Ahmad Anwar, Senaidi Alaya Said, Al-Rahbi Amal S, Al-Dawery Salam K
Civil and Environmental Engineering Department, College of Engineering and Architecture, University of Nizwa, PO 33, 616 Nizwa, Sultanate of Oman.
Chemistry Section-Applied Sciences, Higher College of Technology, University Technology and Applied Sciences, Muscat, Sultanate of Oman.
J Environ Health Sci Eng. 2022 Dec 26;21(1):133-142. doi: 10.1007/s40201-022-00846-7. eCollection 2023 Jun.
This research is based on the treatment of petroleum wastewater (PWW) with pretreated activated sludge for the production of electricity and removal of chemical oxygen demand (COD) using microbial fuel cell (MFC).
The application of the MFC system which uses activated sludge biomass (ASB) as a substrate resulted in the reduction of COD by 89.5% of the original value. It generated electricity equivalent to 8.18 mA/m which can be reused again. This would solve the majority of environmental crises which we are facing today.
This study discusses the application of ASB to enhance the degradation of PWW for the production of a power density of 1012.95 mW/m when a voltage of 0.75 V (voltage) is applied at 30:70% of ASB when MFC is operated in a continuous mode. Microbial biomass growth was catalyzed using activated sludge biomass. The growth of microbes was observed by scanning through an electron microscope. Through oxidation in the MFC system, bioelectricity is generated which is used in the cathode chamber. Furthermore, the MFC operated using ASB in a ratio of 35 with the current density, which decreased to 494.76 mW/m at 10% ASB.
Our experiments demonstrate that the efficiency of the MFC system can generate bioelectricity and treat petroleum wastewater by using activated sludge biomass.
本研究基于利用预处理活性污泥处理石油废水(PWW),通过微生物燃料电池(MFC)发电并去除化学需氧量(COD)。
应用以活性污泥生物质(ASB)为底物的MFC系统,使COD降低了原始值的89.5%。它产生了相当于8.18 mA/m的电力,可再次利用。这将解决我们当今面临的大部分环境危机。
本研究讨论了在MFC以连续模式运行时,当施加0.75 V(电压)且ASB占比为30:70%时,应用ASB提高PWW降解以产生1012.95 mW/m功率密度的情况。利用活性污泥生物质催化微生物生物量的生长。通过电子显微镜扫描观察微生物的生长情况。通过MFC系统中的氧化作用产生生物电,用于阴极室。此外,MFC以35的比例使用ASB运行,在ASB占比为10%时,电流密度降至494.76 mW/m。
我们的实验表明,MFC系统利用活性污泥生物质能够产生生物电并处理石油废水。