Literature DB >> 23590456

Ultrafine particle removal by residential heating, ventilating, and air-conditioning filters.

B Stephens1, J A Siegel.   

Abstract

This work uses an in situ filter test method to measure the size-resolved removal efficiency of indoor-generated ultrafine particles (approximately 7-100 nm) for six new commercially available filters installed in a recirculating heating, ventilating, and air-conditioning (HVAC) system in an unoccupied test house. The fibrous HVAC filters were previously rated by the manufacturers according to ASHRAE Standard 52.2 and ranged from shallow (2.5 cm) fiberglass panel filters (MERV 4) to deep-bed (12.7 cm) electrostatically charged synthetic media filters (MERV 16). Measured removal efficiency ranged from 0 to 10% for most ultrafine particles (UFP) sizes with the lowest rated filters (MERV 4 and 6) to 60-80% for most UFP sizes with the highest rated filter (MERV 16). The deeper bed filters generally achieved higher removal efficiencies than the panel filters, while maintaining a low pressure drop and higher airflow rate in the operating HVAC system. Assuming constant efficiency, a modeling effort using these measured values for new filters and other inputs from real buildings shows that MERV 13-16 filters could reduce the indoor proportion of outdoor UFPs (in the absence of indoor sources) by as much as a factor of 2-3 in a typical single-family residence relative to the lowest efficiency filters, depending in part on particle size.
© 2013 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  Central air-conditioning; Filter efficiency; Filtration; MERV; Particulate matter; Scanning mobility particle sizer

Mesh:

Substances:

Year:  2013        PMID: 23590456     DOI: 10.1111/ina.12045

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


  8 in total

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2.  Wind tunnel-based testing of a photoelectrochemical oxidative filter-based air purification unit in coronavirus and influenza aerosol removal and inactivation.

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3.  Evaluating the Long-Term Health and Economic Impacts of Central Residential Air Filtration for Reducing Premature Mortality Associated with Indoor Fine Particulate Matter (PM2.5) of Outdoor Origin.

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Journal:  Int J Environ Res Public Health       Date:  2015-07-21       Impact factor: 3.390

4.  Tailoring Mechanically Robust Poly(m-phenylene isophthalamide) Nanofiber/nets for Ultrathin High-Efficiency Air Filter.

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7.  Filter evaluation and selection for heating, ventilation, and air conditioning systems during and beyond the COVID-19 pandemic.

Authors:  Jing Wu; Jiawei Chen; Jason S Olfert; Lexuan Zhong
Journal:  Indoor Air       Date:  2022-08       Impact factor: 6.554

8.  Lessons from in-home air filtration intervention trials to reduce urban ultrafine particle number concentrations.

Authors:  Doug Brugge; Matthew C Simon; Neelakshi Hudda; Marisa Zellmer; Laura Corlin; Stephanie Cleland; Eda Yiqi Lu; Sonja Rivera; Megan Byrne; Mei Chung; John L Durant
Journal:  Build Environ       Date:  2017-10-06       Impact factor: 6.456

  8 in total

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