Chemical characterization of microplastic particles formed in airborne waste discharged from sewer pipe repairs.
Brianna N PetersonAna C MoralesJay M TomlinCarrie G W GormanPeter E ChristSteven A L SharpeShelby M HustonFelipe A Rivera-AdornoBrian T O'CallahanMatthew FraundYoorae NohPritee PahariAndrew J WheltonPatrick Z El-KhouryRyan C MoffetAlla ZelenyukAlexander LaskinPublished in: Environmental science. Processes & impacts (2023)
Microplastic particles are of increasing environmental concern due to the widespread uncontrolled degradation of various commercial products made of plastic and their associated waste disposal. Recently, common technology used to repair sewer pipes was reported as one of the emission sources of airborne microplastics in urban areas. This research presents results of the multi-modal comprehensive chemical characterization of the microplastic particles related to waste discharged in the pipe repair process and compares particle composition with the components of uncured resin and cured plastic composite used in the process. Analysis of these materials employs complementary use of surface-enhanced Raman spectroscopy, scanning transmission X-ray spectro-microscopy, single particle mass spectrometry, and direct analysis in real-time high-resolution mass spectrometry. It is shown that the composition of the relatively large (100 μm) microplastic particles resembles components of plastic material used in the process. In contrast, the composition of the smaller (micrometer and sub-micrometer) particles is significantly different, suggesting their formation from unintended polymerization of water-soluble components occurring in drying droplets of the air-discharged waste. In addition, resin material type influences the composition of released microplastic particles. Results are further discussed to guide the detection and advanced characterization of airborne microplastics in future field and laboratory studies pertaining to sewer pipe repair technology.
Keyphrases
- mass spectrometry
- high resolution
- particulate matter
- municipal solid waste
- liquid chromatography
- heavy metals
- high resolution mass spectrometry
- raman spectroscopy
- water soluble
- life cycle
- sewage sludge
- magnetic resonance
- gas chromatography
- human health
- risk assessment
- air pollution
- high speed
- current status
- quantum dots
- case control
- drug induced
- sensitive detection