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Thermogravimetry coupled with mass spectrometry successfully used to quantify polyethylene and polystyrene microplastics in organic amendments. | LitMetric

Thermogravimetry coupled with mass spectrometry successfully used to quantify polyethylene and polystyrene microplastics in organic amendments.

Environ Res

Department of Analytical Chemistry, Faculty of Chemistry, Regional Campus of International Excellence "Campus Mare Nostrum", University of Murcia, E-30100, Murcia, Spain. Electronic address:

Published: October 2022

AI Article Synopsis

  • Global plastic consumption is increasing, leading to the creation of microplastics (MPs) that harm ecosystems and agricultural soil quality, which can then enter the food chain and impact human health.
  • Current European laws only address larger plastic particles and do not account for microplastics, highlighting the need for better regulations to ensure soil and food safety.
  • A new analytical methodology using thermogravimetry and mass spectrometry effectively quantifies common microplastics (polyethylene and polystyrene) in organic amendments, with validated results showing varying MP content, supporting the development of future legislation.

Article Abstract

The global consumption of plastic is growing year by year, producing small plastic pieces known as microplastics (MPs) that adversely affect ecosystems. The use of organic amendments (compost and manure) polluted with MPs affects the quality of agricultural soils, and these MPs can be incorporated into the food chain and negatively impact human health. Current European legislation only considers large plastic particles in organic amendments. There is no information regarding MP pollution. Thus, the development of a methodology to support future legislation ensuring the quality of agricultural soils and food safety is necessary. This proposed methodology is based on thermogravimetry coupled with mass spectrometry to quantify polyethylene and polystyrene (PE and PS) MPs through their mass spectrometry signal intensity of characteristic PE (m/z 41, 43 and 56) and PS (m/z 78 and 104) ions. This method has been validated with several organic amendments where the MP content ranged from 52.6 to 4365.7 mg kg for PE-MPs and from 1.1 to 64.3 mg kg for PS-MPs. The proposed methodology is a quick and robust analytical method to quantify MPs in organic amendments that could support new legislation.

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Source
http://dx.doi.org/10.1016/j.envres.2022.113583DOI Listing

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