Literature DB >> 30220859

The reduction of summer sulfate and switch from summertime to wintertime PM2.5 concentration maxima in the United States.

Elizabeth A W Chan1,2, Brett Gantt2, Stephen McDow3.   

Abstract

Exposure to particulate matter air pollution with a nominal mean aerodynamic diameter less than or equal to 2.5 μm (PM2.5) has been associated with health effects including cardiovascular disease and death. Here, we add to the understanding of urban and rural PM2.5 concentrations over large spatial and temporal scales in recent years. We used high-quality, publicly-available air quality monitoring data to evaluate PM2.5 concentration patterns and changes during the years 2000-2015. Compiling and averaging measurements collected across the U.S. revealed that PM2.5 concentrations from urban sites experienced seasonal maxima in both winter and summer. Within each year from 2000 to 2008, the maxima of urban summer peaks were greater than winter peaks. However, from 2012 to 2015, the maxima of urban summertime PM2.5 peaks were smaller than the urban wintertime PM2.5 maxima, due to a decrease in the magnitude of summertime maxima with no corresponding decrease in the magnitude of winter maxima. PM2.5 measurements at rural sites displayed summer peaks with magnitudes relatively similar to those of urban sites, and negligible to no winter peaks through the time period analyzed. Seasonal variations of urban and rural PM2.5 sulfate, PM2.5 nitrate, and PM2.5 organic carbon (OC) were also assessed. Summer peaks in PM2.5 sulfate decreased dramatically between 2000 and 2015, whereas seasonal PM2.5 OC and winter PM2.5 nitrate concentration maxima remained fairly consistent. These findings demonstrate that PM2.5 concentrations, especially those occurring in the summertime, have declined in the U.S. from 2000 to 2015. In addition, reduction strategies targeting sulfate have been successful and the decrease in PM2.5 sulfate contributed to the decline in total PM2.5.

Entities:  

Keywords:  Air quality; Fine particulate matter; Nitrate; Organic carbon; PM2.5; Sulfate

Year:  2017        PMID: 30220859      PMCID: PMC6134864          DOI: 10.1016/j.atmosenv.2017.11.055

Source DB:  PubMed          Journal:  Atmos Environ (1994)        ISSN: 1352-2310            Impact factor:   4.798


  11 in total

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7.  Origin of Fine Particulate Carbon in the Rural United States.

Authors:  Bret A Schichtel; Jenny L Hand; Michael G Barna; Kristi A Gebhart; Scott Copeland; John Vimont; William C Malm
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8.  Simulating Aqueous-Phase Isoprene-Epoxydiol (IEPOX) Secondary Organic Aerosol Production During the 2013 Southern Oxidant and Aerosol Study (SOAS).

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9.  Spatial and temporal variation in PM(2.5) chemical composition in the United States for health effects studies.

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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

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2.  Assessing PM2.5 Model Performance for the Conterminous U.S. with Comparison to Model Performance Statistics from 2007-2015.

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Journal:  Atmos Environ (1994)       Date:  2019       Impact factor: 4.798

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5.  Advancing methodologies for applying machine learning and evaluating spatiotemporal models of fine particulate matter (PM2.5) using satellite data over large regions.

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6.  The Effect of Transportation and Wildfires on the Spatiotemporal Heterogeneity of PM2.5 Mass in the New York-New Jersey Metropolitan Statistical Area.

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7.  Incorporation of Remote PM2.5 Concentrations into the Downscaler Model for Spatially Fused Air Quality Surfaces.

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8.  The Association between Respiratory Infection and Air Pollution in the Setting of Air Quality Policy and Economic Change.

Authors:  Daniel P Croft; Wangjian Zhang; Shao Lin; Sally W Thurston; Philip K Hopke; Mauro Masiol; Stefania Squizzato; Edwin van Wijngaarden; Mark J Utell; David Q Rich
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9.  Secondary organic aerosol association with cardiorespiratory disease mortality in the United States.

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