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[해외논문] Enhanced Morphological Preservation and Redox Activity in Al-Incorporated NiFe2O4 for Chemical Looping Hydrogen Production

ACS sustainable chemistry et engineering, v.9 no.44, 2021년, pp.14800 - 14810  

Kim, Yikyeom (Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) ,  Lim, Hyun Suk (Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) ,  Lee, Minbeom (Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) ,  Kim, Minkyu (School of Chemical Engineering , Yeungnam University , 280 Daehak-Ro , Gyeongsan 38541 , Republic of Korea) ,  Kang, Dohyung (School of Chemical Engineering , Yeungnam University , 280 Daehak-Ro , Gyeongsan 38541 , Republic of Korea) ,  Lee, Jae W.

Abstract AI-Helper 아이콘AI-Helper

Although chemical looping technology has enabled energy-efficient H2 production by combining separation and reaction through the lattice oxygen in oxygen storage materials (OSMs), metal oxides undergoing successive reduction-oxidation cycles generally suffer from a decline in long-term performance. ...

Keyword

참고문헌 (43)

  1. Lee, Wonhyeong, Kang, Dong Woo, Ahn, Yun-Ho, Lee, Jae W.. Rapid Formation of Hydrogen-Enriched Hydrocarbon Gas Hydrates under Static Conditions. ACS sustainable chemistry et engineering, vol.9, no.25, 8414-8424.

  2. Majumdar, Arun, Deutch, John M., Prasher, Ravi S., Griffin, Thomas P.. A framework for a hydrogen economy. Joule, vol.5, no.8, 1905-1908.

  3. Kang, Dohyung, Lim, Hyun Suk, Lee, Jae W.. Mesoporous Fe2O3-CeO2-Al2O3 Oxygen Carrier for Chemical Looping Dry Reforming with Subsequent Water Splitting. Industrial & engineering chemistry research, vol.59, no.36, 15912-15920.

  4. Metcalfe, Ian S., Ray, Brian, Dejoie, Catherine, Hu, Wenting, de Leeuwe, Christopher, Dueso, Cristina, García-García, Francisco R., Mak, Cheuk-Man, Papaioannou, Evangelos I., Thompson, Claire R., Evans, John S. O.. Overcoming chemical equilibrium limitations using a thermodynamically reversible chemical reactor. Nature chemistry, vol.11, no.7, 638-643.

  5. Kuo, Y.L., Hsu, W.M., Chiu, P.C., Tseng, Y.H., Ku, Y.. Assessment of redox behavior of nickel ferrite as oxygen carriers for chemical looping process. Ceramics international, vol.39, no.5, 5459-5465.

  6. Kim, Yikyeom, Lim, Hyun Suk, Lee, Minbeom, Lee, Jae W.. Ni-Fe-Al mixed oxide for combined dry reforming and decomposition of methane with CO2 utilization. Catalysis today, vol.368, 86-95.

  7. Lee, Minbeom, Lim, Hyun Suk, Kim, Yikyeom, Lee, Jae W.. Enhancement of highly-concentrated hydrogen productivity in chemical looping steam methane reforming using Fe-substituted LaCoO3. Energy conversion and management, vol.207, 112507-.

  8. Qin, Lang, Majumder, Ankita, Fan, Jonathan A., Kopechek, David, Fan, Liang-Shih. Evolution of nanoscale morphology in single and binary metal oxide microparticles during reduction and oxidation processes. Journal of materials chemistry. A, Materials for energy and sustainability, vol.2, no.41, 17511-17520.

  9. Cloete, Schalk, Gallucci, Fausto, van Sint Annaland, Martin, Amini, Shahriar. Gas Switching as a Practical Alternative for Scaleup of Chemical Looping Combustion. Energy technology : generation, conversion, storage, distribution, vol.4, no.10, 1286-1298.

  10. Cho, Won Chul, Kim, Cho Gyun, Jeong, Seong Uk, Park, Chu Sik, Kang, Kyoung Soo, Lee, Do Yeon, Kim, Sang Done. Activation and Reactivity of Iron Oxides as Oxygen Carriers for Hydrogen Production by Chemical Looping. Industrial & engineering chemistry research, vol.54, no.12, 3091-3100.

  11. Wilke, Stephen K., Dunand, David C.. In operando tomography reveals degradation mechanisms in lamellar iron foams during redox cycling at 800 °C. Journal of power sources, vol.448, 227463-.

  12. Liu, Shuai, He, Fang, Huang, Zhen, Zheng, Anqing, Feng, Yipeng, Shen, Yang, li, Haibin, Wu, Hao, Glarborg, Peter. Screening of NiFe2O4 Nanoparticles as Oxygen Carrier in Chemical Looping Hydrogen Production. Energy & fuels : an American Chemical Society journal, vol.30, no.5, 4251-4262.

  13. Bohn, C. D., Cleeton, J. P., Müller, C. R., Chuang, S. Y., Scott, S. A., Dennis, J. S.. Stabilizing Iron Oxide Used in Cycles of Reduction and Oxidation for Hydrogen Production. Energy & fuels : an American Chemical Society journal, vol.24, no.7, 4025-4033.

  14. Cui, Dongxu, Li, Min, Qiu, Yu, Ma, Li, Zeng, Dewang, Xiao, Rui. Improved hydrogen production with 100% fuel conversion through the redox cycle of ZnFeAlOx oxygen carrier in chemical looping scheme. Chemical engineering journal, vol.400, 125769-.

  15. Zeng, Dewang, Qiu, Yu, Li, Min, Cui, Dongxu, Ma, Li, Lv, Yulin, Zhang, Shuai, Xiao, Rui. Ternary Mixed Spinel Oxides as Oxygen Carriers for Chemical Looping Hydrogen Production Operating at 550 °C. ACS applied materials & interfaces, vol.11, no.47, 44223-44232.

  16. Lee, Minbeom, Kim, Yikyeom, Lim, Hyun Suk, Jo, Ayeong, Kang, Dohyung, Lee, Jae W.. Reverse Water-Gas Shift Chemical Looping Using a Core-Shell Structured Perovskite Oxygen Carrier. Energies, vol.13, no.20, 5324-.

  17. Kousi, Kalliopi, Neagu, Dragos, Bekris, Leonidas, Papaioannou, Evangelos I., Metcalfe, Ian S.. Endogenous Nanoparticles Strain Perovskite Host Lattice Providing Oxygen Capacity and Driving Oxygen Exchange and CH4 Conversion to Syngas. Angewandte Chemie. international edition, vol.59, no.6, 2510-2519.

  18. Lim, Hyun Suk, Kim, Gunjoo, Kim, Yikyeom, Lee, Minbeom, Kang, Dohyung, Lee, Hyunjoo, Lee, Jae W.. Ni-exsolved La1-xCaxNiO3 perovskites for improving CO2 methanation. Chemical engineering journal, vol.412, 127557-.

  19. Fu, Yu, Li, Shenggang, Zhang, Jun, Sun, Yuhan. Effective Macroporous Core–Shell Structure of Alumina‐Supported Spinel Ferrite for Carbon Dioxide Splitting Based on Chemical Looping. Energy technology : generation, conversion, storage, distribution, vol.4, no.11, 1349-1357.

  20. Kuo, Yu-Lin, Huang, Wei-Chen, Hsu, Wei-Mau, Tseng, Yao-Hsuan, Ku, Young. Use of Spinel Nickel Aluminium Ferrite as Self-Supported Oxygen Carrier for Chemical Looping Hydrogen Generation Process. Aerosol and air quality research, vol.15, no.7, 2700-2708.

  21. Liu, Yan, Qin, Lang, Pan, Jianhua, Chen, Yu-Yen, Goetze, Josh W., Xu, Dikai, Fan, Jonathan A., Fan, Liang-Shih. SBA-16-Mediated Nanoparticles Enabling Accelerated Kinetics in Cyclic Methane Conversion to Syngas at Low Temperatures. ACS applied energy materials, vol.3, no.10, 9833-9840.

  22. Lim, Hyun Suk, Lee, Minbeom, Kim, Yikyeom, Kang, Dohyung, Lee, Jae W.. Low-temperature CO2 hydrogenation to CO on Ni-incorporated LaCoO3 perovskite catalysts. International journal of hydrogen energy, vol.46, no.29, 15497-15506.

  23. Kang, Dohyung, Lee, Minbeom, Lim, Hyun Suk, Lee, Jae W.. Chemical looping partial oxidation of methane with CO2 utilization on the ceria-enhanced mesoporous Fe2O3 oxygen carrier. Fuel, vol.215, 787-798.

  24. Yin, Yadong, Rioux, Robert M., Erdonmez, Can K., Hughes, Steven, Somorjai, Gabor A., Alivisatos, A. Paul. Formation of Hollow Nanocrystals Through the Nanoscale Kirkendall Effect. Science, vol.304, no.5671, 711-714.

  25. Kim, Gi Mihn, Park, Jae Hyun, Lee, Jae W.. Formation of Hollow Co3O4 Nanoparticles on Nitrogen–doped Porous Carbons for Highly Capacitive Performance. ChemistrySelect, vol.1, no.3, 560-566.

  26. Ma, Zhong, Xiao, Rui, Chen, Liangyong. Redox reaction induced morphology and microstructure evolution of iron oxide in chemical looping process. Energy conversion and management, vol.168, 288-295.

  27. Li, Fanxing, Luo, Siwei, Sun, Zhenchao, Bao, Xiaoguang, Fan, Liang-Shih. Role of metal oxide support in redox reactions of iron oxide for chemical looping applications: experiments and density functional theory calculations. Energy & environmental science, vol.4, no.9, 3661-3667.

  28. Muhich, Christopher L., Aston, Victoria J., Trottier, Ryan M., Weimer, Alan W., Musgrave, Charles B.. First-Principles Analysis of Cation Diffusion in Mixed Metal Ferrite Spinels. Chemistry of materials : a publication of the American Chemical Society, vol.28, no.1, 214-226.

  29. Ma, Zhong, Zhang, Shuai, Lu, Yonggang. Phase segregation mechanism of NiFe2O4 oxygen carrier in chemical looping process. International journal of energy research, vol.45, no.2, 3305-3314.

  30. Sun, Zhenchao, Zhou, Qiang, Fan, Liang-Shih. Formation of Core-Shell Structured Composite Microparticles via Cyclic Gas-Solid Reactions. Langmuir : the ACS journal of surfaces and colloids, vol.29, no.40, 12520-12529.

  31. Sintering of Advanced Materials German R. M. 3 2010 10.1533/9781845699949.1.3 

  32. Noh, Kyung-Jong, Kim, Kyeounghak, Kim, Hyung Jun, Shin, Dongjae, Han, Jeong Woo. Improved CO Oxidation via Surface Stabilization of Ceria Nanoparticles Induced by Rare-Earth Metal Dopants. ACS applied nano materials, vol.2, no.10, 6473-6481.

  33. Kim, Hyung Jun, Shin, Dongjae, Jeong, Hojin, Jang, Myeong Gon, Lee, Hyunjoo, Han, Jeong Woo. Design of an Ultrastable and Highly Active Ceria Catalyst for CO Oxidation by Rare-Earth- and Transition-Metal Co-Doping. ACS catalysis, vol.10, 14877-14886.

  34. Zasada, F., Gryboś, J., Indyka, P., Piskorz, W., Kaczmarczyk, J., Sojka, Z.. Surface Structure and Morphology of M[CoM′]O4 (M = Mg, Zn, Fe, Co and M′ = Ni, Al, Mn, Co) Spinel NanocrystalsDFT+U and TEM Screening Investigations. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.118, no.33, 19085-19097.

  35. Shi, Xiao, Bernasek, Steven L., Selloni, Annabella. Mechanism and activity of CO oxidation on (001) and (110) surfaces of spinel Co3O4, NiCo2O4 and NiFe2O4: A DFT + U study. Surface science, vol.677, 278-283.

  36. Hossain, M.M., Sedor, K.E., de Lasa, H.I.. Co-Ni/Al2O3 oxygen carrier for fluidized bed chemical-looping combustion: Desorption kinetics and metal-support interaction. Chemical engineering science, vol.62, no.18, 5464-5472.

  37. Imtiaz, Qasim, Armutlulu, Andac, Donat, Felix, Naeem, Muhammad Awais, Müller, Christoph R.. Preventing Agglomeration of CuO-Based Oxygen Carriers for Chemical Looping Applications. ACS sustainable chemistry et engineering, vol.9, no.17, 5972-5980.

  38. Kwak, No Woo, Lim, Dae‐Kwang, Jeong, Seung Jin, Byeon, Pilgyu, Chung, Sung‐Yoon, Jung, WooChul. Diffusion of Cation Impurities through Ceria Grain Boundaries. Advanced materials interfaces, vol.7, no.20, 2000688-.

  39. Saranya, Aruppukottai M., Pla, Dolors, Morata, Alex, Cavallaro, Andrea, Canales‐Vázquez, Jesús, Kilner, John A., Burriel, Mónica, Tarancón, Albert. Engineering Mixed Ionic Electronic Conduction in La0.8Sr0.2MnO3+δ Nanostructures through Fast Grain Boundary Oxygen Diffusivity. Advanced energy materials, vol.5, no.11, 1500377-.

  40. 10.1002/9780470380758 Tilley, R. J. D. Defects in Solids ; John Wiley & Sons: New York, 2008; Vol. 4; pp 205-250. 

  41. Yüzbasi, N. Sena, Kierzkowska, Agnieszka M., Imtiaz, Qasim, Abdala, Paula M., Kurlov, Alexey, Rupp, Jennifer L. M., Müller, Christoph R.. ZrO2-Supported Fe2O3 for Chemical-Looping-Based Hydrogen Production: Effect of pH on Its Structure and Performance As Probed by X-ray Absorption Spectroscopy and Electrical Conductivity Measurements. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.120, no.34, 18977-18985.

  42. Short, James M., Andersen, Christian A.. Electron microprobe analyses of the Widmanstätten structure of nine iron meteorites. Journal of geophysical research: JGR, vol.70, no.15, 3745-3759.

  43. Lim, Hyun Suk, Kang, Dohyung, Lee, Jae W.. Phase transition of Fe2O3–NiO to NiFe2O4 in perovskite catalytic particles for enhanced methane chemical looping reforming-decomposition with CO2 conversion. Applied catalysis. B, Environmental, vol.202, 175-183.

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