Zou Peimiao, Chen Shigang, Lan Rong, Tao Shanwen
School of Engineering, University of Warwick, Coventry, CV4 7AL, UK.
Faculty of Engineering, Environment & Computing, Coventry University, Coventry, CV1 5FB, UK.
ChemSusChem. 2019 Jun 21;12(12):2788-2794. doi: 10.1002/cssc.201900451. Epub 2019 May 22.
Single-phase perovskite oxide SrCo Cu Nb O was synthesized using a Pechini method. X-ray diffraction (XRD) analysis indicated a cubic structure with a=3.8806(7) Å. The oxide material was combined with active carbon, forming a composite electrode to be used as the cathode in a room temperature ammonia fuel cell based on an anion membrane electrolyte and NiCu/C anode. An open circuit voltage (OCV) of 0.19 V was observed with dilute 0.02 m (340 ppm) ammonia solution as the fuel. The power density and OCV were improved upon the addition of 1 m NaOH to the fuel, suggesting that the addition of NaOH, which could be achieved through the introduction of alkaline waste to the fuel stream, could improve performance when wastewater is used as the fuel. It was found that the SrCo Cu Nb O cathode was converted from irregular shape into shuttle-shape during the fuel cell measurements. As the key catalysts for electrode materials for this fuel cell are all inexpensive, after further development, this could be a promising technology for removal of ammonia from wastewater.
采用佩琴尼法合成了单相钙钛矿氧化物SrCoCuNbO。X射线衍射(XRD)分析表明其为立方结构,晶格常数a = 3.8806(7) Å。该氧化物材料与活性炭复合,形成复合电极,用作基于阴离子膜电解质和NiCu/C阳极的室温氨燃料电池的阴极。以稀0.02 m(340 ppm)氨溶液为燃料时,开路电压(OCV)为0.19 V。向燃料中添加1 m NaOH后,功率密度和OCV均有所提高,这表明通过向燃料流中引入碱性废物来添加NaOH,在使用废水作为燃料时可以提高性能。研究发现,在燃料电池测量过程中,SrCoCuNbO阴极由不规则形状转变为梭形。由于该燃料电池电极材料的关键催化剂均价格低廉,经过进一步开发,这可能是一种从废水中去除氨的有前景的技术。