Cleanroom garments serve a critical role in such industries as pharmaceuticals, life sciences, and semiconductor manufacturing. These textiles are available in reusable and disposable alternatives. In this report, the environmental sustainability of cleanroom coveralls is examined using life cycle assessment technology. The complete supply chain, manufacture, use, and end-of-life phases for reusable and disposable cleanroom coveralls are compared on a cradle-to-end-of-life cycle basis. Three industry representative coveralls are examined: a reusable woven polyethylene terephthalate (PET) coverall, a disposable flash spunbonded high-density polyethylene (HDPE) coverall, and a disposable spunbond-meltblown-spunbond polypropylene (SMS PP) coverall. The reusable cleanroom coverall system shows substantial improvements over both disposable cleanroom coverall systems in all environmental impact categories. The improvements over the disposable HDPE coverall were 34% lower process energy (PE), 23% lower natural resource energy (NRE), 27% lower greenhouse gas (GHG) emissions, and 73% lower blue water consumption. The improvements over the disposable SMS PP coverall were 59% lower PE, 56% lower NRE, 57% lower GHG emissions, and 77% lower blue water consumption. In addition, the reusable system shows a 94-96% reduction in solid waste to the landfill from the cleanroom facility. Between the two disposable cleanroom coveralls, the flash spunbonded HDPE coverall shows a measurable environmental improvement over the SMS PP coverall. Pharmaceutical drugs are manufactured and handled in controlled environments called to ensure the safety and quality of products. In order to maintain strict levels of cleanliness, cleanroom personnel are required to wear garments such as coveralls, hoods, and gloves that restrict the transfer of particles from the person to the environment. These garments are available in reusable and disposable types. Cleanroom operators consider a number of factors when selecting between reusable and disposable garments, including price, comfort, and environmental sustainability.In this report, the environmental sustainability of reusable and disposable cleanroom coveralls is examined using a technique called With this technique, environmental parameters such as energy use and greenhouse gas emissions are quantified and compared for three market representative cleanroom coveralls, from raw material extraction through manufacturing, use, and final disposal. Reusable coveralls were found to substantially outperform disposable coveralls in all environmental parameters examined. This is an important conclusion that supports cleanroom companies that select reusable coveralls to be more sustainable.
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http://dx.doi.org/10.5731/pdajpst.2017.007864 | DOI Listing |
BMJ Sex Reprod Health
January 2025
Background: Clinical diagnosis of heavy menstrual bleeding (HMB) is dependent on patient report of menstrual product usage of pads and tampons, but it is unknown if newer reusable menstrual products (cup and underwear) are similarly diagnostic.
Methods: We enrolled 20 regularly menstruating individuals with HMB for two menstrual cycles. Participants completed a retrospective baseline Pictorial Blood loss Assessment Chart (PBAC) at the time of enrolment (eligibility PBAC score ≥100) as well as several different measures with each study cycle.
Plast Surg (Oakv)
January 2025
Division of Plastic Surgery, Department of Surgery, University of British Columbia, Vancouver, BC, Canada.
Introduction: Every industry has greenhouse gas emissions, with healthcare a significant contributor. In Canada, the healthcare sector is directly and indirectly responsible for 4.6% of the country's greenhouse gas emissions.
View Article and Find Full Text PDFAnimal Model Exp Med
January 2025
National Research Centre for the Working Environment, Copenhagen, Denmark.
Background: Inhalation exposure is the gold standard when assessing pulmonary toxicity. However, it typically requires substantial amounts of test material. Intratracheal instillation is an alternative administration technique, where the test substance is suspended in a liquid vehicle and deposited into the lung via the trachea.
View Article and Find Full Text PDFLaryngoscope
December 2024
Department of Anesthesiology, University of California San Francisco, San Francisco, California, U.S.A.
Introduction: There is increasing prevalence of single-use flexible laryngoscopes in Otolaryngology. This study aims to quantify and compare the environmental outcomes of single-use disposable flexible laryngoscopes (SUD-Ls) and reusable flexible laryngoscope (R-Ls).
Methods: The ISO 14040 standardized Life Cycle Assessment (LCAs) was utilized to estimate the environmental footprint of SUD-L and R-L.
Transl Androl Urol
November 2024
Department of Urology, The University of Hong Kong - Shenzhen Hospital, Shenzhen, China.
Background: Flexible ureteroscopy (FURS) is increasingly used as the first-line treatment for urological procedures. Disposable digital (dd-)FURS has been developed to overcome limitations such as durability, degradation, and repair cost of reusable scopes. The diameter of commercially-available models ranges from 7.
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