Choyon Mashrur Sakib, Søpstad Sindre, Peacock Martin, Salmani Hamed, Johannessen Erik
Department of Microsystems, University of Southeastern Norway, 3184 Borre, Norway.
Zimmer & Peacock, 3125 Tonsberg, Norway.
Sensors (Basel). 2025 Jul 9;25(14):4278. doi: 10.3390/s25144278.
Microplastics in aqueous media can be detected through transient oxygen reduction from impacts with an electrified carbon-coated microwire. Each impact is recorded as a spike count in the time domain or as prominent peaks in the frequency domain. The spike count increased from approx. 60 s (pure solution) to 90 s (with microplastics) and 230 s (microplastics in deoxygenated solutions), whereas the frequency domain revealed the presence of spikes in the 7, 21, and 24 Hz regions. The spike count showed a co-variance with the concentration of microparticles, with a linear detection range from 0.02% () to 0.04% (). The electrochemical sensor, characterized by its simple and cost-effective design, may provide a rapid and user-friendly method for the detection of microplastics.
水介质中的微塑料可通过带电碳包覆微丝撞击导致的瞬态氧还原进行检测。每次撞击在时域中记录为尖峰计数,或在频域中记录为显著峰值。尖峰计数从约60秒(纯溶液)增加到90秒(含微塑料)和230秒(脱氧溶液中的微塑料),而频域显示在7、21和24赫兹区域存在尖峰。尖峰计数与微粒浓度呈现协方差,线性检测范围为0.02%()至0.04%()。这种电化学传感器具有设计简单且成本效益高的特点,可能为微塑料检测提供一种快速且用户友好的方法。