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首页> 外文期刊>Bioelectrochemistry >Phosphatase and dehydrogenase activities in anodic chamber of single chamber microbial fuel cell (MFC) at variable substrate loading conditions
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Phosphatase and dehydrogenase activities in anodic chamber of single chamber microbial fuel cell (MFC) at variable substrate loading conditions

机译:可变底物上样条件下单室微生物燃料电池(MFC)阳极室中的磷酸酶和脱氢酶活性

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Performance of microbial fuel cell (MFC) was evaluated with the function of phosphatase and dehydrogenase activities at increasing organic loading rate (OLR) (0.195 kg chemical oxygen demand (COD)/m(3)-day; 0.458 kg COD/m(3)-day; 0.911 kg COD/m(3)-day; 1.589 kg COD/m(3)-day). Variation in enzyme activities along with power generation and substrate degradation was observed during MFC operation with the function of organic loading rate (OLR). Phosphatase activity showed a decreasing trend with time from 24 to 36th hour depending on OLR which is a good sign of substrate utilization. Dehydrogenase activity was observed to be high at the 12th hour irrespective of the OLR. However, the activity was increased with increasing OLR. Higher dehydrogenase activity was observed at 1.589 kg COD/m(3)-day representing the possibility of higher redox reactions. Higher power output was recorded at the 12th hour with 53.58 mW/m(2) (0.195 kg COD/m(3)-day) and 24th hour with 60.29 mW/m(2) (0.458 kg COD/m(3)-day) and 76.17 mW/m(2) (0.911 kg COD/m(3)-day). At higher OLR studied (1.589 kg COD/m(3)-day), maximum power generation (49.86 mW/m(2)) was observed at 12th hour indicating decreased performance. Electron discharge and recovery properties observed during MFC operation were supporting higher performance at 0.911 kg COD/m(3)-day. Increase in OLR showed improvement in substrate degradation [OLR1, 56.32% (0.11 kg COD/m(3)-day); OLR2, 56.42% (0.26 kg COD/m(3)-day); OLR3, 59.53% (0.54 kg COD/m(3)-day); OLR4, 64.40% (1.78 kg COD/m(3)-day)].
机译:在增加的有机负荷率(OLR)(0.195千克化学需氧量(COD)/ m(3)-天; 0.458千克化学需氧量/ m(3)的情况下,通过磷酸酶和脱氢酶活性的功能评估了微生物燃料电池(MFC)的性能。天); 0.911千克COD / m(3)天; 1.589千克COD / m(3)天)。在MFC操作期间,观察到酶活度随发电量和底物降解而变化,并具有有机负荷率(OLR)。磷酸酶活性从24小时到36小时随着时间的推移呈下降趋势,这取决于OLR,这是底物利用率的一个好兆头。不管OLR如何,在第12小时观察到脱氢酶活性都很高。但是,活性随着OLR的增加而增加。在1.589千克COD / m(3)天观察到更高的脱氢酶活性,这表示更高的氧化还原反应的可能性。在第12小时以53.58 mW / m(2)(0.195 kg COD / m(3)-day)和第24小时以60.29 mW / m(2)(0.458 kg COD / m(3)-天)和76.17 mW / m(2)(0.911 kg COD / m(3)-天)。在研究更高的OLR(1.589 kg COD / m(3)-天)时,在第12小时观察到最大发电量(49.86 mW / m(2)),表明性能下降。在MFC操作过程中观察到的电子放电和恢复特性在0.911 kg COD / m(3)-day时支持更高的性能。 OLR的增加表明底物降解得到改善[OLR1,56.32%(0.11 kg COD / m(3)-day); OLR2,56.42%(0.26 kg COD / m(3)-天); OLR3,59.53%(0.54 kg COD / m(3)-天); OLR4,64.40%(1.78 kg COD / m(3)-天)。

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