Literature DB >> 26030084

Decreasing Aerosol Water Is Consistent with OC Trends in the Southeast U.S.

Thien Khoi V Nguyen1, Shannon L Capps2, Annmarie G Carlton1.   

Abstract

Water is a ubiquitous and abundant component of atmospheric aerosols. It influences light scattering, the hydrological cycle, atmospheric chemistry, and secondary particulate matter (PM) formation. Despite the critical importance of aerosol liquid water, mass concentrations are not well-known. Using speciated ion and meteorological data from the Southeastern Aerosol Research and Characterization network, we employ the thermodynamic model ISORROPIAv2.1 to estimate water mass concentrations and evaluate trends from 2001 to 2012 in urban and rural locations. The purpose of this study is to better understand the historical trends of aerosol liquid water in the southeast U.S. in the context of improved air quality and recently noted reductions in particulate organic carbon (OC). Aerosol water mass concentrations decrease by ∼79% from 2001 to 2012 in the region. Decreases are more prominent in rural than in urban areas. Fractional contribution of water to PM also decreases during the same time period, and this is consistent with recently noted improvements in visibility. These findings agree with the hypotheses that aerosol liquid water facilitates formation of biogenic secondary organic aerosol (SOA) and that biogenically derived SOA is modulated in the presence of anthropogenic perturbations.

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Year:  2015        PMID: 26030084     DOI: 10.1021/acs.est.5b00828

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


  6 in total

1.  Urban Emissions of Water Vapor in Winter.

Authors:  Olivia E Salmon; Paul B Shepson; Xinrong Ren; Allison B Marquardt Collow; Mark A Miller; Annmarie G Carlton; Maria O L Cambaliza; Alexie Heimburger; Kristan L Morgan; Jose D Fuentes; Brian H Stirm; Robert Grundman; Russell R Dickerson
Journal:  J Geophys Res Atmos       Date:  2017-09-04       Impact factor: 4.261

2.  Causes and consequences of decreasing atmospheric organic aerosol in the United States.

Authors:  D A Ridley; C L Heald; K J Ridley; J H Kroll
Journal:  Proc Natl Acad Sci U S A       Date:  2017-12-26       Impact factor: 11.205

3.  The Acidity of Atmospheric Particles and Clouds.

Authors:  Havala O T Pye; Athanasios Nenes; Becky Alexander; Andrew P Ault; Mary C Barth; Simon L Clegg; Jeffrey L Collett; Kathleen M Fahey; Christopher J Hennigan; Hartmut Herrmann; Maria Kanakidou; James T Kelly; I-Ting Ku; V Faye McNeill; Nicole Riemer; Thomas Schaefer; Guoliang Shi; Andreas Tilgner; John T Walker; Tao Wang; Rodney Weber; Jia Xing; Rahul A Zaveri; Andreas Zuend
Journal:  Atmos Chem Phys       Date:  2020-04-24       Impact factor: 6.133

4.  Simulating Aqueous-Phase Isoprene-Epoxydiol (IEPOX) Secondary Organic Aerosol Production During the 2013 Southern Oxidant and Aerosol Study (SOAS).

Authors:  Sri Hapsari Budisulistiorini; Athanasios Nenes; Annmarie G Carlton; Jason D Surratt; V Faye McNeill; Havala O T Pye
Journal:  Environ Sci Technol       Date:  2017-04-20       Impact factor: 9.028

5.  Southeast Atmosphere Studies: learning from model-observation syntheses.

Authors:  Jingqiu Mao; Annmarie Carlton; Ronald C Cohen; William H Brune; Steven S Brown; Glenn M Wolfe; Jose L Jimenez; Havala O T Pye; Nga Lee Ng; Lu Xu; V Faye McNeill; Kostas Tsigaridis; Brian C McDonald; Carsten Warneke; Alex Guenther; Matthew J Alvarado; Joost de Gouw; Loretta J Mickley; Eric M Leibensperger; Rohit Mathur; Christopher G Nolte; Robert W Portmann; Nadine Unger; Mika Tosca; Larry W Horowitz
Journal:  Atmos Chem Phys       Date:  2018-02-22       Impact factor: 6.133

6.  On the implications of aerosol liquid water and phase separation for organic aerosol mass.

Authors:  Havala O T Pye; Benjamin N Murphy; Lu Xu; Nga L Ng; Annmarie G Carlton; Hongyu Guo; Rodney Weber; Petros Vasilakos; K Wyat Appel; Sri Hapsari Budisulistiorini; Jason D Surratt; Athanasios Nenes; Weiwei Hu; Jose L Jimenez; Gabriel Isaacman-VanWertz; Pawel K Misztal; Allen H Goldstein
Journal:  Atmos Chem Phys       Date:  2017       Impact factor: 6.133

  6 in total

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