Literature DB >> 9342831

Field testing of new aerosol sampling method with a porous curved surface as inlet.

B C Hauck1, S A Grinshpun, A Reponen, T Reponen, K Willeke, R L Bornschein.   

Abstract

A new aerosol sampling method, utilizing a porous curved surface as the sampling inlet, has recently been developed. Previous laboratory evaluations of this method have demonstrated its important features, such as low wind sensitivity and good filter collection uniformity. In this study a prototype incorporating the new method was evaluated in the field as a stationary and personal sampling device. The small sampler, utilizing a 25-mm filter is called the button aerosol sampler and was evaluated for collecting total airborne dust and fungal spores. The study was performed in nine poorly maintained inner-city houses during environmental cleanups at different cleanliness levels. The button sampler was used in parallel with the standard 37-mm closed-face filter cassette. Four collocated samplers of each type were tested at all sites as stationary samplers, and three samplers of each type were tested at two sites as personal samplers. Aerosol samples were collected on filters and analyzed using the gravimetric method for total dust and epifluorescence microscopy for fungal spores. The average particle concentration values measured with the button sampler and with the standard sampling cassette were found to correlate well within ranges of 10(1)-10(3) micrograms/m3 for total dust and 10(3)-10(5) spores/m3 for airborne fungi. The measurement results obtained with the new button sampler showed lower intersample variations of the measured concentration levels and higher uniformity of the particle deposits on the filters than those obtained with the standard cassette.

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Year:  1997        PMID: 9342831     DOI: 10.1080/15428119791012351

Source DB:  PubMed          Journal:  Am Ind Hyg Assoc J        ISSN: 0002-8894


  4 in total

1.  Design and computational fluid dynamics investigation of a personal, high flow inhalable sampler.

Authors:  T Renée Anthony; Andrea C Landázuri; Mike Van Dyke; John Volckens
Journal:  Ann Occup Hyg       Date:  2010-04-23

2.  Use of a robotic sampling platform to assess young children's exposure to indoor bioaerosols.

Authors:  Z Wang; S L Shalat; K Black; P J Lioy; A A Stambler; O H Emoekpere; M Hernandez; T Han; M Ramagopal; G Mainelis
Journal:  Indoor Air       Date:  2011-10-24       Impact factor: 5.770

3.  Evaluation of total and inhalable samplers for the collection of carbon nanotube and carbon nanofiber aerosols.

Authors:  Matthew M Dahm; Douglas E Evans; Stephen Bertke; Sergey A Grinshpun
Journal:  Aerosol Sci Technol       Date:  2019-05-30       Impact factor: 2.908

4.  Release of free DNA by membrane-impaired bacterial aerosols due to aerosolization and air sampling.

Authors:  Huajun Zhen; Taewon Han; Donna E Fennell; Gediminas Mainelis
Journal:  Appl Environ Microbiol       Date:  2013-10-04       Impact factor: 4.792

  4 in total

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