A single chamber microbial fuel cell as power supply for implantable medical devices

Swapnakumari B. Patil, A. Mulla, S. Katre
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引用次数: 3

Abstract

This analyze applies a fresh approach to deliver continuing and protective power for implantable medical devices (IMDs) employing a microbial fuel cell (MFC) which was considered to be placed in human large intestine and could employ intestinal fluid and microorganisms to generate power. Based on the anatomic physique and internal ambient circumstances of large intestine, transverse colon was selected to be the adequate position for the implantation of MFC. The operation of the MFC which approximated the surrounding factors of transverse colon by managing dissolved oxygen (DO) and pH and was inoculated with approximated intestinal fluid (SIF) was analyzed. Consistent power generation of MFC was acquired after couple of months conduct with open circuit voltage (OCV) of 550.2 mV, maximum power density of 72.3mW/m2, and average voltage output of 305mV(with external resistance of 200). Additionally, the changes of circumstances in the single chamber of MFC did not have a notable impact on human body based on the analysis of pH and DO values. Likewise analyzes on internal resistance and power density showed that the MFC could drive power of 59mW according to the size of intestinal area, which was sufficient for IMDs. These consequence shows that MFCs located in large intestine could be a good power source for IMDs.
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一种供植入式医疗设备供电的单室微生物燃料电池
该分析为植入式医疗设备(imd)提供了一种新的方法,即利用微生物燃料电池(MFC),该电池被认为可以放置在人体大肠中,利用肠液和微生物来发电。根据大肠的解剖形态和内部环境情况,选择横结肠作为MFC植入的合适位置。分析了通过控制溶解氧(DO)和pH值来近似横结肠周围因素并接种近似肠液(SIF)的MFC的运行情况。经过几个月的运行,MFC的开路电压(OCV)为550.2 mV,最大功率密度为72.3mW/m2,平均输出电压为305mV(外阻为200),获得了稳定的发电性能。此外,从pH值和DO值的分析来看,MFC单室环境的变化对人体的影响并不显著。同样对内阻和功率密度进行分析,MFC可根据肠面积大小驱动59mW的功率,这对于imd来说是足够的。这些结果表明,位于大肠的mfc可能是imd的良好电源。
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