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February 26, 2026Journal of Xenobiotics0 citationsOpen Access

Direct Methamphetamine Sensing in Flowing Wastewater via a 3D-Printed Flow-Through Cell

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VSVeronika SvitkováIHIvana HorákováVKViliam Kolivoška

Key Points

  • To develop a low-cost, 3D-printed electrochemical cell for direct methamphetamine detection in flowing wastewater.
  • Engineered a 3D-printed flow-through electrochemical cell with a screen-printed carbon electrode.
  • Validated the cell using the [Ru(NH3)6]3+/2+ redox couple for voltammetric sensing.
  • Quantified methamphetamine in filtered wastewater using square wave voltammetry and chronoamperometry.
  • Achieved detection limits of 15.9 µg L−1 in non-flow and 211.2 µg L−1 in flow conditions.
  • Demonstrated specificity with clear differences in signals for methamphetamine and its precursor.
  • First direct electrochemical sensing of methamphetamine in flowing wastewater.

Abstract

The rapid, field-ready detection of methamphetamine (MET) directly in sewage under flow remains a bottleneck for public health and law enforcement surveillance. We engineered a low-cost, 3D-printed flow-through electrochemical cell that houses a commercial screen-printed carbon electrode and operates in both non-flow and flow regimes. The platform was validated using the Ru(NH3)63+/2+ couple, confirming negligible kinetic hindrance and suitability for voltammetric sensing under convective transport. Using square wave voltammetry and chronoamperometry, MET was quantified in filtered wastewater, with limits of detection of 15.9 µg L−1 in non-flow and 211.2 µg L−1 in flow conditions. Specificity tests yielded well-separated faradaic responses for the pre precursor α-phenylacetoacetonitrile (APAAN) and for MET, while amphetamine produced only a weak signal, enabling side-by-side discrimination in a single run. To our knowledge, this is the first demonstration of direct electrochemical sensing of MET in flowing wastewater using a 3D-printed flow-through platform. The simple, disposable design provides an actionable foundation for portable, near-real-time sewer surveillance and motivates antifouling/auto-cleaning strategies for long-term deployment.

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Cite This Study

Svitková et al. (2026) studied this question.

synapsesocial.com/papers/699fe3ec95ddcd3a253e808dhttps://doi.org/10.3390/jox16020040
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Also Consider

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  5. 5Recent Studies on Optical and Electrochemical Sensors for On-Site Detection of Methamphetamine2026