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接种希瓦氏菌属 oneidensis MR-1 或混合培养物的 MFCs 的产电功率。

Power production in MFCs inoculated with Shewanella oneidensis MR-1 or mixed cultures.

机构信息

Department of Civil and Environmental Engineering, Pennsylvania State University, University Park, 16802, USA.

出版信息

Biotechnol Bioeng. 2010 Feb 15;105(3):489-98. doi: 10.1002/bit.22556.

Abstract

Power densities and oxidation-reduction potentials (ORPs) of MFCs containing a pure culture of Shewanella oneidensis MR-1 were compared to mixed cultures (wastewater inoculum) in cube shaped, 1-, 2-, and 3-bottle batch-fed MFC reactor configurations. The reactor architecture influenced the relative power produced by the different inocula, with the mixed culture generating 68-480% more power than MR-1 in each MFC configuration. The mixed culture produced the maximum power density of 858 +/- 9 mW m(-2) in the cubic MFC, while MR-1 produced 148 +/- 20 mW m(-2). The higher power by the mixed culture was primarily a result of lower internal resistances than those produced by the pure culture. Power was a direct function of ohmic resistance for the mixed culture, but not for strain MR-1. ORP of the anode compartment varied with reactor configuration and inoculum, and it was always negative during maximum power production but it did not vary in proportion to power output. The ORP varied primarily at the end of the cycle when substrate was depleted, with a change from a reductive environment during maximum power production (approximately -175 mV for mixed and approximately -210 mV for MR-1 in cubic MFCs), to an oxidative environment at the end of the batch cycle ( approximately 250 mV for mixed and approximately 300 mV for MR-1). Mixed cultures produced more power than MR-1 MFCs even though their redox potential was less negative. These results demonstrate that differences between power densities produced by pure and mixed cultures depend on the MFC architecture.

摘要

比较了含有纯培养希瓦氏菌(Shewanella oneidensis MR-1)的单室、1 瓶、2 瓶和 3 瓶分批进料微生物燃料电池(MFC)中功率密度和氧化还原电位(ORP),与混合培养物(废水接种物)。反应器结构影响不同接种物产生的相对功率,混合培养物在每种 MFC 构型中产生的功率比 MR-1 高 68-480%。混合培养物在立方 MFC 中产生的最大功率密度为 858 ± 9 mW m(-2),而 MR-1 产生的最大功率密度为 148 ± 20 mW m(-2)。混合培养物产生的更高功率主要是由于其内阻低于纯培养物。混合培养物的功率是欧姆电阻的直接函数,但对菌株 MR-1 则不是。阳极室的 ORP 随反应器构型和接种物而变化,在最大功率产生时总是为负,但与功率输出不成比例。ORP 主要在基质耗尽时的周期结束时变化,从最大功率生产时的还原环境(混合 MFC 中约为-175 mV,MR-1 中约为-210 mV)变为批处理周期结束时的氧化环境(混合 MFC 中约为 250 mV,MR-1 中约为 300 mV)。混合培养物产生的功率比 MR-1 MFC 多,尽管它们的氧化还原电位不那么负。这些结果表明,纯培养物和混合培养物产生的功率密度之间的差异取决于 MFC 结构。

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