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4°C 下混合培养嗜冷微生物燃料电池中的发电和关键的异化电子传递菌。

Electricity production and key exoelectrogens in a mixed-culture psychrophilic microbial fuel cell at 4 °C.

机构信息

Center of Wastewater Resource Recovery, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou city, Fujian, 350002, China.

出版信息

Appl Microbiol Biotechnol. 2022 Jun;106(12):4801-4811. doi: 10.1007/s00253-022-12042-6. Epub 2022 Jun 27.

Abstract

The electricity production via psychrophilic microbial fuel cell (PMFC) for wastewater treatment in cold regions offers an alternative to avoid the unwanted methane dissolution of traditional anaerobic fermentation. But, it is seldom reported by mixed-culture, especially closed to 0 °C. Thus, a two-chamber mixed-culture PMFC at 4 °C was successfully operated in this study using acetate as an electron donor. The main results demonstrated a good performance of PMFC, including the maximum voltage of 513 mV at 1000 Ω, coulombic efficiency of 53%, and power density of 689 mW/m. The cyclic voltammetry curves of enriched biofilm showed a direct electron transfer pathway. These good performances of mixed-culture PMFC were due to the high psychrophilic activity of enriched biofilm, including exoelectrogens genera of Geobacter (6.1%), Enterococcus (17.5%), and Clostridium_sensu_stricto_12 (3.8%). Consequently, a mixed-culture PMFC provides a reasonable strategy to enrich exoelectrogens with high activity. For low-temperature regions, the mixed-culture PMFC involved biotechnologies shall benefit energy generation and valuable chemical production in the future. KEY POINTS: • PMFC showed a maximum voltage of around 513 mV under a resistance of 1000 Ω. • The coulombic efficiency was 53% and the max power density was 689 mW/m. • Geobacter, Enterococcus, and Clostridium_sensu_stricto_12 were key exoelectrogens.

摘要

在寒冷地区,利用嗜冷微生物燃料电池(PMFC)进行废水处理来发电,为避免传统厌氧发酵中甲烷的不必要溶解提供了一种替代方案。但是,很少有混合培养物的报道,尤其是在接近 0°C 的情况下。因此,本研究使用乙酸盐作为电子供体,成功地在 4°C 的两室混合培养 PMFC 中进行了操作。主要结果表明 PMFC 性能良好,包括在 1000 Ω 时最大电压为 513 mV,库仑效率为 53%,功率密度为 689 mW/m。富集生物膜的循环伏安曲线显示了直接电子转移途径。混合培养 PMFC 的这些良好性能归因于富集生物膜的高嗜冷活性,包括食外电子菌属的 Geobacter(6.1%)、肠球菌(17.5%)和严格梭菌属 12(3.8%)。因此,混合培养 PMFC 为富集具有高活性的食外电子菌提供了一种合理的策略。对于低温地区,涉及混合培养 PMFC 的生物技术将有助于未来的能源产生和有价值的化学物质生产。关键点:

  • PMFC 在 1000 Ω 的电阻下显示出约 513 mV 的最大电压。

  • 库仑效率为 53%,最大功率密度为 689 mW/m。

  • Geobacter、Enterococcus 和 Clostridium_sensu_stricto_12 是关键的食外电子菌。

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