Understanding CO2 containing non-equilibrium plasmas

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BIBLIOGRAPHY BIBLIOGRAPHY [55] G. Horvath, J. D. Skalny`, and N. J. Mason. FTIR study of decomposi- tion of carbon dioxide in dc corona discharges. J. Phys. D: Appl. Phys., 41(22):225207, 2008. [56] M.S.Bak,S.-K.Im,andM.Cappelli.Nanosecond-pulseddischargeplasma splitting of carbon dioxide. IEEE Trans. Plasma Sci., 43(4):1002–1007, 2015. [57] O. Taylan and H. Berberoglu. Dissociation of carbon dioxide using a mi- crohollow cathode discharge plasma reactor: effects of applied voltage, flow rate and concentration. Plasma Sources Sci. Technol., 24(1):015006, 2015. [58] A. Yamamoto, S. Mori, and M. Suzuki. Scale-up or numbering-up of a micro plasma reactor for the carbon dioxide decomposition. Thin solid films, 515(9):4296–4300, 2007. [59] S. Paulussen, B. Verheyde, X. Tu, C. De Bie, T. Martens, D. Petrovic, A. Bogaerts, and B. Sels. Conversion of carbon dioxide to value-added chemicals in atmospheric pressure dielectric barrier discharges. Plasma Sources Sci. Technol., 19(3):034015, 2010. [60] F. Brehmer, S. Welzel, M. C. M. van de Sanden, and R. Engeln. CO and byproduct formation during CO2 reduction in dielectric barrier discharges. J. Appl. Phys., 116(12):123303, 2014. [61] Q. Yu, M. Kong, T. Liu, J. Fei, and X. Zheng. Characteristics of the decom- position of CO2 in a dielectric packed-bed plasma reactor. Plasma Chem. Plasma Process., 32(1):153–163, 2012. [62] R. Aerts, W. Somers, and A. Bogaerts. Carbon Dioxide splitting in a dielec- tric barrier discharge plasma: A combined experimental and computational study. ChemSusChem, 2015. [63] R.Aerts,T.Martens,andA.Bogaerts.InfluenceofvibrationalstatesonCO2 splitting by dielectric barrier discharges. J. Phys. Chem. C, 116(44):23257– 23273, 2012. [64] T. Kozák and A. Bogaerts. Splitting of CO2 by vibrational excitation in non-equilibrium plasmas: a reaction kinetics model. Plasma Sources Sci. Technol., 23(4):045004, 2014. 155

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