MOE Key Laboratory of Pollution Processes and Environmental Criteria/Tianjin Key Laboratory of Environmental Remediation and Pollution Control, College of Environmental Science and Engineering, Nankai University, Tianjin 300350, China.
Int J Environ Res Public Health. 2022 Sep 15;19(18):11609. doi: 10.3390/ijerph191811609.
Microbial electrochemical systems (MESs) can harvest bioelectricity from varieties of organic matter in wastewater through electroactive microorganisms. Oxygen reduction reaction (ORR) in a cathode plays an important role in guaranteeing high power generation, which can be enhanced by cathode catalysts. Herein, the tiny crystalline grain nanocrystal NiCoO is prepared via the economic method and utilized as an effective catalyst in air-cathode MESs. The linear sweep voltammetry results indicate that the current density of 2% nano-NiCoO/AC cathode (5.05 A/m) at 0 V increases by 20% compared to the control (4.21 A/m). The cyclic voltammetries (CVs) and the electrochemical impedance spectroscopy (EIS) showed that the addition of nano-NiCoO (2%) is efficient in boosting the redox activity. The polarization curves showed that the MESs with 2% nano-NiCoO/AC achieved the highest maximum power density (1661 ± 28 mW/m), which was 1.11 and 1.22 times as much as that of AC and 5% nano-NiCoO. Moreover, the adulteration of nano-NiCoO with a content of 2% can not only enable the electrical activity of the electrode to be more stable, but also reduce the cost for the same power generation in MESs. The synthetic nano-NiCoO undoubtedly has great benefits for large-scale MESs in wastewater treatment.
微生物电化学系统(MESs)可以通过电活性微生物从废水中的各种有机物中收获生物电能。阴极中的氧还原反应(ORR)对于保证高发电功率起着重要作用,阴极催化剂可以增强该反应。在此,通过经济的方法制备了微小结晶晶粒纳米晶 NiCoO,并将其用作空气阴极 MESs 中的有效催化剂。线性扫描伏安法结果表明,与对照(4.21 A/m)相比,在 0 V 时,2%纳米 NiCoO/AC 阴极的电流密度(5.05 A/m)增加了 20%。循环伏安法(CVs)和电化学阻抗谱(EIS)表明,添加纳米 NiCoO(2%)有效地提高了氧化还原活性。极化曲线表明,2%纳米 NiCoO/AC 的 MESs 达到了最高的最大功率密度(1661 ± 28 mW/m),是 AC 和 5%纳米 NiCoO 的 1.11 倍和 1.22 倍。此外,掺杂 2%纳米 NiCoO 不仅可以使电极的电活性更加稳定,而且可以降低 MESs 相同发电功率的成本。合成纳米 NiCoO 无疑对废水处理中的大规模 MESs 具有巨大的益处。