Suppr超能文献

可重复使用和一次性洁净室工作服的生命周期评估

Life Cycle Assessment of Reusable and Disposable Cleanroom Coveralls.

作者信息

Vozzola Eric, Overcash Michael, Griffing Evan

机构信息

Environmental Clarity, Reston, VA

Environmental Clarity, Reston, VA.

出版信息

PDA J Pharm Sci Technol. 2018 May-Jun;72(3):236-248. doi: 10.5731/pdajpst.2017.007864. Epub 2018 Feb 14.

Abstract

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.

摘要

洁净室工作服在制药、生命科学和半导体制造等行业中发挥着关键作用。这些纺织品有可重复使用和一次性使用两种选择。在本报告中,使用生命周期评估技术来研究洁净室工作服的环境可持续性。在从摇篮到生命周期结束的基础上,对可重复使用和一次性使用的洁净室工作服的完整供应链、制造、使用和生命周期结束阶段进行了比较。研究了三种行业代表性的工作服:一种可重复使用的编织聚对苯二甲酸乙二酯(PET)工作服、一种一次性使用的闪蒸纺粘高密度聚乙烯(HDPE)工作服和一种一次性使用的纺粘-熔喷-纺粘聚丙烯(SMS PP)工作服。在所有环境影响类别中,可重复使用的洁净室工作服系统相较于两种一次性使用的洁净室工作服系统都有显著改善。相较于一次性使用的HDPE工作服,其工艺能耗(PE)降低了34%,自然资源能耗(NRE)降低了23%,温室气体(GHG)排放降低了27%,蓝水消耗降低了73%。相较于一次性使用的SMS PP工作服,其PE降低了59%,NRE降低了56%,GHG排放降低了57%,蓝水消耗降低了77%。此外,可重复使用系统使洁净室设施产生的填埋固体废物减少了94 - 96%。在两种一次性使用的洁净室工作服中,闪蒸纺粘HDPE工作服相较于SMS PP工作服在环境方面有明显改善。药品在称为洁净室的受控环境中生产和处理,以确保产品的安全和质量。为了维持严格的清洁水平,要求洁净室人员穿着工作服、头罩和手套等服装,以限制颗粒从人员转移到环境中。这些服装有可重复使用和一次性使用两种类型。洁净室操作人员在选择可重复使用和一次性使用的服装时会考虑多个因素,包括价格、舒适度和环境可持续性。在本报告中,使用一种称为生命周期评估的技术来研究可重复使用和一次性使用的洁净室工作服的环境可持续性。通过这种技术,对从原材料提取到制造、使用和最终处置的三种市场代表性洁净室工作服的能源使用和温室气体排放等环境参数进行量化和比较。研究发现,在所有检查的环境参数方面,可重复使用的工作服明显优于一次性使用的工作服。这是一个重要结论,支持选择可重复使用工作服的洁净室公司更具可持续性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验