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Microbial fuel cell with a nano-membrane and two expired medicinal drug-feeding cathode: a novel strategy

机译:具有纳米膜和两个过期药物供料阴极的微生物燃料电池:一种新策略

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In recent years, there has been developing interests in microbial fuel cell (MFC) technology as a hopeful approach to overcome worldwide energy crisis that will come into account by restricting fossil fuels consumption in the future. In addition, many drugs around the world are accessible to some populations easily and remain unused annually. This paper discusses bioelectricity generation with whey degradation in a dual chambered MFC in the presence of some expired medicinal drug-feeding cathodes. Consequently, a two-chamber MFC applied using Escherichia coli as biocatalyst, humic acid as electron mediator?and Nafion 117 with a 5 nm in size as nano-membrane. The results showed that the open-circuit potential was 0.751?V at ambient condition. Stability of the voltage was exceeded 20?h. Acetaminophen codeine and Bismuth—as two expired medicinal drugs—applied as possible catholyte. In conclusion, Bismuth revealed more opportunity for power deriving in comparison with Acetaminophen. The best values were close to 2.9?×?10_(?5)?W and 1.75?×?10_(?4)?A, referring to power generation and current production, respectively.
机译:近年来,人们对微生物燃料电池(MFC)技术产生了兴趣,认为它是克服全球能源危机的一种有希望的方法,将来将通过限制化石燃料的消耗来解决这一问题。此外,世界各地的许多人群都可以轻松获得许多毒品,并且每年仍未使用它们。本文讨论了在一些过期的药用药物进料阴极的存在下,在双室MFC中乳清降解引起的生物发电。因此,使用了两腔MFC,使用大肠杆菌作为生物催化剂,腐殖酸作为电子介体,Nafion 117的纳米膜尺寸为5 nm。结果表明,在环境条件下的开路电势为0.751V。电压的稳定性超过20?h。对乙酰氨基酚可待因和铋(作为两种过期的药物)应尽可能应用阴极电解液。总之,与对乙酰氨基酚相比,铋显示了更多的权力衍生机会。最佳值分别接近于发电量和发电量,分别接近2.9××10_(φ5)·W和1.75××10_(φ4)·A。

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