Literature DB >> 24880542

Chemical characterization and source apportionment of indoor and outdoor fine particulate matter (PM(2.5)) in retirement communities of the Los Angeles Basin.

Sina Hasheminassab1, Nancy Daher1, Martin M Shafer2, James J Schauer2, Ralph J Delfino3, Constantinos Sioutas4.   

Abstract

Concurrent indoor and outdoor measurements of fine particulate matter (PM2.5) were conducted at three retirement homes in the Los Angeles Basin during two separate phases (cold and warm) between 2005 and 2006. Indoor-to-outdoor relationships of PM2.5 chemical constituents were determined and sources of indoor and outdoor PM2.5 were evaluated using a molecular marker-based chemical mass balance (MM-CMB) model. Indoor levels of elemental carbon (EC) along with metals and trace elements were found to be significantly affected by outdoor sources. EC, in particular, displayed very high indoor-to-outdoor (I/O) mass ratios accompanied by strong I/O correlations, illustrating the significant impact of outdoor sources on indoor levels of EC. Similarly, indoor levels of polycyclic aromatic hydrocarbons (PAHs), hopanes, and steranes were strongly correlated with their outdoor components and displayed I/O ratios close to unity. On the other hand, concentrations of n-alkanes and organic acids inside the retirement communities were dominated by indoor sources (e.g. food cooking and consumer products), as indicated by their I/O ratios, which exceeded unity. Source apportionment results revealed that vehicular emissions were the major contributor to both indoor and outdoor PM2.5, accounting for 39 and 46% of total mass, respectively. Moreover, the contribution of vehicular sources to indoor levels was generally comparable to its corresponding outdoor estimate. Other water-insoluble organic matter (other WIOM), which accounts for emissions from uncharacterized primary biogenic sources, displayed a wider range of contributions, varying from 2 to 73% of PM2.5, across all sites and phases of the study. Lastly, higher indoor than outdoor contribution of other water-soluble organic matter (other WSOM) was evident at some of the sites, suggesting the production of secondary aerosols as well as direct emissions from primary sources (including cleaning or other consumer products) at the indoor environments.
Copyright © 2014 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Indoor air; Indoor–outdoor ratio; Los Angeles Basin; Molecular marker-based chemical mass balance model; PM(2.5); Source apportionment

Mesh:

Substances:

Year:  2014        PMID: 24880542      PMCID: PMC4098872          DOI: 10.1016/j.scitotenv.2014.05.044

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  47 in total

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7.  Indoor/Outdoor relationships, trends, and carbonaceous content of fine particulate matter in retirement homes of the Los Angeles Basin.

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Authors:  Andrea Polidori; Barbara Turpin; Qing Yu Meng; Jong Hoon Lee; Clifford Weisel; Maria Morandi; Steven Colome; Thomas Stock; Arthur Winer; Jim Zhang; Jaymin Kwon; Shahnaz Alimokhtari; Derek Shendell; Jennifer Jones; Corice Farrar; Silvia Maberti
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2.  Nrf2-related gene expression and exposure to traffic-related air pollution in elderly subjects with cardiovascular disease: An exploratory panel study.

Authors:  Sharine Wittkopp; Norbert Staimer; Thomas Tjoa; Timothy Stinchcombe; Nancy Daher; James J Schauer; Martin M Shafer; Constantinos Sioutas; Daniel L Gillen; Ralph J Delfino
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4.  Relationships of relative humidity with PM2.5 and PM10 in the Yangtze River Delta, China.

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5.  Source apportionment of urban PM1 in Barcelona during SAPUSS using organic and inorganic components.

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6.  Associations of oxidative stress and inflammatory biomarkers with chemically-characterized air pollutant exposures in an elderly cohort.

Authors:  Xian Zhang; Norbert Staimer; Daniel L Gillen; Tomas Tjoa; James J Schauer; Martin M Shafer; Sina Hasheminassab; Payam Pakbin; Nosratola D Vaziri; Constantinos Sioutas; Ralph J Delfino
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7.  Selection of metric for indoor-outdoor source apportionment of metals in PM2.5 : mg/kg versus ng/m3.

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8.  The contribution of cooking appliances and residential traffic proximity to aerosol personal exposure.

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9.  Prenatal Particulate Matter/Tobacco Smoke Increases Infants' Respiratory Infections: COCOA Study.

Authors:  Song I Yang; Byoung Ju Kim; So Yeon Lee; Hyo Bin Kim; Cheol Min Lee; Jinho Yu; Mi Jin Kang; Ho Sung Yu; Eun Lee; Young Ho Jung; Hyung Young Kim; Ju Hee Seo; Ji Won Kwon; Dae Jin Song; Gwangcheon Jang; Woo Kyung Kim; Jung Yeon Shim; Soo Young Lee; Hyeon Jong Yang; Dong In Suh; Seo Ah Hong; Kil Yong Choi; Youn Ho Shin; Kangmo Ahn; Kyung Won Kim; Eun Jin Kim; Soo Jong Hong
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  9 in total

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