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A two-channel bacteria-based biosensor for water quality monitoring

机译:基于双通道的细菌的生物传感器,用于水质监测

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We created a dual-channel bacteria-based biosensor for sensitive and reliable monitoring of toxic substances in water. We utilized microbial fuel cell (MFC) technology as a biosensor for the detection of water toxicity. A broad range of toxic components can inhibit bacterial metabolic activity, generating a distinct change in the current output of the MFC-based biosensor. The biosensor consisted of two 90μL single-chambered MFCs (detection and reference) with air-cathodes, which significantly simplifies the device configuration. The reference channel sensor was to calibrate the system for environmental changes (e.g., temperature, pressure, viscosity, pH, and non-specific binding) that influence the bacterial metabolisms, thus improving the accuracy of the measurement. In addition, the small-scale MFC biosensor produced favorable conditions for high sensitivity by reducing the internal resistance and increasing mass transfer in the micro-sized chamber.
机译:我们创建了一种基于双通道的细菌的生物传感器,用于敏感和可靠地监测水中的有毒物质。我们利用微生物燃料电池(MFC)技术作为用于检测水毒性的生物传感器。广泛的毒性组分可以抑制细菌代谢活性,产生基于MFC的生物传感器的电流输出的不同变化。生物传感器由带有空气阴极的两个90μl单腔MFC(检测和参考)组成,这显着简化了装置配置。参考通道传感器是校准影响细菌代谢的环境变化(例如,温度,压力,粘度,pH和非特异性结合),从而提高测量的准确性。此外,小规模的MFC生物传感器通过降低微尺寸室中的内阻和增加质量传递来产生高灵敏度的有利条件。

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