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The Influence of Biofilm Formation on Electricity Production From Tempe Wastewater Using Tubular Membraneless Microbial Fuel Cell Reactor

机译:生物膜形成对使用管状膜的微生物燃料电池反应器从坦佩废水中电力生产的影响

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Microbial fuel cell (MFC) technology can be potentially developed as an alternative energy source since it can convert various substrates from renewable sources into electricity using bacteria as biocatalyst. Tempe wastewater as MFC substrate gives advantages in tempe wastewater treatment and reducing the purchasing cost of bacteria. Currently, the applications of MFCs are still limited due to the relatively low electricity production, so many studies have been conducted to improve the electricity production by MFC. This study focused on investigating the influence of biofilm formation time and the use of macromolecule as additional substrate towards electricity production from MFC system with tubular membranless reactor and tempe wastewater as substrate. This study suggested that biofilm formation on anode could improve the electricity production up to 10-folds while the use of glucose as substrate addition reduce the electricity production up to 60%. The biggest electricity output was obtained from the experiment of biofilm formation for 14 days with EPS content in biofilm 0,13 mg/cm2 where the maximum voltage and power density produced was respectively 34,81 mV and 0,26 mW/m2.
机译:微生物燃料电池(MFC)技术可以作为替代能源开发,因为它可以将来自可再生源的各种基板转换为使用细菌作为生物催化剂的电力。 Tempe废水作为MFC衬底,在坦皮废水处理中提供了优势,降低了细菌的购买成本。目前,由于电力生产较低,MFC的应用仍然有限,因此已经进行了许多研究以改善MFC的电力生产。该研究重点研究了生物膜形成时间和大分子的影响,作为额外的基质朝向来自MFC系统的额外衬底,用管状膜的膜和灌水废水作为基材。本研究表明,阳极上的生物膜形成可以将电力产量改善高达10倍,同时使用葡萄糖作为基材添加降低电力产量高达60%。从生物膜形成的实验中获得最大的电力输出14天,在生物膜0,13mg / cm 2中,产生的最大电压和功率密度分别为34,81mV和0.26mW / m 2。

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