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生物医学废塑料:细菌、消毒与回收技术——综述

Biomedical waste plastic: bacteria, disinfection and recycling technologies-a comprehensive review.

作者信息

Sahoo S, Rathod W, Vardikar H, Biswal M, Mohanty S, Nayak S K

机构信息

Laboratory for Advanced Research in Polymeric Materials, Central Institute of Petrochemical Engineering and Technology, Bhubaneswar, Odisha 751024 India.

Ravenshaw University, Cuttack, Odisha 753003 India.

出版信息

Int J Environ Sci Technol (Tehran). 2023 May 17:1-18. doi: 10.1007/s13762-023-04975-w.

Abstract

Plastic recycling reduces the wastage of potentially useful materials as well as the consumption of virgin materials, thereby lowering the energy consumption, air pollution by incineration, soil and water pollution by landfilling. Plastics used in the biomedical sector have played a significant role. Reducing the transmission of the virus while protecting the human life in particular the frontline workers. Enormous volumes of plastics in biomedical waste have been observed during the outbreak of the pandemic COVID-19. This has resulted from the extensive use of personal protective equipment such as masks, gloves, face shields, bottles, sanitizers, gowns, and other medical plastics which has created challenges to the existing waste management system in the developing countries. The current review focuses on the biomedical waste and its classification, disinfection, and recycling technology of different types of plastics waste generated in the sector and their corresponding approaches toward end-of-life option and value addition. This review provides a broader overview of the process to reduce the volume of plastics from biomedical waste directly entering the landfill while providing a knowledge step toward the conversion of "waste" to "wealth." An average of 25% of the recyclable plastics are present in biomedical waste. All the processes discussed in this article accounts for cleaner techniques and a sustainable approach to the treatment of biomedical waste.

摘要

塑料回收减少了潜在有用材料的浪费以及原生材料的消耗,从而降低了能源消耗、焚烧造成的空气污染、填埋造成的土壤和水污染。生物医学领域使用的塑料发挥了重要作用。特别是在保护人类生命尤其是一线工作者的同时减少病毒传播。在新冠疫情大流行期间,人们观察到生物医学废物中有大量塑料。这是由于广泛使用口罩、手套、面罩、瓶子、消毒剂、防护服和其他医用塑料等个人防护装备,给发展中国家现有的废物管理系统带来了挑战。本综述重点关注生物医学废物及其分类、消毒,以及该领域产生的不同类型塑料废物的回收技术,及其相应的报废处理方式和增值方法。本综述更全面地概述了减少生物医学废物中的塑料直接进入填埋场的数量的过程,同时为将“废物”转化为“财富”提供了知识基础。生物医学废物中平均有25%是可回收塑料。本文讨论的所有过程都采用了更清洁的技术和可持续的方法来处理生物医学废物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f984/10189688/e12f1aa0dfc5/13762_2023_4975_Fig1_HTML.jpg

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