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Dive into the research topics where Kongzhai Li is active.

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Featured researches published by Kongzhai Li.


Journal of Materials Chemistry | 2017

A yolk/shell strategy for designing hybrid phase change materials for heat management in catalytic reactions

Kongzhai Li; Xianming Cheng; Ningning Li; Xing Zhu; Yonggang Wei; Kang Zhai; Hua Wang

Thermal energy storage technology is a promising option for implementing thermal management in advanced chemical processes, and phase change materials (PCMs) are recognized as the ideal thermal storage materials due to their high heat storage density and moderate temperature variation in charging/discharging processes. Herein, a yolk/shell strategy is firstly introduced to encapsulate PCMs with catalytic materials to fabricate a thermal storage functional catalyst. Chemical looping combustion technology, which couples endothermic and exothermic reactions, is chosen as the model process to observe the thermal storage behavior of such catalysts at a micro level. A novel method was proposed to prepare a yolk/shell Al@Al2O3 phase change composite, where the Al2O3 shell is obtained by the catalytic oxidation of surface layer of Al microspheres by O2 in the presence of Ni nanoparticles. After that, the Al@Al2O3 was coated with Fe2O3/Al2O3 to form an (Fe2O3/Al2O3)/(Al@Al2O3) thermal storage functional oxygen carrier. The Al@Al2O3 microspheres possess high latent heat (315 J g−1) and superior thermal conductivity (1.5–2.7 W (m K)−1). The voids between the yolk and the shell can serve as a buffering space for the volumetric changes of the Al core during the melting/freezing process, resulting in excellent charge/discharge stability. The heat released from the exothermic oxidation reaction can be efficiently absorbed by the PCM core to prevent thermal runaway. The thermal storage functional catalyst provides an intensive and practical approach for thermal management in complex chemical processes.


Applied Catalysis B-environmental | 2017

Designed oxygen carriers from macroporous LaFeO3 supported CeO2 for chemical-looping reforming of methane

Yane Zheng; Kongzhai Li; Hua Wang; Dong Tian; Yuhao Wang; Xing Zhu; Yonggang Wei; Min Zheng; Yongming Luo


Materials Letters | 2013

Modification of CeO2 on the redox property of Fe2O3

Kongzhai Li; Masaaki Haneda; Zhenhua Gu; Hua Wang; Masakuni Ozawa


Applied Energy | 2016

Bulk monolithic Ce–Zr–Fe–O/Al2O3 oxygen carriers for a fixed bed scheme of the chemical looping combustion: Reactivity of oxygen carrier

Zhenhua Gu; Kongzhai Li; Hua Wang; Shan Qing; Xing Zhu; Yonggang Wei; Xianming Cheng; He Yu; Yan Cao


Journal of Catalysis | 2016

Structure dependence and reaction mechanism of CO oxidation: A model study on macroporous CeO2 and CeO2-ZrO2 catalysts

Yane Zheng; Kongzhai Li; Hua Wang; Yuhao Wang; Dong Tian; Yonggang Wei; Xing Zhu; Chunhua Zeng; Yongming Luo


Applied Surface Science | 2016

Soot combustion over Ce1-xFexO2-δ and CeO2/Fe2O3 catalysts: Roles of solid solution and interfacial interactions in the mixed oxides

Hongcheng Li; Kongzhai Li; Hua Wang; Xing Zhu; Yonggang Wei; Dongxia Yan; Xianming Cheng; Kang Zhai


Applied Surface Science | 2014

Microstructure and oxygen evolution of Fe–Ce mixed oxides by redox treatment

Kongzhai Li; Masaaki Haneda; Peihong Ning; Hua Wang; Masakuni Ozawa


Applied Energy | 2018

Chemical looping reforming of methane using magnetite as oxygen carrier: Structure evolution and reduction kinetics

Chunqiang Lu; Kongzhai Li; Hua Wang; Xing Zhu; Yonggang Wei; Min Zheng; Chunhua Zeng


Journal of Materials Science | 2013

Oxygen release–absorption properties and structural stability of Ce0.8Fe0.2O2−x

Kongzhai Li; Masaaki Haneda; Masakuni Ozawa


Applied Surface Science | 2017

Effect of transition metal Fe adsorption on CeO2 (110) surface in the methane activation and oxygen vacancy formation: A density functional theory study

Dong Tian; Chunhua Zeng; Hua Wang; Xianming Cheng; Yane Zheng; Chao Xiang; Yonggang Wei; Kongzhai Li; Xing Zhu

Collaboration


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Hua Wang

Kunming University of Science and Technology

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Xing Zhu

Kunming University of Science and Technology

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Yonggang Wei

Kunming University of Science and Technology

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Dong Tian

Kunming University of Science and Technology

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Xianming Cheng

Kunming University of Science and Technology

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Chunhua Zeng

Kunming University of Science and Technology

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Yane Zheng

Kunming University of Science and Technology

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Kang Zhai

Kunming University of Science and Technology

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Min Zheng

Kunming University of Science and Technology

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Zhenhua Gu

Kunming University of Science and Technology

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