with other instruments during field campaigns in Utah and Alabama. Alabama measurements were made in a rural location with high biogenic emissions, and Utah measurements were made in the wintertime in unusual conditions that form high ozone levels from emissions related to oil and gas production. The NOy comparison in Alabama, to an accepted standard measurement method (a molybdenum catalytic converter/chemiluminescence instrument), agreed to within 12%, which we define as an upper limit to the accuracy of the NOy channel. The 1σ precision is <30 pptv at 1 s and <4 pptv at 1 min time resolution for all measurement channels. The accuracy is 3% for the NO2 and O3 channels and 5% for the NO channel. The precision and accuracy of this instrument make it a versatile alternative to standard chemiluminescence-based NOy instruments.

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Year:  2014        PMID: 25019919     DOI: 10.1021/es501896w

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  6 in total

1.  Part 1. Assessment of carcinogenicity and biologic responses in rats after lifetime inhalation of new-technology diesel exhaust in the ACES bioassay.

Authors:  Jacob D McDonald; Melanie Doyle-Eisele; JeanClare Seagrave; Andrew P Gigliotti; Judith Chow; Barbara Zielinska; Joe L Mauderly; Steven K Seilkop; Rodney A Miller
Journal:  Res Rep Health Eff Inst       Date:  2015-01

2.  Evaluation of the Community Multiscale Air Quality Model for Simulating Winter Ozone Formation in the Uinta Basin.

Authors:  Rebecca Matichuk; Gail Tonnesen; Deborah Luecken; Rob Gilliam; Sergey L Napelenok; Kirk R Baker; Donna Schwede; Ben Murphy; Detlev Helmig; Seth N Lyman; Shawn Roselle
Journal:  J Geophys Res Atmos       Date:  2017-12-27       Impact factor: 4.261

3.  Anthropogenic enhancements to production of highly oxygenated molecules from autoxidation.

Authors:  Havala O T Pye; Emma L D'Ambro; Ben H Lee; Siegfried Schobesberger; Masayuki Takeuchi; Yue Zhao; Felipe Lopez-Hilfiker; Jiumeng Liu; John E Shilling; Jia Xing; Rohit Mathur; Ann M Middlebrook; Jin Liao; André Welti; Martin Graus; Carsten Warneke; Joost A de Gouw; John S Holloway; Thomas B Ryerson; Ilana B Pollack; Joel A Thornton
Journal:  Proc Natl Acad Sci U S A       Date:  2019-03-18       Impact factor: 11.205

4.  Instrumentation and Measurement Strategy for the NOAA SENEX Aircraft Campaign as Part of the Southeast Atmosphere Study 2013.

Authors:  C Warneke; M Trainer; J A de Gouw; D D Parrish; D W Fahey; A R Ravishankara; A M Middlebrook; C A Brock; J M Roberts; S S Brown; J A Neuman; B M Lerner; D Lack; D Law; G Hübler; I Pollack; S Sjostedt; T B Ryerson; J B Gilman; J Liao; J Holloway; J Peischl; J B Nowak; K Aikin; K-E Min; R A Washenfelder; M G Graus; M Richardson; M Z Markovic; N L Wagner; A Welti; P R Veres; P Edwards; J P Schwarz; T Gordon; W P Dube; S McKeen; J Brioude; R Ahmadov; A Bougiatioti; J J Lin; A Nenes; G M Wolfe; T F Hanisco; B H Lee; F D Lopez-Hilfiker; J A Thornton; F N Keutsch; J Kaiser; J Mao; C Hatch
Journal:  Atmos Meas Tech       Date:  2016-07-18       Impact factor: 4.176

5.  On-Road Chemical Transformation as an Important Mechanism of NO2 Formation.

Authors:  Bo Yang; K Max Zhang; W David Xu; Shaojun Zhang; Stuart Batterman; Richard W Baldauf; Parikshit Deshmukh; Richard Snow; Ye Wu; Qiang Zhang; Zhenhua Li; Xian Wu
Journal:  Environ Sci Technol       Date:  2018-04-03       Impact factor: 9.028

6.  Assessment of NO2 observations during DISCOVER-AQ and KORUS-AQ field campaigns.

Authors:  Sungyeon Choi; Lok N Lamsal; Melanie Follette-Cook; Joanna Joiner; Nickolay A Krotkov; William H Swartz; Kenneth E Pickering; Christopher P Loughner; Wyat Appel; Gabriele Pfister; Pablo E Saide; Ronald C Cohen; Andrew J Weinheimer; Jay R Herman
Journal:  Atmos Meas Tech       Date:  2020-05-19       Impact factor: 4.176

  6 in total

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