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Main Authors: Lopez-Rosales, Adrian, Ferreiro, Borja, Andrade, Jose, Kerstan, Andreas, Robey, Darren, Muniategui, Soledad
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2503.23789
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author Lopez-Rosales, Adrian
Ferreiro, Borja
Andrade, Jose
Kerstan, Andreas
Robey, Darren
Muniategui, Soledad
author_facet Lopez-Rosales, Adrian
Ferreiro, Borja
Andrade, Jose
Kerstan, Andreas
Robey, Darren
Muniategui, Soledad
contents Microplastic pollution studies depend on reliable identification of the suspicious particles. Out of the various analytical techniques available to characterize them, infrared transflectance using a tuneable mid-IR quantum cascade laser is a high-throughput state-of-the-art imaging option, specifically Agilent QCL-LDIR (Quantum Cascade Laser Direct Infrared imaging). Its conceptual grounds are reviewed, instrumental developments are discussed, along with a review of applications and best practices to overcome obstacles/difficulties in routine measurements, namely: the spectral range, the variation of some peak intensities with the particles size, effects of the size of the particles, processing speed, and avoiding the use of measurement aliquots. Objective procedures to avoid too many false positives when identifying spectra and to distinguish fibers and fragments are given. These practices open a path to QCL-LDIR measurement standardization and potential use for microplastics monitoring, as requested by many governmental bodies in charge of setting environmental protection rules.
format Preprint
id arxiv_https___arxiv_org_abs_2503_23789
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Reviewing the fundamentals and best practices to characterize microplastics using state-of-the-art quantum-cascade laser reflectance-absorbance spectroscopy
Lopez-Rosales, Adrian
Ferreiro, Borja
Andrade, Jose
Kerstan, Andreas
Robey, Darren
Muniategui, Soledad
Instrumentation and Detectors
Microplastic pollution studies depend on reliable identification of the suspicious particles. Out of the various analytical techniques available to characterize them, infrared transflectance using a tuneable mid-IR quantum cascade laser is a high-throughput state-of-the-art imaging option, specifically Agilent QCL-LDIR (Quantum Cascade Laser Direct Infrared imaging). Its conceptual grounds are reviewed, instrumental developments are discussed, along with a review of applications and best practices to overcome obstacles/difficulties in routine measurements, namely: the spectral range, the variation of some peak intensities with the particles size, effects of the size of the particles, processing speed, and avoiding the use of measurement aliquots. Objective procedures to avoid too many false positives when identifying spectra and to distinguish fibers and fragments are given. These practices open a path to QCL-LDIR measurement standardization and potential use for microplastics monitoring, as requested by many governmental bodies in charge of setting environmental protection rules.
title Reviewing the fundamentals and best practices to characterize microplastics using state-of-the-art quantum-cascade laser reflectance-absorbance spectroscopy
topic Instrumentation and Detectors
url https://arxiv.org/abs/2503.23789