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May 29, 2026Scientific Reports0 citationsOpen Access

Improving medical waste treatment in the Republic of Korea through diversification of operating conditions in sterilization and crushing facilities

YPYoon-Soo ParkUniversity of SeoulMKMin-Jung KimNational Institute of Environmental ResearchYKYoung-Yeul KangNational Institute of Environmental Research

Key Points

  • The aim is to evaluate the biological safety of steam sterilization and crushing facilities under varying conditions and propose strategies for expanding installations.
  • Sterilization tests performed at a steam sterilization and crushing facility in Korea under legal and optimal conditions.
  • Five microbial species recommended by WHO were assessed for sterilization efficacy.
  • Operational environment evaluated by measuring wastewater pH and indoor air quality.
  • Four microbial species showed a 99.9999% inactivation rate, meeting WHO Level 3 standards.
  • Average pH of wastewater was 7.59, and moisture content was within legal limits at 38.1% and 26.5%.
  • Indoor air quality analysis revealed an increase in total VOCs concentration after operation.

Abstract

This study aims to evaluate the biological safety of steam sterilization and crushing facilities under different operating conditions by assessing sterilization efficacy and the operational environment, and to propose strategies for expanding facility installation through diversification of treatment conditions. Sterilization tests were conducted at a currently operating steam sterilization and crushing facility in the Republic of Korea under both the current legal condition (121℃ / 30 min / 1 bar gauge(1 atm gauge)) and an optimal treatment condition (138 ℃ / 10 min / 2.5 bar gauge(3.5 atm absolute)), using five microbial species recommended by the WHO. Under both conditions, four microbial species exhibited a 99.9999% inactivation rate, and no fungi were detected. These results satisfied Level 3 of the WHO’s four-level inactivation standard for medical waste treatment. To confirm the operational safety of the facility, the pH of the wastewater generated during the process was measured, and the average value was 7.59. The moisture content of the sterilized and crushed waste was 38.1% under the legal condition and 26.5% under the optimal condition, meeting the legal standard of below 50%. Analysis of indoor air quality before and after facility operation showed that concentrations of PM10, PM2.5, formaldehyde, and total airborne bacteria remained similar, while the concentration of total VOCs increased after operation. Based on these results, this study proposes a measure to install more facilities by diversifying interim treatment methods, in consideration of the conditions currently stipulated by the Wastes Control Act in the Republic of Korea, and the possibility of introducing technologically advanced equipment in the future.

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Cite This Study

Park et al. (2026) studied this question.

synapsesocial.com/papers/6a192da0fab5b468c4416784https://doi.org/10.1038/s41598-026-54131-w
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