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Performance of Microbial Fuel Cells with Dairy Manure as the Substrate and Combined with Anaerobic Digestion

机译:以牛粪为基质并结合厌氧消化的微生物燃料电池的性能

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Microbial fuel cells (MFCs) may offer an opportunity to gain value from dairy manures through direct electrical generation. The MFCs in this study (internal resistance = 1090 ±84 Q) were operated at 20°C with raw manure concentrations of 0 to 100,000 mg COD (chemical oxygen demand) L~(-1), generating a maximum power density of 138 ±19 mW m~(-2)(at 100 g COD L~(-1)). Total coulombs (C) captured over four days increased from 18.8 ±1.3 C to 40.5 ±2.4 C (coulombic efficiencies of 3.4% ±1.2% and 5.8% ±1.4%, respectively) when the incubation temperature was raised from 20°C to 37°C but fell to less than 1.42 C at 55°C, indicating that the electro-chemically active bacteria established at 20°C were inhibited or killed at thermophilic temperatures. Operating an MFC before anaerobic digestion (AD) had a statistically insignificant impact on the total volume of biogas produced after 45 days (37°C). Although prior MFC operation decreased the maximum rate of biogas production by 55% (from 0.145 ±0.0256 to 0.062 ±0.0018 ml biogas ml~(-1) reactor d1), the timing of biogas production was actually earlier following MFC pretreatment, suggesting that electricity harvesting with MFCs may have an additional benefit of decreased AD reactor retention timerequired for biogas production. Reversing the order of the unit operations, prior AD decreased MFC performance, with a 65% decrease in the total coulombs captured (from 18.1 ±8.84 to 5.62 ±1.44).
机译:微生物燃料电池(MFCs)可能提供通过直接发电从奶牛粪便中获得价值的机会。本研究中的MFC(内阻= 1090±84 Q)在20°C下操作,原始粪肥浓度为0至100,000 mg COD(化学需氧量)L〜(-1),产生的最大功率密度为138± 19 mW m〜(-2)(在100 g COD L〜(-1)下)。当孵育温度从20°C升高到37°C时,四天捕获的总库仑(C)从18.8±1.3 C增加到40.5±2.4 C(库仑效率分别为3.4%±1.2%和5.8%±1.4%)。 ℃,但在55℃时降至低于1.42℃,这表明在20℃建立的电化学活性细菌在嗜热温度下被抑制或杀死。在厌氧消化(AD)之前操作MFC对45天(37°C)后产生的沼气总量没有统计学意义的影响。尽管之前的MFC操作使最大沼气产生率降低了55%(从0.145±0.0256降至0.062±0.0018 ml沼气ml〜(-1)反应器d1),但沼气生产的时间实际上是在MFC预处理之后更早的,这表明电使用MFC进行收割可能还具有减少沼气生产所需的AD反应器保留时间减少的额外好处。颠倒单元操作的顺序,先前的AD降低了MFC性能,捕获的库仑总数降低了65%(从18.1±8.84降至5.62±1.44)。

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