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首页> 外文期刊>Journal of power sources >Microbial fuel cells as power supply of a low-power temperature sensor
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Microbial fuel cells as power supply of a low-power temperature sensor

机译:微生物燃料电池作为低功率温度传感器的电源

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Microbial fuel cells (MFCs) show great promise as a concomitant process for water treatment and as renewable energy sources for environmental sensors. The small energy produced by MFCs and the low output voltage limit the applications of MFCs. Specific converter topologies are required to step-up the output voltage of a MFC. A Power Management Unit (PMU) is proposed for operation at low input voltage and at very low power in a completely autonomous way to capture energy from MFCs with the highest possible efficiency. The application of sensors for monitoring systems in remote locations is an important approach. MFCs could be an alternative energy source in this case. Powering a sensor with MFCs may prove the fact that wastewater may be partly turned into renewable energy for realistic applications. The Power Management Unit is demonstrated for 3.6 V output voltage at 1 mW continuous power, based on a low-cost 0.7-L MFC. A temperature sensor may operate continuously on 2-MFCs in continuous flow mode. A flyback converter under discontinuous conduction mode is also tested to power the sensor. One continuously fed MFC was able to efficiently and continuously power the sensor. (C) 2015 Elsevier B.V. All rights reserved.
机译:微生物燃料电池(MFCs)作为水处理的伴随过程以及作为环境传感器的可再生能源显示出巨大的希望。 MFC产生的能量少和输出电压低限制了MFC的应用。需要特定的转换器拓扑以提高MFC的输出电压。提出了一种电源管理单元(PMU),以完全自主的方式在低输入电压和非常低的功率下运行,以尽可能高的效率从MFC捕获能量。将传感器用于远程位置的监视系统是一种重要的方法。在这种情况下,MFC可能是替代能源。使用MFC为传感器供电可以证明以下事实:在实际应用中,废水可能会部分转化为可再生能源。该电源管理单元基于低成本的0.7L MFC,在1 mW连续功率下可提供3.6 V输出电压。温度传感器可以连续流动模式在2-MFC上连续运行。还测试了不连续传导模式下的反激式转换器为传感器供电。一个连续供料的MFC能够高效,持续地为传感器供电。 (C)2015 Elsevier B.V.保留所有权利。

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