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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:开发Xurography制造的小型化低成本,高性能微生物燃料电池及其用于传感生物需氧量的应用

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The rapid quantification of biological oxygen demand (BOD) plays an important role in monitoring water quality as well as its management in municipal wastewater treatment. Conventional methods based on consumption of dissolved oxygen over 5 days are slow, labor-intensive and usually require skilled personnel and a well-equipped laboratory. Microbial fuel cells (MFCs) have the ability to convert energy from the chemical form to electrical form and could be used directly measure BOD in an automated way. Nevertheless, these transducers are large, expensive and have a relatively long response time which limits their application as BOD sensors. Here, we use xurographic fabrication technology to rapidly fabricate a low cost micro-MFC and demonstrate its suitability to measure BOD. The miniaturized sensor was fabricated in 10 min, with small reaction volume of only 1.8 μL resulting in a faster response time of only 1.1 min and a larger detection range of 18492 mg/L BOD. These findings demonstrate that the use of xurographic methods to fabricate MFCs can enable low cost measurement of BOD in a rapid manner. These sensors have potential for application in wastewater treatment plants for both monitoring as well as control.
机译:生物需氧量(BOD)的快速定量在监测水质以及在市政废水处理中的管理方面发挥着重要作用。基于5天的溶解氧消耗的常规方法缓慢,劳动密集型,通常需要熟练的人员和设备齐全的实验室。微生物燃料电池(MFC)具有将能量从化学形式转换为电形式的能力,并且可以以自动化方式直接测量BOD。然而,这些换能器大,昂贵并且具有相对长的响应时间,其将其应用限制为BOD传感器。在这里,我们使用Xurection制造技术快速制造低成本的微MFC,并证明其适用于测量BOD。小型化传感器在10分钟内制造,反应体积小仅为1.8μL,产生的响应时间仅为1.1分钟,较大的检测范围为18492mg / l。这些发现表明,使用Xurection方法来制造MFC可以以快速的方式实现BOD的低成本测量。这些传感器具有在污水处理厂的应用,用于监测和控制。

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