[1] J. Adanez, A. Abad, F. Garcia-Labiano, P. Gayan, F. Luis, Progress in chemicallooping combustion and reforming technologies, Prog. Energ. Combust. 38(2) (2012) 215-282. [2] A. Lyngfelt, Chemical-looping combustion of solid fuels-status of development, Appl. Energ. 113(2014) 1869-1873. [3] J. Adanez, A. Abad, T. Mendiara, P. Gayán, L.F. De Diego, F. García-Labiano, Chemical looping combustion of solid fuels, Prog. Energ. Combust. 65(2018) 6-66. [4] T. Mendiara, FGarcía-Labiano, A. Abad, P. Gayán, L. F. De Diego, M. T. Izquierdo, Negative CO2 emissions through the use of biofuels in chemical looping technology:A review, Appl. Energ. 232(2018) 657-684. [5] T. Mattisson, A. Lyngfelt, H. Leion, Chemical-looping with oxygen uncoupling for combustion of solid fuels, Int. J. Greenh. Gas Con. 3(1) (2009) 11-19. [6] J. Dai, K.J. Whitty, Predicting and alleviating coal ash-induced deactivation of CuO as an oxygen carrier for chemical looping with oxygen uncoupling, Fuel 241(2019) 1214-1222. [7] S. Sundqvist, N. Khalilian, H. Leion, T. Mattisson, A. Lyngfelt, Manganese ores as oxygen carriers for chemical-looping combustion (CLC) and chemical-looping with oxygen uncoupling (CLOU), J. Environ. Chem. Eng. 5(3) (2017) 2552-2563. [8] K.M. Merrett, K.J. Whitty, Conversion of coal in a fluidized bed chemical looping combustion reactor with and without oxygen uncoupling, Energy fuels 33(2) (2019) 1547-1555. [9] M. Rydén, H. Leion, T. Mattisson, A. Lyngfelt, Combined oxides as oxygencarrier material for chemical-looping with oxygen uncoupling, Appl. Energ. 113(2014) 1924-1932. [10] R. Ruhl, J. Song, V. Thoreton, S.P. Singh, K. Wiik, Y. Larring, H.J. Bouwmeester, Structure, electrical conductivity and oxygen transport properties of perovskite-type oxides CaMn1-x-yTixFeyO3-δ, Phys. Chem. Chem. Phys. 21(39) (2019) 21824-21835. [11] D. Zeng, Y. Qiu, S. Peng, C. Chen, J. Zeng, S. Zhang, R. Xiao, Enhanced hydrogen production performance through controllable redox exsolution within CoFeAlOx spinel oxygen carrier materials, J. Mater. Chem. A 6(24) (2018) 11306-11316. [12] D. Zeng, R. Xiao, Z. Huang, J. Zeng, H. Zhang, Continuous hydrogen production from non-aqueous phase bio-oil via chemical looping redox cycles, Int. J. Hydrog. Energy 41(16) (2016) 6676-6684. [13] W. Hu, F. Donat, S.A. Scott, J.S. Dennis, Kinetics of oxygen uncoupling of a copper based oxygen carrier, Appl. Energy 161(2016) 92-100. [14] C. Chung, L. Qin, V. Shah, L.S. Fan, Chemically and physically robust, commercially-viable iron-based composite oxygen carriers sustainable over 3000 redox cycles at high temperatures for chemical looping applications, Energ. Environ. Sci. 10(11) (2017) 2318-2323. [15] B. Stanmore, P. Gilot, G. Prado, The influence of mass transfer in DTG combustion tests, Thermochim. Acta 240(1994) 79-89. [16] T. Song, L. Shen, Review of reactor for chemical looping combustion of solid fuels, Int. J. Greenh. Gas Con. 76(2018) 92-110. [17] S.Y. Chuang, J.S. Dennis, A.N. Hayhurst, S.A. Scott, Kinetics of the chemical looping oxidation of H2 by a co-precipitated mixture of CuO and Al2O3, Chem. Eng. Res. Des. 89(9) (2011) 1511-1523. [18] S.Y. Chuang, J.S. Dennis, A.N. Hayhurst, S.A. Scott, Kinetics of the oxidation of a Co-precipitated mixture of Cu and Al2O3 by O2 for chemical-looping combustion, Energy Fuels 24(2010) 3917-3927. [19] L. Liu, Z. Li, L. Wang, Z. Zhao, Y. Li, N. Cai, MgO-kaolin-supported manganese ores as oxygen carriers for chemical looping combustion, Ind. Eng. Chem. Res. 59(2020) 7238-7246. [20] P. Wang, N. Means, D. Shekhawat, D. Berry, M. Massoudi, Chemical-looping combustion and gasification of coals and oxygen carrier development:A brief review, Energies 8(10) (2015) 10605-10635. [21] H. Leion, Y. Larring, E. Bakken, R. Bredesen, T. Mattisson, A. Lyngfelt, Use of CaMn0.875Ti0.125O3 as oxygen carrier in chemical looping with oxygen uncoupling, Energy Fuels 23(2009) 5276-5283. [22] Y. Li, Z. Li, L. Liu, N. Cai, Measuring the fast oxidation kinetics of a manganese oxygen carrier using microfluidized bed thermogravimetric analysis, Chem. Eng. J. 385(2020) 123970. [23] Y. Li, H. Wang, W. Li, Z. Li, N. Cai, CO2 gasification of a lignite char in microfluidized bed thermogravimetric analysis for chemical looping combustion and chemical looping with oxygen uncoupling, Energy Fuels 33(1) (2018) 449-459. [24] L. Liu, Z. Li, W. Li, N. Cai, The melting characteristics of Vietnamese ilmenite and manganese ores used in chemical looping combustion, Int. J. Greenh. Gas Con. 90(2019) 102792. |