Microbiological monitoring of scuba cylinders under routine filling and seasonal diving conditions

Introduction: The aim of this study was to monitor the microbiological status of the inner surfaces of scuba cylinders under routine air filling conditions and to assess whether microbiological contamination emerges or persists over time. Methods: A prospective longitudinal microbiological study was conducted using two complementary sampling models. Serial sampling of a steel scuba cylinder and its associated compressor air filter was performed at three-day intervals over 45 days. To assess reproducibility under operational conditions, additional microbiological sampling was performed from 27 scuba cylinders actively used during the diving season. Samples were analysed using standard culture methods. Results: No microbial growth was detected in bacterial cultures obtained from any of the cylinder inner surface or compressor air filter samples throughout the 45-day monitoring period. No temporal changes or cumulative contamination trends were observed. Similarly, no microbial growth was detected in cultures obtained from the additional 27 scuba cylinders sampled during the active diving season. Conclusions: Under routine operating conditions with standard maintenance and air filtration practices, the internal environment of scuba cylinders may remain microbiologically stable over time, suggesting a low risk of microbiological contamination in properly maintained compressed air systems.

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Publication Details

Journal
Diving and Hyperbaric Medicine Journal
Published
2026-09-17
DOI
https://doi.org/10.28920/dhm56.3.265-270
Primary Topic
Indoor Air Quality and Microbial Exposure
Type
article
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article

Microbiological monitoring of scuba cylinders under routine filling and seasonal diving conditions

Recep Özkan, Elif Okumuş, Osman Türkmen, Hasan Sivrikaya et al.
Diving and Hyperbaric Medicine Journal
Indoor Air Quality and Microbial Exposure
article

Microbiological monitoring of scuba cylinders under routine filling and seasonal diving conditions

Recep Özkan, Elif Okumuş, Osman Türkmen, Hasan Sivrikaya, ŞÜKRAN ÖZHAN, Kübra Özgök Kangal, Ese Başbulut
article en

Abstract

Introduction: The aim of this study was to monitor the microbiological status of the inner surfaces of scuba cylinders under routine air filling conditions and to assess whether microbiological contamination emerges or persists over time. Methods: A prospective longitudinal microbiological study was conducted using two complementary sampling models. Serial sampling of a steel scuba cylinder and its associated compressor air filter was performed at three-day intervals over 45 days. To assess reproducibility under operational conditions, additional microbiological sampling was performed from 27 scuba cylinders actively used during the diving season. Samples were analysed using standard culture methods. Results: No microbial growth was detected in bacterial cultures obtained from any of the cylinder inner surface or compressor air filter samples throughout the 45-day monitoring period. No temporal changes or cumulative contamination trends were observed. Similarly, no microbial growth was detected in cultures obtained from the additional 27 scuba cylinders sampled during the active diving season. Conclusions: Under routine operating conditions with standard maintenance and air filtration practices, the internal environment of scuba cylinders may remain microbiologically stable over time, suggesting a low risk of microbiological contamination in properly maintained compressed air systems.

Diving and Hyperbaric Medicine JournalVol. 56(3)
University of Health Science (KH), Samsun University (TR), Erzurum Regional Training and Research Hospital (TR), Education Training And Research (US), Sağlık Bilimleri Üniversitesi (TR), Atatürk University (TR), University of Health Sciences Antigua (AG)
Life below water
Openalex Percentile: Top 11%
Indoor Air Quality and Microbial Exposure
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