Farhangi Sara, Ebrahimi Sirous, Niasar Mojtaba Shariati
Faculty of Chemical Engineering, Tehran University, Tehran, Iran.
Biotechnol Lett. 2014 Oct;36(10):1987-92. doi: 10.1007/s10529-014-1565-7. Epub 2014 Jun 15.
The use of commercial electrodes as cathodes in a single-chamber microbial electrolysis cell has been investigated. The cell was operated in sequencing batch mode and the performance of the electrodes was compared with carbon cloth containing 0.5 mg Pt cm(-2). Overall H2 recovery [Formula: see text] was 66.7 ± 1.4, 58.7 ± 1.1 and 55.5 ± 1.5 % for Pt/CC, Ni and Ti mesh electrodes, respectively. Columbic efficiencies of the three cathodes were in the same range (74.8 ± 1.5, 77.6 ± 1.7 and 75.7 ± 1.2 % for Pt/CC, Ni and Ti mesh electrodes, respectively). A similar performance for the three cathodes under near-neutral pH and ambient temperature was obtained. The commercial electrodes are much cheaper than carbon cloth containing Pt. Low cost and good performance of these electrodes suggest they are suitable cathode materials for large scale application.
对商业电极作为单室微生物电解池阴极的应用进行了研究。该电解池采用序批式运行,并将电极性能与含0.5 mg Pt cm(-2)的碳布进行了比较。对于铂/碳布、镍网和钛网电极,总的氢气回收率[公式:见原文]分别为66.7±1.4%、58.7±1.1%和55.5±1.5%。三种阴极的库仑效率处于相同范围(铂/碳布、镍网和钛网电极的库仑效率分别为74.8±1.5%、77.6±1.7%和75.7±1.2%)。在近中性pH值和环境温度下,三种阴极表现出相似的性能。商业电极比含铂的碳布便宜得多。这些电极成本低且性能良好,表明它们是大规模应用的合适阴极材料。