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Evaluation of spectroscopic techniques for on-site drug testing of festival seizures.

N Meert, J Eliaerts, F Van Durme, S M R Wille, N Samyn

Drug testing and analysis June 1, 2025 DOI: 10.1002/dta.3780 via PubMed

Summary

AI-generated from the abstract

At a dance festival, 166 drug samples—90 tablets, 53 powders, 16 crystals, and 7 liquids—were tested on-site using Raman and Fourier transform-infrared (FT-IR) spectroscopy. Raman identified powders and crystals with high sensitivity (100% and 81%), but performed poorly on liquids (67%) and ecstasy-like tablets (41%). FT-IR achieved sensitivities above 95% across all forms. On-site MDMA doses in tablets ranged from 52 mg to 336 mg hydrochloride. Combining both techniques is recommended for rapid on-site drug identification, but optimized settings, in-house libraries, and trained operators are essential for accurate results.

Study at a glance

Characteristics Comparative study Peer reviewed
Sample size 166
Population Drug seizures (tablets, powders, crystals, liquids) at a dance festival
Keywords Raman Chemometrics Drug seizures Infrared On‐site testing
Citations 8
Key finding Raman spectroscopy was highly sensitive for powders and crystals but less effective for liquids and tablets, while FT-IR achieved over 95% sensitivity for all sample types.

Abstract

Despite the fact that drugs of abuse are illegal, a drug-free festival still remains an utopia in most settings. For law enforcement purposes, it is necessary to rapidly determine whether controlled substances are involved. On-site testing is a challenging task because drugs appear in different physical forms and concentrations. The aim of this study was to compare the performance of two spectroscopic techniques, Raman and Fourier transform-infrared (FT-IR), for the testing of drug seizures at a dance festival. First, samples were measured through packaging with Raman. Subsequently, homogenized samples were analysed with FT-IR. For MDMA tablets, a chemometric model was applied on the FT-IR spectra for the dose estimation. After the festival, results were confirmed in the forensic laboratory with gas chromatography coupled with mass spectrometry (GC-MS) and gas chromatography with flame ionization detection (GC-FID). In total, 166 samples of which 90 tablets, 53 powders, 16 crystals and 7 liquids were analysed. MDMA, cocaine and ketamine were the top three drugs seized. The Raman technique was suitable for powders and crystals (sensitivity of 100% and 81%, respectively). However, in comparison with FT-IR, Raman performance was lower for the analysis of liquids (sensitivity of 67%) and 'ecstasy'-like tablets (sensitivity of 41%). Overall, sensitivities above 95% were obtained with FT-IR. The MDMA doses of the tablets, determined on-site, ranged between 52 mg and 336 mg MDMA hydrochloride. For a quick identification of a variety of drugs on-site, the combination of Raman and FT-IR is recommended. It should be emphasized that optimized settings, in-house libraries and analysis by trained operators are essential to obtain correct results.

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