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Studies on Power Generation and Wastewater Treatment using Modified Single Chamber Microbial Fuel Cell

机译:改性单室微生物燃料电池发电和废水处理研究

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A membrane-less and mediator-less system was designed and tested with wastewater sample as fuel to generate electricity. Microorganisms were first isolated from the wastewater sample to pure culture and were used as the 'machinery' that converts wastewater into energy. The wastewater samples were treated either by sterilization or non-sterilization methods. These tests were run using a modified air-cathode single chamber microbial fuel cell (MFC). By sterilizing the wastewater, the calculated power density was much lower compared to non-sterilized wastewater indicating a significant role of microbial activity in the SCMFC system and substrate availability. Furthermore, mixed culture was observed to give larger power density compared to an individual microbe (18.42 ± 5.84 mW/m2 for mixed culture and 8.82 ± 4.56 mW/m2 to 9.46 ± 4.87 mW/m2 for individual microbe, Bukholderi capecia and Acidovorax sp. respectively) to prove that larger power value could be achieved with a mixed microbial system. In addition, the system proved to remove 68.57% of chemical oxygen demand (COD) of the wastewater sample tested. In conclusion, the designed SCMFC has been proven capable of power generation and wastewater treatment comparable to other SCMFCs to date.
机译:设计和测试薄膜和较少的介质系统,用废水样品作为燃料进行设计,以发电。首先从废水样品中分离微生物,从废水样品中分离为纯培养物,并用作将废水转化为能量的“机械”。废水样品通过灭菌或非灭菌方法进行处理。使用改进的空气阴极单室微生物燃料电池(MFC)进行这些测试。通过对废水进行灭菌,与非灭菌废水相比,计算的功率密度远低得多,这表明微生物活性在SCMFC系统和基板可用性中的显着作用。此外,与单个微生物相比,观察到混合培养物给出更大的功率密度(混合培养为18.42±5.84mW / m 2,为单个微生物,Bukholderi capecia和acidovorax sp的含量为8.82±4.56 mw / m 2至9.46±4.87 mw / m 2。分别证明可以通过混合的微生物系统实现更大的功率值。此外,该系统证明了检测废水样品的68.57%的化学需氧量(COD)。总之,设计的SCMFC已被证明能够与其他SCMFC相当的发电和废水处理。

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