Characterization and Screening-Level Assessment of Total Volatile Organic Compounds in a University Hospital Indoor Environment

Volatile organic compounds (VOCs) are major contributors to indoor air pollution in hospitals, where disinfectants, sterilants, and pharmaceutical agents are used continuously. This study provides a multi-ward, multi-shift assessment of total VOC (TVOC) concentrations in a large university hospital using a calibrated photoionization detector (PID) with daily zero/span checks and inter-instrument consistency verification. Measurements were conducted between 10 April and 23 May 2023 (a 44-day spring field campaign) across 41 wards, a non-clinical reference building, and open air to distinguish healthcare-related emissions from background indoor sources. TVOC concentrations were compared with a 108 ppb screening threshold derived from the 500 µg/m 3 TVOC reference used in LEED, WELL, and UBA frameworks, converted to PID units using a published GC–PID calibration model. Indoor TVOC levels were elevated in most clinical areas, with the highest median concentrations in operating rooms (857 parts per billion [ppb]) and the endoscopy ward (842 ppb). Mean indoor-to-outdoor (I/O) ratios exceeded 1 in all sampled wards, supporting the predominance of indoor sources. Significant spatial variability was observed across functional ward categories (Kruskal–Wallis p < 0.001), and temporal variation across work shifts was statistically significant in 26 of 41 wards ( p < 0.05, Kruskal–Wallis with Dunn post-hoc comparisons), with morning shifts generally recording the highest TVOC levels. These findings demonstrate substantial VOC accumulation in procedure-intensive areas and highlight the need for improved ventilation management and targeted exposure-control strategies in healthcare environments.

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Publication Details

Journal
Aerosol and Air Quality Research
Published
2026-09-01
DOI
https://doi.org/10.1007/s44408-026-00156-9
Primary Topic
Indoor Air Quality and Microbial Exposure
Type
article
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Characterization and Screening-Level Assessment of Total Volatile Organic Compounds in a University Hospital Indoor Environment

Monireh Fattahi, Mahdi Faraji
Aerosol and Air Quality Research
Indoor Air Quality and Microbial Exposure
article

Characterization and Screening-Level Assessment of Total Volatile Organic Compounds in a University Hospital Indoor Environment

Monireh Fattahi, Mahdi Faraji
article en

Abstract

Volatile organic compounds (VOCs) are major contributors to indoor air pollution in hospitals, where disinfectants, sterilants, and pharmaceutical agents are used continuously. This study provides a multi-ward, multi-shift assessment of total VOC (TVOC) concentrations in a large university hospital using a calibrated photoionization detector (PID) with daily zero/span checks and inter-instrument consistency verification. Measurements were conducted between 10 April and 23 May 2023 (a 44-day spring field campaign) across 41 wards, a non-clinical reference building, and open air to distinguish healthcare-related emissions from background indoor sources. TVOC concentrations were compared with a 108 ppb screening threshold derived from the 500 µg/m 3 TVOC reference used in LEED, WELL, and UBA frameworks, converted to PID units using a published GC–PID calibration model. Indoor TVOC levels were elevated in most clinical areas, with the highest median concentrations in operating rooms (857 parts per billion [ppb]) and the endoscopy ward (842 ppb). Mean indoor-to-outdoor (I/O) ratios exceeded 1 in all sampled wards, supporting the predominance of indoor sources. Significant spatial variability was observed across functional ward categories (Kruskal–Wallis p < 0.001), and temporal variation across work shifts was statistically significant in 26 of 41 wards ( p < 0.05, Kruskal–Wallis with Dunn post-hoc comparisons), with morning shifts generally recording the highest TVOC levels. These findings demonstrate substantial VOC accumulation in procedure-intensive areas and highlight the need for improved ventilation management and targeted exposure-control strategies in healthcare environments.

Aerosol and Air Quality Research
University of Arizona (US), Iranian Institute for Health Sciences Research (IR)
Openalex Percentile: Top 12%
Indoor Air Quality and Microbial Exposure
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Characterization and Screening-Level Assessment of Total Volatile Organic Compounds in a University Hospital Indoor Environment — Monireh Fattahi, Mahdi Faraji · Aerosol and Air Quality Research (2026) | TGRS Research Map | TGRS