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首页> 外文期刊>E3S Web of Conferences >Potential of Electric Power Production from Microbial Fuel Cell (MFC) in Evapotranspiration Reactor for Leachate Treatment Using Alocasia macrorrhiza Plant and Eleusine indica Grass
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Potential of Electric Power Production from Microbial Fuel Cell (MFC) in Evapotranspiration Reactor for Leachate Treatment Using Alocasia macrorrhiza Plant and Eleusine indica Grass

机译:蒸发蒸腾反应器中微生物燃料电池(MFC)的发电潜力,可用于利用海芋和leu叶草进行渗滤液处理

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摘要

Microbial fuel cell is one of attractive electric power generator from nature bacterial activity. While, Evapotranspiration is one of the waste water treatment system which developed to eliminate biological weakness that utilize the natural evaporation process and bacterial activity on plant roots and plant media. This study aims to determine the potential of electrical energy from leachate treatment using evapotranspiration reactor. The study was conducted using local plant, namely Alocasia macrorrhiza and local grass, namely Eleusine Indica . The system was using horizontal MFC by placing the cathodes and anodes at different chamber (i.e. in the leachate reactor and reactor with plant media). Carbon plates was used for chatode-anodes material with size of 40 cm x 10 cm x1 cm. Electrical power production was measure by a digital multimeter for 30 days reactor operation. The result shows electric power production was fluctuated during reactor operation from all reactors. The electric power generated from each reactor was fluctuated, but from the reactor using Alocasia macrorrhiza plant reach to 70 μwatt average. From the reactor using Eleusine Indica grass was reached 60 μwatt average. Electric power production fluctuation is related to the bacterial growth pattern in the soil media and on the plant roots which undergo the adaptation process until the middle of the operational period and then in stable growth condition until the end of the reactor operation. The results indicate that the evapotranspiration reactor using Alocasia macrorrhiza plant was 60-95% higher electric power potential than using Eleusine Indica grass in short-term (30-day) operation. Although, MFC system in evapotranspiration reactor system was one of potential system for renewable electric power generation.
机译:从自然细菌的活动来看,微生物燃料电池是有吸引力的发电机之一。同时,蒸发蒸腾是一种废水处理系统,其开发目的是消除生物弱点,该弱点利用自然蒸发过程以及植物根和植物培养基上的细菌活性。这项研究旨在确定使用蒸散反应器处理渗滤液产生的电能潜力。该研究是使用当地植物,即海芋(Alocasia macrorrhiza)和当地草(Eleusine Indica)进行的。该系统使用水平MFC,方法是将阴极和阳极放在不同的腔室中(即在渗滤液反应器和带植物培养基的反应器中)。碳板用于尺寸为40 cm x 10 cm x1 cm的多级阳极材料。用数字万用表测量反应堆运行30天的电能。结果表明,在反应堆运行期间,所有反应堆的发电量均出现波动。每个反应堆产生的电力波动,但使用海芋(Alocasia macrorrhiza)工厂的反应堆发电平均功率达到70瓦特。使用E叶碱的反应器从草中获得的平均功率为60瓦特。电力生产的波动与土壤介质和植物根部的细菌生长模式有关,细菌的适应过程一直进行到适应过程的中期,然后进入稳定的生长条件,直到反应堆运行结束。结果表明,在短期(30天)操作中,使用海芋植物的蒸散反应器的电势比使用E叶草的高60-95%。尽管,蒸发蒸腾反应器系统中的MFC系统是可再生发电的潜在系统之一。

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