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The membraneless bioelectrochemical reactor stimulates hydrogen fermentation by inhibiting methanogenic archaea

机译:无膜生物电化学反应器通过抑制产甲烷古菌刺激氢发酵

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The membraneless bioelectrochemical reactor (Ml-BER) is useful for dark hydrogen fermentation. The effect of the electrochemical reaction on microorganisms in the Ml-BER was investigated using glucose as the substrate and compared with organisms in a membraneless non-bioelectrochemical reactor (Ml-NBER) and bioelectrochemical reactor (BER) with a proton exchange membrane. The potentials on the working electrode of the Ml-BER and BER with membrane were regulated to -0.9 V (versus Ag/AgCl) to avoid water electrolysis with a carbon electrode. The Ml-BER showed suppressed methane production (19.8 ± 9.1 mg-C·L~(-1)·day~(-1)) and increased hydrogen production (12.6 ± 3.1 mg-H·L~(-1)·day ~(-1)) at pH_(out) 6.2 ± 0.1, and the major intermediate was butyrate (24.9 ± 2.4 mM), suggesting efficient hydrogen fermentation. In contrast, the Ml-NBER showed high methane production (239.3 ± 17.9 mg-C·L~(-1)·day~(-1)) and low hydrogen production (0.2 ± 0.0 mg-H·L~(-1)·day~(-1)) at pH _(out) 6.3 ± 0.1. In the cathodic chamber of the BER with membrane, methane production was high (276.3 ± 20.4 mg-C·L -1·day~(-1)) (pH_(out), 7.2 ± 0.1). In the anodic chamber of the BER with membrane (anode-BER), gas production was low because of high lactate production (43.6 ± 1.7 mM) at pH_(out) 5.0 ± 0.1. Methanogenic archaea were not detected in the Ml-BER and anode-BER. However, Methanosarcina sp. and Methanobacterium sp. were found in Ml-NBER. Prokaryotic copy numbers in the Ml-BER and Ml-NBER were similar, as were the bacterial community structures. Thus, the electrochemical reaction in the Ml-BER affected hydrogenotrophic and acetoclastic methanogens, but not the bacterial community.
机译:无膜生物电化学反应器(M1-BER)可用于暗氢发酵。使用葡萄糖作为底物研究了电化学反应对M1-BER中微生物的影响,并与无膜非生物电化学反应器(M1-NBER)和带有质子交换膜的生物电化学反应器(BER)中的生物进行了比较。 M1-BER和带有膜的BER的工作电极上的电势调节到-0.9 V(相对于Ag / AgCl),以避免水被碳电极电解。 Ml-BER显示出抑制的甲烷产生(19.8±9.1 mg-C·L〜(-1)·天〜(-1))和增加的氢气产生(12.6±3.1 mg-H·L〜(-1)·天〜(-1))在pH_(out)6.2±0.1时,主要中间体为丁酸酯(24.9±2.4 mM),表明有效的氢发酵。相比之下,Ml-NBER甲烷产量高(239.3±17.9 mg-C·L〜(-1)·天〜(-1)),氢气产量低(0.2±0.0 mg-H·L〜(-1) )·day〜(-1))在pH _(out)6.3±0.1。在带有膜的BER阴极室中,甲烷生成量很高(276.3±20.4 mg-C·L -1·day〜(-1))(pH_(out),7.2±0.1)。在带有膜的BER阳极室(阳极BER)中,由于pH_(out)5.0±0.1时乳酸产量高(43.6±1.7 mM),产气量低。在ML-BER和阳极-BER中未检测到产甲烷古菌。然而,Methanosarcina sp。和甲烷杆菌在Ml-NBER中被发现。 M1-BER和M1-NBER中的原核拷贝数相似,细菌群落结构也相似。因此,M1-BER中的电化学反应影响氢营养性和乙酰碎裂性产甲烷菌,但不影响细菌群落。

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