0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Detection Methods Sign in to save

Optimization, performance, and application of a pyrolysis-GC/MS method for the identification of microplastics

Analytical and Bioanalytical Chemistry 2018 329 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Alexandre Dehaut, Ludovic Hermabessière, Alexandre Dehaut, Ludovic Hermabessière, Ludovic Hermabessière, Ludovic Hermabessière, Ludovic Hermabessière, Ludovic Hermabessière, Maria Kazour, Maria Kazour, Maria Kazour, Alexandre Dehaut, Maria Kazour, Maria Kazour, Ika Paul-Pont Alexandre Dehaut, Ika Paul-Pont Alexandre Dehaut, Ika Paul-Pont Ika Paul-Pont Rachid Amara, Guillaume Duflos, Alexandre Dehaut, Ika Paul-Pont Ludovic Hermabessière, Maria Kazour, Ludovic Hermabessière, Maria Kazour, Ludovic Hermabessière, Ludovic Hermabessière, Alexandre Dehaut, Charlotte Himber, Guillaume Duflos, Rachid Amara, Rachid Amara, Rachid Amara, Guillaume Duflos, Ludovic Hermabessière, Ludovic Hermabessière, Alexandre Dehaut, Alexandre Dehaut, Ludovic Hermabessière, Ludovic Hermabessière, Alexandre Dehaut, Alexandre Dehaut, Anne-Laure Cassone, Charlotte Himber, Charlotte Himber, Charlotte Himber, Anne-Laure Cassone, Philippe Soudant, Ludovic Hermabessière, Ika Paul-Pont Charlotte Himber, Ika Paul-Pont Charlotte Himber, Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Béatrice Boricaud, Ika Paul-Pont Maria Kazour, Béatrice Boricaud, Ludovic Hermabessière, Alexandre Dehaut, Ludovic Hermabessière, Maria Kazour, Ludovic Hermabessière, Alexandre Dehaut, Ika Paul-Pont Alexandre Dehaut, Guillaume Duflos, Guillaume Duflos, Alexandre Dehaut, Ika Paul-Pont Ika Paul-Pont Alexandre Dehaut, Charlotte Himber, Guillaume Duflos, Béatrice Boricaud, Anne-Laure Cassone, Anne-Laure Cassone, Ika Paul-Pont Anne-Laure Cassone, Guillaume Duflos, Philippe Soudant, Béatrice Boricaud, Charlotte Himber, Anne-Laure Cassone, Maria Kazour, Maria Kazour, Anne-Laure Cassone, Maria Kazour, Anne-Laure Cassone, Philippe Soudant, Ludovic Hermabessière, Alexandre Dehaut, Alexandre Dehaut, Alexandre Dehaut, Alexandre Dehaut, Alexandre Dehaut, Ludovic Hermabessière, Ludovic Hermabessière, Ludovic Hermabessière, Charlotte Himber, Charlotte Himber, Guillaume Duflos, Guillaume Duflos, Rachid Amara, Rachid Amara, Rachid Amara, Rachid Amara, Rachid Amara, Ika Paul-Pont Maria Kazour, Maria Kazour, Charlotte Himber, Charlotte Himber, Guillaume Duflos, Ludovic Hermabessière, Charlotte Himber, Charlotte Himber, Charlotte Himber, Charlotte Himber, Guillaume Duflos, Ika Paul-Pont Ika Paul-Pont Alexandre Dehaut, Guillaume Duflos, Ika Paul-Pont Guillaume Duflos, Rachid Amara, Rachid Amara, Guillaume Duflos, Charlotte Himber, Charlotte Himber, Rachid Amara, Ludovic Hermabessière, Philippe Soudant, Philippe Soudant, Rachid Amara, Philippe Soudant, Ludovic Hermabessière, Philippe Soudant, Anne-Laure Cassone, Anne-Laure Cassone, Rachid Amara, Rachid Amara, Rachid Amara, Rachid Amara, Alexandre Dehaut, Ludovic Hermabessière, Guillaume Duflos, Ika Paul-Pont Guillaume Duflos, Guillaume Duflos, Ika Paul-Pont Charlotte Himber, Ika Paul-Pont Ika Paul-Pont Ludovic Hermabessière, Ludovic Hermabessière, Alexandre Dehaut, Alexandre Dehaut, Philippe Soudant, Philippe Soudant, Philippe Soudant, Anne-Laure Cassone, Anne-Laure Cassone, Alexandre Dehaut, Alexandre Dehaut, Michel Laurentie, Ludovic Hermabessière, Alexandre Dehaut, Ludovic Hermabessière, Alexandre Dehaut, Charlotte Himber, Rachid Amara, Rachid Amara, Ika Paul-Pont Charlotte Himber, Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Charlotte Himber, Rachid Amara, Ika Paul-Pont Guillaume Duflos, Rachid Amara, Philippe Soudant, Philippe Soudant, Philippe Soudant, Philippe Soudant, Philippe Soudant, Philippe Soudant, Alexandre Dehaut, Michel Laurentie, Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Ika Paul-Pont Guillaume Duflos, Philippe Soudant, Philippe Soudant, Alexandre Dehaut, Anne-Laure Cassone, Philippe Soudant, Alexandre Dehaut, Alexandre Dehaut, Anne-Laure Cassone, Guillaume Duflos, Alexandre Dehaut, Anne-Laure Cassone, Anne-Laure Cassone, Anne-Laure Cassone, Philippe Soudant, Ika Paul-Pont Ika Paul-Pont Rachid Amara, Ika Paul-Pont Anne-Laure Cassone, Ika Paul-Pont Alexandre Dehaut, Anne-Laure Cassone, Alexandre Dehaut, Ika Paul-Pont Guillaume Duflos, Anne-Laure Cassone, Alexandre Dehaut, Guillaume Duflos, Philippe Soudant, Ika Paul-Pont Philippe Soudant, Philippe Soudant, Philippe Soudant, Ludovic Hermabessière, Alexandre Dehaut, Philippe Soudant, Philippe Soudant, Ika Paul-Pont Guillaume Duflos, Guillaume Duflos, Philippe Soudant, Guillaume Duflos, Ika Paul-Pont Ika Paul-Pont Philippe Soudant, Philippe Soudant, Guillaume Duflos, Philippe Soudant, Ludovic Hermabessière, Ludovic Hermabessière, Ika Paul-Pont Ika Paul-Pont Guillaume Duflos, Ika Paul-Pont Alexandre Dehaut, Guillaume Duflos, Anne-Laure Cassone, Anne-Laure Cassone, Ika Paul-Pont Rachid Amara, Guillaume Duflos, Ludovic Hermabessière, Guillaume Duflos, Guillaume Duflos, Maria Kazour, Ika Paul-Pont Philippe Soudant, Philippe Soudant, Guillaume Duflos, Ika Paul-Pont Rachid Amara, Philippe Soudant, Philippe Soudant, Philippe Soudant, Maria Kazour, Rachid Amara, Ludovic Hermabessière, Ika Paul-Pont

Summary

Researchers optimized a pyrolysis-GC/MS method for identifying and quantifying microplastics in environmental samples, improving the reliability of polymer identification especially for small particles that are difficult to classify visually. The improved method is particularly valuable for analyzing the smallest microplastic size fractions that dominate by number in marine environments.

Polymers
Study Type Environmental

Plastics are found to be major debris composing marine litter; microplastics (MP, < 5 mm) are found in all marine compartments. The amount of MPs tends to increase with decreasing size leading to a potential misidentification when only visual identification is performed. These last years, pyrolysis coupled with gas chromatography/mass spectrometry (Py-GC/MS) has been used to get information on the composition of polymers with some applications on MP identification. The purpose of this work was to optimize and then validate a Py-GC/MS method, determine limit of detection (LOD) for eight common polymers, and apply this method on environmental MP. Optimization on multiple GC parameters was carried out using polyethylene (PE) and polystyrene (PS) microspheres. The optimized Py-GC/MS method require a pyrolysis temperature of 700 °C, a split ratio of 5 and 300 °C as injector temperature. Performance assessment was accomplished by performing repeatability and intermediate precision tests and calculating limit of detection (LOD) for common polymers. LODs were all below 1 μg. For performance assessment, identification remains accurate despite a decrease in signal over time. A comparison between identifications performed with Raman micro spectroscopy and with Py-GC/MS was assessed. Finally, the optimized method was applied to environmental samples, including plastics isolated from sea water surface, beach sediments, and organisms collected in the marine environment. The present method is complementary to μ-Raman spectroscopy as Py-GC/MS identified pigment containing particles as plastic. Moreover, some fibers and all particles from sediment and sea surface were identified as plastic. Graphical abstract ᅟ.

Sign in to start a discussion.

Share this paper