College of Water Sciences, Beijing Normal University, Beijing 100875, PR China; State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing 100012, PR China.
State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing 100012, PR China.
Sci Total Environ. 2021 Jun 25;775:145048. doi: 10.1016/j.scitotenv.2021.145048. Epub 2021 Feb 2.
The response of microorganisms in microbial fuel cells (MFCs) to toxic compounds under different operating conditions, such as flow rate and culture time, was investigated herein. While it has been reported that MFCs can detect some toxic substances, it is unclear if operating conditions affect MFCs toxicity response. In this study, the toxic response time of MFCs decreased when the flow rate increased from 0.5 mL/min to 2 mL/min and then increased with 5 mL/min. The inhibition rates at 0.5 mL/min, 2 mL/min, and 5 mL/min were 8.4% ± 1.6%, 45.1% ± 5.3%, and 4.9% ± 0.3%, respectively. With the increase of culture time from 7 days to 90 days, the toxic response time of MFCs gradually increased. The inhibition rates at culture times of 7 days, 45 days, and 90 days were 45.1% ± 5.3%, 32.6% ± 6.6%, and 23.2% ± 1.3%, respectively. Increasing the culture time will reduce the sensitivity of MFC. The results showed that MFCs can respond quickly at a flow rate of 2 mL/min after cultivation for 7 days. Under these conditions, the power density can reach 1137.0 ± 65.5 mW/m, the relative content of Geobacter sp. is 57%, and the ORP of the multilayers changed from -159.2 ± 1.6 mV to -269.9 ± 1.7 mV within 200 μm biofilm thickness. These findings show that increasing the flow rate and shortening the culture time are conducive for the toxicity response of MFCs, which will increase the sensitivity of MFCs in practical applications.
本研究考察了在不同操作条件(如流速和培养时间)下微生物燃料电池(MFC)中微生物对有毒化合物的反应。虽然已经报道 MFC 可以检测到一些有毒物质,但不清楚操作条件是否会影响 MFC 的毒性反应。在这项研究中,当流速从 0.5mL/min 增加到 2mL/min 然后增加到 5mL/min 时,MFC 的毒性响应时间缩短。在 0.5mL/min、2mL/min 和 5mL/min 时的抑制率分别为 8.4%±1.6%、45.1%±5.3%和 4.9%±0.3%。随着培养时间从 7 天增加到 90 天,MFC 的毒性响应时间逐渐增加。在培养时间为 7 天、45 天和 90 天时的抑制率分别为 45.1%±5.3%、32.6%±6.6%和 23.2%±1.3%。增加培养时间会降低 MFC 的灵敏度。结果表明,在培养 7 天后以 2mL/min 的流速进行培养时,MFC 可以快速响应。在这些条件下,功率密度可达 1137.0±65.5mW/m,地杆菌属的相对含量为 57%,并且多层的 ORP 从-159.2±1.6mV 变化到-269.9±1.7mV,在 200μm 厚的生物膜内。这些发现表明,增加流速和缩短培养时间有利于 MFC 的毒性响应,这将提高 MFC 在实际应用中的灵敏度。