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Improvement of Microbial Electrolysis Cell Activity by Using Anode Based on Combined Plasma-Pretreated Carbon Cloth and Stainless Steel

机译:基于组合等离子体预处理碳布和不锈钢的阳极改善微生物电解细胞活性

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摘要

The anode activity in a microbial electrolysis cell (MEC) is known to be a limiting factor in hydrogen production. In this study, the MEC was constructed using different anode materials and a platinum-coated carbon-cloth cathode (CC). The anodes were comprised of CC, stainless steel (SS), and a combination of the two (COMB). The CC and SS anodes were also treated with plasma to improve their surface morphology and hydrophilic properties (CCP and SSP, respectively). A combined version of CCP attached to SS was also applied (COMBP). After construction of the MEC using the different anodes, we conducted electrochemical measurements and examination of biofilm viability. Under an applied voltage of 0.6 V (Ag/AgCl), the currents of a MEC based on CCP and COMBP were 11.66 ± 0.1331 and 16.36 ± 0.3172 A m−2, respectively, which are about three times higher compared to the untreated CC and COMB. A MEC utilizing an untreated SS anode exhibited current of only 0.3712 ± 0.0108 A m−2. The highest biofilm viability of 0.92 OD540 ± 0.07 and hydrogen production rate of 0.0736 ± 0.0022 m3 d−1 m−2 at 0.8 V were obtained in MECs based on the COMBP anode. To our knowledge, this is the first study that evaluated the effect of plasma-treated anodes and the use of a combined anode composed of SS and CC for hydrogen evolution in a MEC.
机译:已知微生物电解细胞(MEC)中的阳极活性是氢气产生的限制因素。在该研究中,使用不同的阳极材料和铂涂覆的碳布阴极(CC)构建MEC。阳极由Cc,不锈钢(SS)和两种(梳子)组成。 CC和SS阳极也用等离子体处理,以改善它们的表面形态和亲水性(CCP和SSP)。还应用了附加到SS的CCP的组合版本(COMBP)。在使用不同的阳极施工MEC之后,我们进行了电化学测量和对生物膜活力的检查。在0.6V(Ag / AgCl)的施加电压下,基于CCP和COMBP的MEC的电流分别为11.66±0.1331和16.36±0.3172A M-2,与未处理的CC相比,比未处理的CC更高三倍。梳子。利用未处理的SS阳极的MEC表现出仅0.3712±0.0108A M-2的电流。在基于COMBP阳极的MEC中,在MEC中获得了0.92 OD540±0.07和0.0736±0.0022M3d-1M-2的最高生物膜活力。据我们所知,这是评估血浆处理阳极的效果和使用由SS和CC组成的血浆和CC的组合阳极在MEC中的氢气进化的研究。

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