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Dive into the research topics where Jiamao Li is active.

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Featured researches published by Jiamao Li.


RSC Advances | 2016

Hydrogen production by methane decomposition over Ni–Cu–SiO2 catalysts: effect of temperature on catalyst deactivation

Jiamao Li; Chao Xiao; Liangping Xiong; Xiaojun Chen; Linjie Zhao; Liang Dong; Yang Du; Yong Yang; Heyi Wang; Shuming Peng

Catalytic decomposition of methane (CDM) is a simple process for the production of high-purity, COX-free (CO or CO2) hydrogen. The CDM is a moderately endothermic reaction, and high temperatures are thermodynamically favorable for achieving high methane conversion. However, Ni–Cu catalysts easily lose their activities at high temperature. To study the effect of temperature on the deactivation of Ni–Cu catalysts, a 65% Ni–15% Cu–SiO2 catalyst was prepared by the heterophase sol–gel method. A series of kinetic experiments (routes I, II, III) were designed to test the catalytic performance and generate by-product carbon structures. The effects of reaction temperature and methane dissociation rate on catalyst deactivation were studied. The phase transition temperature was estimated. Based on the kinetic experiments, TEM images, XRD data, TGA-DSC curves, and TEM-EDX data, a thoroughly deactivation study of the 65% Ni–15% Cu–SiO2 catalyst was carried out. The results of this study proved that high degree of graphitization was the key factor contributing to the deactivation of Ni–Cu catalysts. Fragmentation and phase separation at high temperature were both responsible for carbon atom enrichment and a high degree of graphitization, which in turn caused the 65% Ni–10% Cu–25% SiO2 catalyst to lose activity at high temperature.


International Journal of Hydrogen Energy | 2015

The effect of CH4 decomposition temperature on the property of deposited carbon over Ni/SiO2 catalyst

Liang Dong; Yang Du; Jiamao Li; Heyi Wang; Yong Yang; Shuo Li; Zhaoyi Tan


International Journal of Hydrogen Energy | 2016

High-loaded NiCuSiO2 catalysts for methane decomposition to prepare hydrogen and carbon filaments

Jiamao Li; Liang Dong; Liangping Xiong; Yong Yang; Yang Du; Linjie Zhao; Heyi Wang; Shuming Peng


Fusion Engineering and Design | 2016

First-principles study on the structural and electronic properties of Li4SiO4 and Al-doped Li4SiO4

Linjie Zhao; Qiushi Guan; Jiamao Li; Jian Zheng; Xiaojun Chen; Chengjian Xiao; Yu Gong; Xinggui Long; Shuming Peng


Journal of Nuclear Materials | 2015

Design, synthesis and characterization of the advanced tritium breeder: Li4+xSi1-xAlxO4 ceramics

Linjie Zhao; Xinggui Long; Xiaojun Chen; Chengjian Xiao; Yu Gong; Qiushi Guan; Jiamao Li; Lei Xie; Xiping Chen; Shuming Peng


Fuel | 2018

Thermal-stable Pd@mesoporous silica core-shell nanocatalysts for dry reforming of methane with good coke-resistant performance

Lei Yue; Jiamao Li; Chao Chen; Xiaolong Fu; Yu Gong; Xiulong Xia; Jingwei Hou; Chengjian Xiao; Xiaojun Chen; Linjie Zhao; Guangming Ran; Heyi Wang


Fusion Engineering and Design | 2016

Methane decomposition over high-loaded Ni-Cu-SiO2 catalysts

Jiamao Li; Linjie Zhao; Jianchao He; Liang Dong; Liangping Xiong; Yang Du; Yong Yang; Heyi Wang; Shuming Peng


Fusion Engineering and Design | 2015

Theoretical investigation of the mechanism of tritiated methane dehydrogenation reaction using nickel-based catalysts

Liang Dong; Jiamao Li; Bing Deng; Yong Yang; Heyi Wang; Weiyi Li; Shuo Li; Zhaoyi Tan


Journal of Nuclear Materials | 2016

Tritium release in Li4SiO4 and Li4.2Si0.8Al0.2O4 ceramics

Linjie Zhao; Xinggui Long; Shuming Peng; Xiaojun Chen; Chengjian Xiao; Guangming Ran; Jiamao Li


Fusion Engineering and Design | 2016

Preparation of alveolate hydrophobic catalyst for tritium waste gas treatment

Yong Yang; Shuming Peng; Heyi Wang; Yang Du; Jiamao Li

Collaboration


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Heyi Wang

China Academy of Engineering Physics

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Linjie Zhao

China Academy of Engineering Physics

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Shuming Peng

China Academy of Engineering Physics

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Yong Yang

China Academy of Engineering Physics

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Chengjian Xiao

China Academy of Engineering Physics

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Liang Dong

China Academy of Engineering Physics

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Xiaojun Chen

China Academy of Engineering Physics

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Yang Du

China Academy of Engineering Physics

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Liangping Xiong

China Academy of Engineering Physics

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Xinggui Long

China Academy of Engineering Physics

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