Department of Chemical Engineering, National Tsing Hua University, Hsinchu 30013, Taiwan, ROC.
Environ Sci Technol. 2012 Feb 21;46(4):2324-9. doi: 10.1021/es2033058. Epub 2012 Feb 8.
The high fuel efficiency of lean-burn engines is associated with high temperature and excess oxygen during combustion and thus is associated with high-concentration NO(x) emission. This work reveals that very high concentration of NO(x) in the exhaust can be reduced and hydrocarbons (HCs) can be simultaneously oxidized using a low-temperature solid oxide fuel cell (SOFC). An SOFC unit is constructed with Ni-YSZ as the anode, YSZ as the electrolyte, and La(0.6)Sr(0.4)CoO(3) (LSC)-Ce(0.9)Gd(0.1)O(1.95) as the cathode, with or without adding vanadium to LSC. SOFC operation at 450 °C and open circuit can effectively treat NO(x) over the cathode at a very high concentration in the simulated exhaust. Higher NO(x) concentration up to 5000 ppm can result in a larger NO(x) to N(2) rate. Moreover, a higher oxygen concentration promotes NO conversion. Complete oxidation of HCs can be achieved by adding silver to the LSC current collecting layer. The SOFC-based emissions control system can treat NO(x) and HCs simultaneously, and can be operated without consuming the anode fuel (a reductant) at near the engine exhaust temperature to eliminate the need for reductant refilling and extra heating.
贫燃发动机的高燃料效率与燃烧过程中的高温和过量氧气有关,因此与高浓度氮氧化物 (NOx) 排放有关。这项工作表明,使用低温固体氧化物燃料电池 (SOFC) 可以降低废气中非常高浓度的 NOx,并同时氧化碳氢化合物 (HCs)。SOFC 单元由 Ni-YSZ 作为阳极、YSZ 作为电解质、La(0.6)Sr(0.4)CoO(3) (LSC)-Ce(0.9)Gd(0.1)O(1.95) 作为阴极构成,阴极中添加或不添加钒。在 450°C 和开路条件下运行的 SOFC 可以有效地在模拟废气中非常高浓度的阴极上处理 NOx。高达 5000 ppm 的更高 NOx 浓度会导致更大的 NOx 到 N2 速率。此外,更高的氧气浓度会促进 NO 转化。在 LSC 集流层中添加银可以实现 HCs 的完全氧化。基于 SOFC 的排放控制系统可以同时处理 NOx 和 HCs,并且可以在接近发动机废气温度的情况下运行,而无需消耗阳极燃料(还原剂),从而消除了还原剂补充和额外加热的需要。