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Power management systems for sediment microbial fuel cells in high power and continuous power applications.

机译:大功率和连续功率应用中用于沉积物微生物燃料电池的电源管理系统。

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摘要

The objective of this dissertation was to develop power management systems (PMS) for sediment microbial fuel cells (SFMCs) for high power and continuous applications. The first part of this dissertation covers a new method for testing the performance of SMFCs. This device called the microbial fuel cell tester was developed to automatically test power generation of PMS.;The second part focuses on a PMS capable of delivering high power in burst mode. This means that for a small amount of time a large amount of power up to 2.5 Watts can be delivered from a SMFC only generating mW level power.;The third part is aimed at developing a multi-potentiostat laboratory tool that measures the performance at fixed cell potentials of microbial fuel cells so that I can optimize them for use with the PMS. This tool is capable of controlling the anode potential or cathode potential and measuring current of six separate SMFCs simultaneously. By operating multiple potentiostats, I was able to run experiments that find ideal operating conditions for the sediment microbial fuel cells, and also I can optimize the power management system for these conditions.;The fourth part of the dissertation is targeting a PMS that was able to operate a sensor continuously which was powered by an SMFC. In pervious applications involving SMFCs, the PMS operated in batch mode. In this PMS, the firmware on the submersible ultrasonic receiver (SUR) was modified for use with my PMS. This integration of PMS and SUR allowed for the continuous operation of the SUR without using a battery.;Finally, the last part of the dissertation recommends a scale-up power management system to overcome the linearity scale up issue of SMFCs as future work. Concluding remarks are also added to summarize the goal and focus of this dissertation.
机译:本文的目的是开发用于高功率和连续应用的沉积物微生物燃料电池(SFMC)的电源管理系统(PMS)。本文的第一部分介绍了一种测试SMFC性能的新方法。这种被称为微生物燃料电池测试仪的设备是为自动测试PMS的发电而开发的。第二部分着重于能够在突发模式下提供高功率的PMS。这意味着在一小段时间内,仅产生mW级功率的SMFC即可提供高达2.5瓦的大量功率;第三部分旨在开发一种可在固定条件下测量性能的多恒电位仪实验室工具微生物燃料电池的电池电势,因此我可以对其进行优化以用于PMS。该工具能够控制阳极电势或阴极电势,并同时测量六个独立SMFC的电流。通过操作多个恒电位仪,我能够进行实验,为沉积物微生物燃料电池找到理想的工作条件,并且我还可以针对这些条件优化电源管理系统。论文的第四部分针对的是能够连续操作由SMFC供电的传感器。在涉及SMFC的以前的应用程序中,PMS以批处理模式运行。在此PMS中,对潜水超声接收器(SUR)上的固件进行了修改,以与我的PMS一起使用。 PMS和SUR的这种集成使得SUR能够连续运行而无需使用电池。最后,论文的最后一部分提出了一种放大功率管理系统,以克服SMFC的线性放大问题,这是未来的工作。最后,还总结性总结了本论文的目的和重点。

著录项

  • 作者

    Donovan, Conrad Koble.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Alternative Energy.;Engineering General.;Energy.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:29

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