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在碱性条件下抑制产甲烷作用的单室微生物电解池中提高氢气产量。

Improved hydrogen production in the single-chamber microbial electrolysis cell with inhibition of methanogenesis under alkaline conditions.

作者信息

Cui Wanjun, Liu Guangli, Zeng Cuiping, Lu Yaobin, Luo Haiping, Zhang Renduo

机构信息

Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology, School of Environmental Science and Engineering, Sun Yat-sen University Guangzhou 510006 China

出版信息

RSC Adv. 2019 Sep 24;9(52):30207-30215. doi: 10.1039/c9ra05483a. eCollection 2019 Sep 23.

Abstract

The aim of this study was to investigate hydrogen production enhanced by methanogenesis inhibition in the single-chamber microbial electrolysis cell (MEC) under alkaline conditions. With 50 mM bicarbonate buffer and 1 g L acetate, the MEC was tested at pH = 8.5, 9.5, 10.5, and 11.2, respectively, within 124 d operation. Effective methanogenesis inhibition in the MEC increased with pH from 8.5 to 11.2. At pH 11.2, Methanobacteriaceae reached the lowest absolute quantity (, biomass and gene copy number of methanogens) within the microbial community in the cathodic biofilm among the pH values. Under the alkaline conditions, a hydrogen percentage of 85-90% and a methane percentage < 15% were achieved within 25 cycles (50 d) of operation. The maximum current density in the MEC reached 83.7 ± 1.5 A m with the average electrical recovery of 171 ± 18% and overall energy recovery of 72 ± 3%. The excellent performance of the MEC at pH = 11.2 was attributed to the low abundance of methanogens within the cathodic biofilm (2.23 ± 0.46 copy per cm), low cathodic biomass (0.12 ± 0.01 mg protein per g), and low anode potential (-0.228 mV saturated calomel electrode). Results from this study should be valuable to expand applications of the MEC with methanogenesis inhibition in alkaline wastewater treatment.

摘要

本研究的目的是调查在碱性条件下,单室微生物电解池(MEC)中通过抑制产甲烷作用来提高氢气产量的情况。使用50 mM碳酸氢盐缓冲液和1 g/L乙酸盐,在124天的运行过程中,分别在pH = 8.5、9.5、10.5和11.2的条件下对MEC进行测试。MEC中产甲烷作用的有效抑制随着pH从8.5升高到11.2而增强。在pH 11.2时,甲烷杆菌科在阴极生物膜中的微生物群落内达到了最低的绝对数量(产甲烷菌的生物量和基因拷贝数)。在碱性条件下,运行25个周期(50天)内实现了85-90%的氢气百分比和<15%的甲烷百分比。MEC中的最大电流密度达到83.7±1.5 A/m²,平均电回收率为171±18%,总能量回收率为72±3%。MEC在pH = 11.2时的优异性能归因于阴极生物膜中产甲烷菌的低丰度(每平方厘米2.23±0.46个拷贝)、低阴极生物量(每克0.12±0.01毫克蛋白质)和低阳极电位(相对于饱和甘汞电极-0.228 mV)。本研究结果对于扩大在碱性废水处理中具有产甲烷抑制作用的MEC的应用应该具有重要价值。

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