Literature DB >> 27008502

Real-time transformation of outdoor aerosol components upon transport indoors measured with aerosol mass spectrometry.

A M Johnson1, M S Waring1, P F DeCarlo1,2.   

Abstract

Outdoor aerosols are transported indoors, where their component concentrations depend on aerosol size, physiochemical properties, indoor sources and losses, and cross-environment gradients of temperature and relative humidity. We explored these dependencies by measuring real-time outdoor and indoor non-refractory, submicron (PM1 ) aerosol component mass concentrations in a mixed-use laboratory space with an Aerodyne mini-aerosol mass spectrometer (AMS) and black carbon (BC) with an aethalometer. The median indoor/outdoor (I/O) ratios were 0.60 for sulfate, 0.25 for nitrate, 0.52 for ammonium, 0.73 for organics, and 0.61 for BC. Positive matrix factorization (PMF) on organic aerosol data identified hydrocarbon-like (HOA), cooking (COA), and oxygenated (OOA) factors. By assuming sulfate was nonvolatile, lost only by mechanical processes, and without indoor sources, the transformations of other components i due to partitioning changes or indoor sources were parameterized by normalizing their I/O ratios by sulfate's I/O ratio, that is, (I/O)i/SO4 . Component-specific behavior was quantified by regressions of (I/O)i/SO4 to outdoor-to-indoor temperature differences. Nitrate and HOA strongly and OOA weakly showed losses with increasing temperatures indoors vs. outdoors, and HOA likely had an indoor source. To our knowledge, this is the first reported deployment of an AMS to analyze real-time indoor aerosol composition and outdoor-to-indoor transformation.
© 2016 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  Aerosol mass spectrometer; Indoor/outdoor ratio; PM composition; Positive matrix factorization; Real-time measurement; Volatility

Mesh:

Substances:

Year:  2016        PMID: 27008502     DOI: 10.1111/ina.12299

Source DB:  PubMed          Journal:  Indoor Air        ISSN: 0905-6947            Impact factor:   5.770


  7 in total

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4.  Ultrafine and Fine Particulate Matter Inside and Outside of Mechanically Ventilated Buildings.

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5.  Using Real Time Measurements to Derive the Indoor and Outdoor Contributions of Submicron Particulate Species and Trace Gases.

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6.  Thirdhand smoke uptake to aerosol particles in the indoor environment.

Authors:  Peter F DeCarlo; Anita M Avery; Michael S Waring
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Review 7.  Indoor Surface Chemistry: Developing a Molecular Picture of Reactions on Indoor Interfaces.

Authors:  Andrew P Ault; Vicki H Grassian; Nicola Carslaw; Douglas B Collins; Hugo Destaillats; D James Donaldson; Delphine K Farmer; Jose L Jimenez; V Faye McNeill; Glenn C Morrison; Rachel E O'Brien; Manabu Shiraiwa; Marina E Vance; J R Wells; Wei Xiong
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  7 in total

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