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 Environmental Sources Human Health Effects Marine & Wildlife Sign in to save

Laser ablation-based techniques for microplastic analysis

Repository of the University of Ljubljana (University of Ljubljana) 2025 Score: 48 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Modlitbová, Pavlína, Brunnbauer, Lukas, Kalčíková, Gabriela, Fazlić, Aida, Limbeck, Andreas, Pořízka, Pavel, Kaiser, Jozef

Summary

This review examined laser ablation-based analytical techniques for detecting, characterizing, and quantifying microplastics in environmental and biological samples. The methods offer high spatial resolution and material specificity, making them valuable tools for advancing microplastic research.

Microplastics have emerged as significant environmental contaminants due to the increasing production of polymer-based products and their limited disposal options. The persistence, bioaccumulation potential, and ability of microplastics to adsorb and transport toxic contaminants pose a risk to ecosystems and human health. Consequently, precise detection, characterization, and visualization of microplastics in various matrices are of paramount importance. However, the inherent challenges of analysing particles across broad size ranges with diverse physicochemical properties call for advanced analytical methods. This review focuses on two promising laser ablation-based techniques: Laser-Induced Breakdown Spectroscopy (LIBS) and Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS). Both methods have demonstrated their utility in spatially resolved analyses, enabling the elemental characterization of microplastics. The review systematically evaluates existing studies employing these techniques, highlighting their benefits, limitations, and potential applications. Furthermore, it emphasizes the complementary nature of LIBS and LA-ICP-MS, advocating their tandem use for a comprehensive analysis of microplastics. By addressing current gaps in microplastic environmental research, this review aims to propose novel methodologies that can help to advance the understanding of the environmental fate and impacts of microplastics, facilitating the development of effective mitigation strategies.

Sign in to start a discussion.

More Papers Like This

Article Tier 2

Laser ablation-based techniques for microplastic analysis: recent advances and applications

This review evaluates two laser-based analytical techniques for detecting and characterizing microplastics: laser-induced breakdown spectroscopy (LIBS) and laser ablation mass spectrometry (LA-ICP-MS). Researchers found that both methods offer spatially resolved elemental analysis that can complement traditional polymer identification approaches. The study advocates combining these techniques for a more complete picture of microplastic composition and the toxic contaminants they carry.

Article Tier 2

Laser-based spectroscopic techniques: A novel approach for distinguishing aging processes and types of microplastics

Researchers applied laser-based spectroscopic techniques as a novel approach to distinguish different aging processes and plastic types in microplastics, examining how biotic and abiotic degradation factors alter spectral signatures across particles ranging from 1 to 1000 microns.

Article Tier 2

Laser-based spectroscopic techniques: A novel approach for distinguishing aging processes and types of microplastics

Researchers applied laser-based spectroscopic techniques as a novel approach to distinguish between different aging processes and plastic types in microplastic particles, addressing the challenge of identifying weathered plastics that have undergone physical and chemical degradation in the environment.

Article Tier 2

Laser-based techniques: Novel tools for the identification and characterization of aged microplastics with developed biofilm

Researchers applied laser-based analytical techniques including Raman and LIBS spectroscopy to detect and characterize microplastics covered with environmental biofilm. The methods successfully identified five polymer types under real-world conditions without requiring biofilm removal, avoiding the particle loss associated with conventional pre-treatment steps.

Article Tier 2

Analytical Techniques for the Detection and Characterization of Microplastics: an Overview

This overview reviews state-of-the-art analytical methods for identifying and characterizing microplastics, covering spectroscopic and microscopic approaches and their strengths and limitations for detecting plastic particles across environmental compartments including water, soil, and biological samples.

Share this paper