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Featured researches published by Wenhua Luo.


Scanning | 2018

Structural and Kinetic Hydrogen Sorption Properties of Zr0.8Ti0.2Co Alloy Prepared by Ball Milling

Hui He; Huaqin Kou; Wenhua Luo; Tao Tang; Zhiyong Huang; Ge Sang; Guanghui Zhang; Jingwen Ba; Meng Liu

The effects of ball milling on the hydrogen sorption kinetics and microstructure of Zr0.8Ti0.2Co have been systematically studied. Kinetic measurements show that the hydrogenation rate and amount of Zr0.8Ti0.2Co decrease with increasing the ball milling time. However, the dehydrogenation rate accelerates as the ball milling time increases. Meanwhile, the disproportionation of Zr0.8Ti0.2Co speeds up after ball milling and the disproportionation kinetics is clearly inclined to be linear with time at 500°C. It is found from X-ray powder diffraction (XRD) results that the lattice parameter of Zr0.8Ti0.2Co gradually decreases from 3.164 Å to 3.153 Å when the ball milling time extends from 0 h to 8 h, which is mainly responsible for the hydrogen absorption/desorption behaviors. In addition, scanning electron microscope (SEM) images demonstrate that the morphology of Zr0.8Ti0.2Co has obviously changed after ball milling, which is closely related to the hydrogen absorption kinetics. Besides, high-resolution transmission electron microscopy (HRTEM) images show that a large number of disordered microstructures including amorphous regions and defects exist after ball milling, which also play an important role in hydrogen sorption performances. This work will provide some insights into the principles of how to further improve the hydrogen sorption kinetics and disproportionation property of Zr0.8Ti0.2Co.


International Journal of Hydrogen Energy | 2015

Effects and mechanism of Ti, Ni, Sc, Fe substitution on the thermal stability of zirconium cobalt–hydrogen system

Guanghui Zhang; Ge Sang; Renjin Xiong; Huaqin Kou; Kezhao Liu; Wenhua Luo


International Journal of Hydrogen Energy | 2015

Comparative study of full-scale thin double-layered annulus beds loaded with ZrCo, Zr0.8Hf0.2Co and Zr0.8Ti0.2Co for recovery and delivery of hydrogen isotopes

Huaqin Kou; Ge Sang; Wenhua Luo; Zhiyong Huang; Daqiao Meng; Guanghui Zhang; Jun Deng; Zhipeng Luo; Weibo He; Changwen Hu


Applied Energy | 2015

Experimental study on full-scale ZrCo and depleted uranium beds applied for fast recovery and delivery of hydrogen isotopes

Huaqin Kou; Zhiyong Huang; Wenhua Luo; Ge Sang; Daqiao Meng; Deli Luo; Guanghui Zhang; Hao Chen; Ying Zhou; Changwen Hu


International Journal of Hydrogen Energy | 2014

Comprehensive hydrogen storage properties and catalytic mechanism studies of 2LiBH4–MgH2 system with NbF5 in various addition amounts

Huaqin Kou; Ge Sang; Zhiyong Huang; Wenhua Luo; Lixin Chen; Xuezhang Xiao; Changwen Hu; Yuanlin Zhou


International Journal of Hydrogen Energy | 2016

Effects of temperature and hydrogen pressure on the activation behavior of ZrCo

Huaqin Kou; Wenhua Luo; Zhiyong Huang; Ge Sang; Changwen Hu; Changan Chen; Guanghui Zhang; Deli Luo; Meng Liu; Shaotao Zheng


Energy | 2015

Fabrication and experimental validation of a full-scale depleted uranium bed with thin double-layered annulus configuration for hydrogen isotopes recovery and delivery

Huaqin Kou; Wenhua Luo; Zhiyong Huang; Ge Sang; Daqiao Meng; Guanghui Zhang; Changan Chen; Deli Luo; Changwen Hu


International Journal of Hydrogen Energy | 2018

Stable region of ZrCo under hydrogen atmosphere at high temperature

Huaqin Kou; Hui He; Wenhua Luo; Tao Tang; Zhiyong Huang; Ge Sang; Guanghui Zhang; Huan Wang; Yan Shi; Changan Chen


International Journal of Hydrogen Energy | 2018

Temperature-hydrogen pressure phase boundaries and corresponding thermodynamics for ZrCo H system

Huaqin Kou; Wenhua Luo; Tao Tang; Zhiyong Huang; Ge Sang; Huan Wang; Changan Chen; Guanghui Zhang; Jinchun Bao; Yan Xue


International Journal of Hydrogen Energy | 2018

Hydrogen isotopes separation validation of frontal displacement chromatography for various compositions of feed gas and tritium extraction simulation for TBM

Xiaojun Deng; Deli Luo; Cheng Qin; Daqiao Meng; Tao Tang; Wenhua Luo

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Ge Sang

China Academy of Engineering Physics

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Huaqin Kou

Beijing Institute of Technology

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Zhiyong Huang

China Academy of Engineering Physics

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Guanghui Zhang

China Academy of Engineering Physics

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Changwen Hu

Beijing Institute of Technology

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Changan Chen

China Academy of Engineering Physics

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Tao Tang

China Academy of Engineering Physics

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Daqiao Meng

China Academy of Engineering Physics

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Deli Luo

China Academy of Engineering Physics

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Huan Wang

China Academy of Engineering Physics

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