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Development of a xurographically fabricated miniaturized low-cost, high-performance microbial fuel cell and its application for sensing biological oxygen demand

机译:X射线摄影制造的低成本,高性能微生物燃料电池的开发及其在检测生物需氧量中的应用

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摘要

The rapid quantification of biological oxygen demand (BOD) plays an important role in environmental management, for instance, wastewater treatment. This study used xurographic fabrication technology to rapidly fabricate a low cost miniaturized microbial fuel cell (MFC) and demonstrated its suitability to measure BOD. The miniaturized sensor could be fabricated in 10 min with low cost of $0.5 U.S. per device. The reaction volume was designed to be 1.8 mu L to obtain faster response time. The sensor was tested using sodium acetate (NaAc) as a model BOD analyte. It could response to a wide range of BOD concentration between 20 and 490 mg/L which would cover the majority range of wastewater BOD concentration in a wastewater treatment plant. The response time of this microsensor was 1.1 min which was significantly shorter than other conventional methods for BOD measurements (5 days). This study demonstrated that the use of xurographic methods to fabricate MFCs could enable rapid fabrication of microsensors to measure BOD in a rapid manner. This study also identified the potential of the sensor for application in wastewater treatment plants to monitor BOD and provide guidance for controlling treatment processes.
机译:快速定量生物需氧量(BOD)在环境管理(例如废水处理)中起着重要作用。这项研究使用X射线照相制造技术快速制造了低成本的小型化微生物燃料电池(MFC),并证明了其适用于测量BOD。微型传感器可以在10分钟内完成制造,每台设备的成本仅为0.5美元。反应体积设计为1.8μL,以获得更快的响应时间。使用乙酸钠(NaAc)作为BOD模型分析物对传感器进行了测试。它可以对20至490 mg / L的宽范围BOD浓度做出响应,这将覆盖废水处理厂中大部分废水BOD浓度。该微传感器的响应时间为1.1分钟,明显短于BOD测量的其他常规方法(5天)。这项研究表明,使用X射线照相法制造MFC可以使快速测量BOD的微传感器的制造成为可能。这项研究还确定了该传感器在废水处理厂中应用的潜力,以监测BOD并为控制处理过程提供指导。

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