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Characterisation of volatile organic compounds in hospital indoor air and exposure health risk determination

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journal contribution
posted on 2023-12-13, 13:02 authored by Thiphanie P Riveron, Michael J Wilde, Wadah Ibrahim, Liesl Carr, Paul S Monks, Neil J Greening, Erol A Gaillard, Chris E Brightling, Salman Siddiqui, Anna L Hansell, Rebecca L Cordell

Several volatile organic compounds (VOCs) have impacts on human health, but little is known about the concentrations of VOCs in the hospital environment. This study characterised VOCs present in clinical assessment rooms. More than 600 samples of air were collected over 31 months (2017–2020) at two hospital sites in Leicester, United Kingdom, and analysed by comprehensive two-dimensional gas chromatography, making this the largest hospital environment database worldwide on VOCs and first such UK study. The most abundant VOCs found were 2-propanol, ethyl chloride, acetone and hexane, with respective mean concentrations of 696.6 μgm−3, 436.5 μgm−3, 83.9 μgm−3 and 58.5 μgm−3. Acetone, 2-propanol and hexane concentrations were 4, 9 and 30-fold higher respectively compared to similar studies performed in other hospitals. Our results showed that the most frequently detected VOCs, with the highest concentrations, were most likely released by healthcare activities, or related to ingress of vehicle emissions. Hazard quotient (HQ) and cancer risk (CR) were calculated to identify the potential risk of VOCs exposure to the health of healthcare workers. No HQs were measured above 1, compared to inhaled US EPA and OEHHA health guidelines for non-cancer chemicals. For both hospitals, trichloroethylene CR were calculated above 1E-06 by using inhaled US EPA cancer risk values, leading to possible risks to healthcare workers with long-term exposure. More studies of this type, including measurements of VOCs such as formaldehyde that we were unable to include in this study, are needed to better characterise exposures and risks, both to healthcare workers and patients.

Funding

National Institute for Health and Care Research (NIHR) Health Protection Research Unit in Environmental Exposures and Health at the University of Leicester and the NIHR Leicester Biomedical Research Centre (BRC)

East Midlands Breathomics Pathology Node (EMBER)

Medical Research Council

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Institutional Strategic Support Fund

Wellcome Trust

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Midlands Asthma and Allergy Research Association (MAARA)

Attenuating the effects of hospital-associated disability in exacerbations of Chronic Obstructive Pulmonary Disease using an anabolic intervention: a randomised controlled feasibility study

NIHR Academy

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History

Author affiliation

Centre for Environmental Health and Sustainability, University of Leicester

Version

  • VoR (Version of Record)

Published in

Building and Environment

Volume

242

Pagination

110513

Publisher

Elsevier BV

issn

0360-1323

Copyright date

2023

Available date

2023-12-13

Language

en

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