Literature DB >> 29283321

Resuspension of house dust and allergens during walking and vacuum cleaning.

Roger D Lewis1, Kee Hean Ong2, Brett Emo1, Jason Kennedy3, Jana Kesavan4, Michael Elliot1.   

Abstract

Conventional wisdom has been that hard, resilient surfaces resuspend fewer particles than carpeted surfaces, however, exceptions to this have been demonstrated and uncertainty remains about the factors that lead to this resuspension, notably, the effect of vacuum cleaning on either increasing or reducing resuspension from flooring. The purpose of this study was to determine how resuspension of house dust by aerodynamic size or particle type, including cat allergen and bacterial endotoxin, is affected by flooring, dust loading, embedding dust, and walking/cleaning activities. House dust was blown in and allowed to settle in a walk-in chamber after overnight deposition followed by walking or a vacuum cleaning procedure. Using an aerosol particle sizer and large-volume air samplers at different heights in the chamber, concentrations of airborne particles, resuspension rates, and fractions were computed for four types of flooring conditions during six walking activities. Carpeting resulted in significantly more airborne cat allergen and airborne endotoxin than a laminate floor. Height does have an effect on measured allergen over carpet and this is apparent with concentrations at the infant and adult air samplers. Walking on laminate flooring resuspends less house dust than walking on an equally dusty carpeted floor, where dust is entirely on the surface of the carpet. However, vacuum cleaning a laminate floor resuspended more dust than vacuum cleaning carpets, at large particle sizes of 5 µm and 10 µm. Activities following a deep cleaning of hard resilient or a carpeted surface is likely to leave no differences in resuspended particles between them.

Entities:  

Keywords:  Allergen; carpet; dust; endotoxin; resuspension; vacuuming

Mesh:

Substances:

Year:  2018        PMID: 29283321     DOI: 10.1080/15459624.2017.1415438

Source DB:  PubMed          Journal:  J Occup Environ Hyg        ISSN: 1545-9624            Impact factor:   2.155


  4 in total

1.  Ten questions concerning the implications of carpet on indoor chemistry and microbiology.

Authors:  Sarah R Haines; Rachel I Adams; Brandon E Boor; Thomas A Bruton; John Downey; Andrea R Ferro; Elliott Gall; Brett J Green; Bridget Hegarty; Elliott Horner; David E Jacobs; Paul Lemieux; Pawel K Misztal; Glenn Morrison; Matthew Perzanowski; Tiina Reponen; Rachael E Rush; Troy Virgo; Celine Alkhayri; Ashleigh Bope; Samuel Cochran; Jennie Cox; Allie Donohue; Andrew A May; Nicholas Nastasi; Marcia Nishioka; Nicole Renninger; Yilin Tian; Christina Uebel-Niemeier; David Wilkinson; Tianren Wu; Jordan Zambrana; Karen C Dannemiller
Journal:  Build Environ       Date:  2019-12-18       Impact factor: 6.456

2.  Indoor concentrations of particulate matter 2.5 in a pediatric emergency service.

Authors:  Catiane Zanin Cabral; Alan da Silveira Fleck; Fernanda Chaves Amantéa; Claudia Ramos Rhoden; Sérgio Luis Amantéa
Journal:  Rev Paul Pediatr       Date:  2021-10-04

3.  Effectiveness of portable HEPA air cleaners on reducing indoor endotoxin, PM10, and coarse particulate matter in an agricultural cohort of children with asthma: A randomized intervention trial.

Authors:  Anne M Riederer; Jennifer E Krenz; Maria I Tchong-French; Elizabeth Torres; Adriana Perez; Lisa R Younglove; Karen L Jansen; David C Hardie; Stephanie A Farquhar; Paul D Sampson; Nervana Metwali; Peter S Thorne; Catherine J Karr
Journal:  Indoor Air       Date:  2021-07-19       Impact factor: 5.770

4.  Origin, distribution, and perspective health benefits of particulate matter in the air of underground salt mine: a case study from Bochnia, Poland.

Authors:  Aleksandra Puławska; Maciej Manecki; Michał Flasza; Katarzyna Styszko
Journal:  Environ Geochem Health       Date:  2021-02-11       Impact factor: 4.609

  4 in total

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