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A Dual-Channel, Interference-Free, Bacteria-Based Biosensor for Highly Sensitive Water Quality Monitoring

机译:双通道,无干扰,基于细菌的生物传感器,用于高度灵敏的水质监测

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摘要

In this paper, we demonstrated a miniaturized bacteria-based biosensing platform for sensitive, reliable, and practical online monitoring of water quality. Two biosensors were integrated into a dual-channel microfluidic device which operated as a detection and a reference sensor, respectively. By providing a reference-compensated sensing response, the device was capable of minimizing environmental interferences, such as temperature and flow rate, ultimately leading to high sensitivity and reliability in water quality monitoring. We used a microbial fuel cell (MFC) technology as a biosensor for the detection of toxic substances in water. Toxic components inhibit bacterial metabolic activity, generating a distinct change in the current output of the MFC-based biosensor. Each biosensor incorporated a single-chambered MFC with an air cathode, which substantially decreased the device complexity and enhanced the practicability as a real-world application. The miniaturization of the MFC biosensor having a 90- μL microfluidic chamber provided rapid and sensitive sensing responses with a concentration range from 0.003% to 0.075% of formaldehyde in media. By controlling the introduction time of the toxic sample with sequential injection of the fresh media into the detection channel, the biosensor is completely reusable and is potentially applicable to long-term in situ monitoring of water quality.
机译:在本文中,我们展示了一种基于细菌的小型生物传感平台,用于敏感,可靠和实用的在线水质在线监测。将两个生物传感器集成到双通道微流体设备中,该设备分别用作检测传感器和参考传感器。通过提供参考补偿的感应响应,该设备能够将环境干扰(例如温度和流量)降至最低,从而最终实现水质监测的高灵敏度和可靠性。我们使用微生物燃料电池(MFC)技术作为生物传感器来检测水中的有毒物质。有毒成分会抑制细菌的代谢活性,从而使基于MFC的生物传感器的电流输出发生明显变化。每个生物传感器都集成了带有空气阴极的单腔MFC,这大大降低了设备的复杂性并提高了其在实际应用中的实用性。具有90μL微流体室的MFC生物传感器的小型化提供了快速,灵敏的传感响应,其浓度范围为介质中甲醛的0.003%至0.075%。通过控制新鲜样品向检测通道的连续注入,控制有毒样品的引入时间,该生物传感器可以完全重复使用,并且可能适用于长期就地监测水质。

著录项

  • 来源
    《Sensors Journal, IEEE》 |2016年第24期|8672-8677|共6页
  • 作者单位

    Department of Electrical and Computer Engineering, Bioelectronics and Microsystems Laboratory, State University of New York, Binghamton, NY, USA;

    Department of Electrical and Computer Engineering, Bioelectronics and Microsystems Laboratory, State University of New York, Binghamton, NY, USA;

    Department of Electrical and Computer Engineering, Bioelectronics and Microsystems Laboratory, State University of New York, Binghamton, NY, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biosensors; Monitoring; Anodes; Media; Microfluidics; Temperature sensors;

    机译:生物传感器;监测;阳极;介质;微流控;温度传感器;
  • 入库时间 2022-08-17 13:30:11

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