Monitoring of indoor air quality at a large sailing cruise ship to assess ventilation performance and disease transmission risk
Year of publication
2025
Authors
Cheung, Ho Yin Wickson; Kumar, Prashant; Hama, Sarkawt; Emygdio, Ana Paula Mendes; Wei, Yingyue; Anagnostopoulos, Lemonia; Ewer, John; Ferracci, Valerio; Galea, Edwin R.; Grandison, Angus; Hadjichristodoulou, Christos; Jia, Fuchen; Lepore, Pierfrancesco; Morawska, Lidia; Mouchtouri, Varvara A.; Siilin, Niko; Wang, Zhaozhi; HEALTHY SAILING project
Show moreAbstract
<p>Large passenger ships are characterised as enclosed and crowded indoor spaces with frequent interactions between travellers, providing conditions that facilitate disease transmission. This study aims to provide an indoor ship CO<sub>2</sub> dataset for inferring thermal comfort, ventilation and infectious disease transmission risk evaluation. Indoor air quality (IAQ) monitoring was conducted in nine environments (three cabins, buffet, gym, bar, restaurant, pub and theatre), on board a cruise ship voyaging across the UK and EU, with the study conducted in the framework of the EU HEALTHY SAILING project. CO<sub>2</sub> concentrations, temperature and relative humidity (RH) were simultaneously monitored to investigate thermal characteristics and effectiveness of ventilation performance. Results show a slightly higher RH of 68.2 ± 5.3 % aboard compared to ASHRAE and ISO recommended targets, with temperature recorded at 22.3 ± 1.4 °C. Generally, good IAQ (<1000 ppm) was measured with CO<sub>2</sub> mainly varying between 400 and 1200 ppm. The estimated air change rates (ACH) and ventilation rates (VR) implied sufficient ventilation was provided in most locations, and the theatre (VR: 86 L s<sup>−1</sup> person<sup>−1</sup>) and cabins (VR: >20 L s<sup>−1</sup> person<sup>−1</sup>) were highly over-ventilated. Dining areas including the pub and restaurant recorded high CO<sub>2</sub> concentrations (>2000 ppm) potentially due to higher footfall (0.6 person m<sup>−2</sup> and 0.4 person m<sup>−2</sup>) and limited ACH (2.3 h<sup>−1</sup> and 0.8 h<sup>−1</sup>), indicating a potential risk of infection; these areas should be prioritised for improvement. The IAQ and probability of infection indicate there is an opportunity for energy saving by lowering hotel load for the theatre and cabins and achieving the minimum acceptable VR (10 L s<sup>−1</sup> person<sup>−1</sup>) for occupants' comfort and disease control. Our study produced a first-time dataset from a sailing cruise ship's ventilated areas and provided evidence that can inform guidelines about the optimisation of ventilation operations in large passenger ships, contributing to respiratory health, infection control and energy efficiency aboard.</p>
Show moreOrganizations and authors
Publication type
Publication format
Article
Parent publication type
Journal
Article type
Original article
Audience
ScientificPeer-reviewed
Peer-ReviewedMINEDU's publication type classification code
A1 Journal article (refereed), original researchPublication channel information
Journal
Volume
962
Article number
178286
ISSN
Publication forum
Publication forum level
2
Open access
Open access in the publisher’s service
Yes
Open access of publication channel
Partially open publication channel
License of the publisher’s version
CC BY
Self-archived
No
Other information
Fields of science
Environmental engineering
Keywords
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Language
English
International co-publication
Yes
Co-publication with a company
Yes
DOI
10.1016/j.scitotenv.2024.178286
The publication is included in the Ministry of Education and Culture’s Publication data collection
Yes