2017 Annual Meeting
(156e) Solar Thermochemical CO2-Splitting Using Redox Cycles of Cr-Doped Mn-Based Perovskites
Consequently, in this work we explore La0.6Sr0.4CrxMn1-xO3 perovskite compositions due to favorable thermodynamics of Cr- and Mn-based perovskites for CO2 splitting in accordance to recent thermodynamic models.4,5,6,7 La0.6Sr0.4CrxMn1-xO3 perovskite powders were synthesized through a modified Pechini method covering a compositional range of chromium from x=0 to 1. Although O2 release decreased with increasing addition of Cr, results showed that La0.6Sr0.4Cr0.85Mn0.15O3 outperformed CeO2 and La0.6Sr0.4MnO3 under isothermal redox cycling operation. Namely, La0.6Sr0.4Cr0.85Mn0.15O3 yields 350 µmol/g, whereas La0.6Sr0.4MnO3 250 µmol/g for 1400 ºC and pCO2=0.5 atm. Conversely, it was observed that Cr-rich perovskites performed poorer than La0.6Sr0.4MnO3 under temperature-swing operation.
These results illustrate the beneficial influence of Cr-doping on the fuel production for isothermal operation, confirming trends obtained from thermodynamic modeling by Bork et al..7 Furthermore, results corroborated the high operational flexibility that easy-tunable perovskite materials offer. Accordingly, proper materials design based on thermodynamic models and further experimental confirmation are crucial for determining the most efficient compositions at given working conditions.
1. Muhich, C. L., Ehrhart, B. D., Al-Shankiti, I., Ward, B. J., Musgrave, C. B., & Weimer, A. W. Wiley Interdisciplinary Reviews: Energy and Environment, 5(3), 261â287. (2016).
2. Kubicek, M., Bork, A. H.& Rupp, J. L. M. J. Mater. Chem. A, in review (2017).
3. McDaniel, A. H., Miller, E. C., Arifin, D., Ambrosini, A., Coker, E. N., OâHayre, R.,et al. Energy & Environmental Science, 6(8), 2424. (2013).
4. Yang, C.-K., Yamazaki, Y., Aydin, A., & Haile, S. M. Journal of Materials Chemistry A., 2, 13612â13623. (2014)
5. Bork, A. H., Kubicek, M., Struzik, M. & Rupp, J. L. M. J. Mater. Chem. A3, 15546â15557 (2015).
6. Bork, A. H., Povoden-Karadeniz, E. & Rupp, J. L. M. Adv. Energy Mater.7, 1601086 (2017).
7. Bork, A. H., Povoden-Karadeniz, E. & Rupp, J. L. M. to be submitted.