4.6 Article

Effect of the Anode Structure on the Performance of Oily Sludge Sediment Microbial Fuel Cells

期刊

ACS OMEGA
卷 7, 期 34, 页码 29959-29966

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsomega.2c02976

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资金

  1. National Defense Science and Technology Key Laboratory fund project, China [6142901202202]
  2. Shandong Provincial Natural Science Foundation, China [ZR2020KE041]
  3. Research Fund Project of Binzhou University, China [2021Y38, BZXYQNLG201502]
  4. China National Petroleum Corporation's major science and technology special project 1 Drilling and Completion Clean Production and Solid-Liquid Product Classification Resource Technology Research and Application [2021DJ6601]

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The anode is a crucial factor in improving the efficiency of the single-chamber bioelectrochemical system in degrading oily sludge and generating electricity. This study investigated the effect of the anode structure on the performance of oily sludge microbial fuel cells (SMFCs). The results showed that using carbon felt as the anode material, transverse arrangement, and increasing the number of anodes to six accelerated the degradation rate of oily sludge and improved electricity generation performance.
The anode is considered to be a key factor to improve the single-chamber bioelectrochemical system's efficiency to degrade oily sludge in sediment while generating electricity. There are few studies on the effect of the anode structure on the performance of oily sludge MFCs systematically. In this paper, an oily sludge bioelectrical system was constructed using carbon felt and carbon plate as anode materials, adjusting the anode material arrangement as transverse and longitudinal, and using different anode materials from single to sextuple anodes. The results of this study showed that the rate of degradation of oily sludge was greater with carbon felt (17.04%) than with the carbon plate (13.11%), with transverse (23.61%) than with the longitudinal (19.82%) arrangement of anodes, and with sextuple anodes (33.72%) than with a single anode (25.26%) in the sediment microbial fuel cells (SMFCs). A similar trend was observed when the voltage, power density, and electromotive force (EMF) of SMFCs were estimated between the carbon felt and carbon plate, transverse and longitudinal arrangements, single and sextuple anodes. It is concluded that the proper adjustment of anode arrangements, using carbon felt as an anode material, and increasing the number of anodes to six may accelerate the rate of degradation of oily sludge in oily sludge sediment microbial fuel cells (SMFCs). Furthermore, the electricity generation performance was also improved.

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