4.7 Article

Binational survey of personal protective equipment (PPE) pollution driven by the COVID-19 pandemic in coastal environments: Abundance, distribution, and analytical characterization

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 426, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2021.128070

关键词

Mask; Plastic; Microplastic; Marine; SARS-CoV-2

资金

  1. Universidad San Ignacio de Loyola
  2. Agencia Nacional de Promocion Cientifica y Tecnologica [PICT-2241-2019]

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This study conducted nationwide surveys in Peru and Argentina to investigate the abundance and distribution of PPE in coastal sites. Analysis of recovered PPE using various techniques revealed the chemical and structural degradation of PPE in the environment, with common polymers such as polypropylene being identified. Weathering signs and elemental additives like Ca and AgNPs were also found on the surface of PPE. The decrease in crystallinity of polypropylene face masks observed in XRD patterns might affect their interaction with external contaminants and stability.
In the present contribution, two nationwide surveys of personal protective equipment (PPE) pollution were conducted in Peru and Argentina aiming to provide valuable information regarding the abundance and distribution of PPE in coastal sites. Additionally, PPE items were recovered from the environment and analyzed by Fourier transformed infrared (FTIR) spectroscopy, Scanning electron microscopy (SEM) with Energy dispersive X-ray (EDX), and X-ray diffraction (XRD), and compared to brand-new PPE in order to investigate the chemical and structural degradation of PPE in the environment. PPE density (PPE m(-2)) found in both countries were comparable to previous studies. FTIR analysis revealed multiple polymer types comprising common PPE, mainly polypropylene, polyamide, polyethylene terephthalate, and polyester. SEM micrographs showed clear weathering signs, such as cracks, cavities, and rough surfaces in face masks and gloves. EDX elemental mapping revealed the presence of elemental additives, such as Ca in gloves and face masks and AgNPs as an antimicrobial agent. Other metals found on the surface of PPE were Mo, P, Ti, and Zn. XRD patterns displayed a notorious decrease in the crystallinity of polypropylene face masks, which could alter its interaction with external contaminants and stability. The next steps in this line of research were discussed.

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