SOLAR ENERGY ASSISTS SEDIMENT MICROBIAL FUEL CELL TO GENERATE GREEN ENERGY FROM LIQUID ORGANIC WASTE

Onur Can Türker
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Abstract

Simultaneous liquid organic waste disposal and electricity generation were achieved by a solar-assist sediment microbial fuel cell (S-SMFC) in terms of an ecological and economical perspective. In this respect, 840 mL house environment liquid organic waste which contains 10% juice and 10% sugary tea were disposed by electrogenic bacteria and converted electricity with solar energy. A 100 F capacitor was easily charged 29 times with generated electricity. S-SMFC was disposed 10 mL more waste than control due to more electrical bacteria density on the graphite electrode. In this case, Proteobacteria and Firmucutes were categorized dominate bacteria groups, and they were found in the S-SMFC as 54% and 28%, respectively. Importantly, solar energy increased population density of these groups in the S-SMFC and the density on the graphite electrode increased more than 19% according to control. Some bacteria which were associated with electricity production in the S-SMFC were to Azospirillum fermentarium, Clostridium sp., Pseudomonas guangdongensis, Bacteroides sp., Azovibrio restrictus, Clostridium pascui, Levilinea saccharolytica, Seleniivibrio woodruffii, Geovibrio ferrireducens. Consequently, S-SMFC presents innovative, crucial and simple methodology in order to convert liquid organic waste into the green energy.
太阳能帮助沉积物微生物燃料电池从液体有机废物中产生绿色能源
从生态和经济的角度来看,太阳能辅助沉积物微生物燃料电池(S-SMFC)实现了液体有机废物处理和发电的同时进行。为此,利用生电菌处理840毫升含10%果汁和10%糖茶的室内环境液体有机废物,利用太阳能转化电能。一个100f的电容器很容易用产生的电力充电29次。由于石墨电极上的电细菌密度更高,S-SMFC处理的废物比对照组多10 mL。在这种情况下,Proteobacteria和Firmucutes被归类为优势菌群,它们在S-SMFC中分别占54%和28%。重要的是,太阳能增加了S-SMFC中这些基团的密度,石墨电极上的密度比对照组增加了19%以上。与S-SMFC产电有关的细菌有:发酵偶氮螺旋菌、梭状芽胞菌、广东假单胞菌、拟杆菌、限制偶氮弧菌、pascui梭状芽胞菌、溶糖利维纳菌、木氏硒弧菌、铁还原地弧菌。因此,S-SMFC提出了创新、关键和简单的方法,以将液态有机废物转化为绿色能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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