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Standardization of micro-FTIR methods and applicability for the detection and identification of microplastics in environmental matrices

The Science of The Total Environment 2023 131 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Priyansha Gupta, Priyansha Gupta, Chayanika Rathore, Priyansha Gupta, Chayanika Rathore, Chayanika Rathore, Chayanika Rathore, Mahua Saha Chayanika Rathore, Chayanika Rathore, Priyansha Gupta, Priyansha Gupta, Priyansha Gupta, Mahua Saha M. Kumar, Mahua Saha Akshata Naik, Mahua Saha Mahua Saha Mahua Saha Chayanika Rathore, Mahua Saha Mahua Saha Mahua Saha Mahua Saha Mahua Saha Mahua Saha Priyansha Gupta, Priyansha Gupta, Akshata Naik, M. Kumar, Chayanika Rathore, Chayanika Rathore, Akshata Naik, Akshata Naik, Priyansha Gupta, Priyansha Gupta, Priyansha Gupta, Chayanika Rathore, J. de Boer, Chayanika Rathore, J. de Boer, J. de Boer, Akshata Naik, Akshata Naik, Chayanika Rathore, Chayanika Rathore, Mahua Saha Mahua Saha Chayanika Rathore, M. Kumar, M. Kumar, Chayanika Rathore, Mahua Saha Chayanika Rathore, Chayanika Rathore, Mahua Saha Mahua Saha Mahua Saha Priyansha Gupta, Priyansha Gupta, M. Kumar, M. Kumar, Mahua Saha J. de Boer, Chayanika Rathore, Chayanika Rathore, Chayanika Rathore, Chayanika Rathore, Akshata Naik, Priyansha Gupta, Chayanika Rathore, Chayanika Rathore, Mahua Saha Chayanika Rathore, Mahua Saha Akshata Naik, Chayanika Rathore, Chayanika Rathore, Chayanika Rathore, Akshata Naik, Akshata Naik, Akshata Naik, Akshata Naik, Akshata Naik, Akshata Naik, Akshata Naik, J. de Boer, J. de Boer, Akshata Naik, Mahua Saha Chayanika Rathore, J. de Boer, M. Kumar, Akshata Naik, Mahua Saha Chayanika Rathore, M. Kumar, Akshata Naik, Priyansha Gupta, J. de Boer, Mahua Saha J. de Boer, Chayanika Rathore, Chayanika Rathore, Mahua Saha Mahua Saha

Summary

Researchers worked to standardize micro-FTIR spectroscopy methods for detecting and identifying microplastics as small as 20 micrometers across different environmental samples. They tested reflection and transmission modes against known polymer standards and validated the approach on real-world water, sediment, and biological samples. The study provides a reproducible methodology that could help make microplastic measurements more consistent and comparable across laboratories.

The ubiquity of microplastics (MPs) in the various environment is of increasing concern. Although micro Fourier Transform Infrared Spectroscopy (μ-FTIR) represents an ideal method for the detection of MPs, this technique lacks a standardized mode to be followed for MPs in diverse environmental matrices. The study focused on the optimization, application, and validation of μ-FTIR techniques for the identification of smaller-sized MPs (20 μm-1 mm). In order to assess the validity of the various detection modes in μ-FTIR (reflection and transmission), a confirmatory test with known standard polymers, viz., polyethylene (PE), polypropylene (PP), polystyrene (PS), polyamide (PA), and polyvinyl chloride (PVC) were executed. Subsequently, for the validation and accuracy of the method, the polymer spectra of standard polymers acquired in μ-FTIR (smaller-sized) were compared with spectra of larger-sized particles (same standards) in FTIR-ATR (Attenuated Total Reflectance). The spectra were comparable and highlighted the similar pattern of the polymeric composition. The spectral quality and matching score (>60 %) with the reference library was taken into account to accentuate the authenticity of the different methods. This study highlighted the reflection mode (particularly diffuse reflection) as more effective for the quantification of smaller-sized MPs in complex environmental samples. The same method was successfully applied to a representative environmental sample (sand), supplied by the EURO-QCHARM for inter-laboratory study. Two polymers (PE and PET) were correctly identified out of three spiked polymers (PE, PET, and PS) in the given sample. Similarly, in terms of matching algorithms, the results for diffuse reflection (PE-71.7 % and PET-89.1 %) were found satisfactory as compared to micro-ATR (PE-67 % and PET-63.2 %) reflection mode. Overall, this study illustrates an extensive perspective of different μ-FTIR techniques, recommending the most reliable, easy, and non-destructive method to unambiguously characterize diverse types of polymers of smaller MPs in complex environmental matrices.

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