Danni Yang
Huazhong University of Science and Technology
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Publication
Featured researches published by Danni Yang.
Journal of Hazardous Materials | 2012
Lei Li; Xinfeng Zhu; Danni Yang; Linxia Gao; Jianwen Liu; R. Vasant Kumar; Jiakuan Yang
As part of contribution for developing a green recycling process of spent lead acid battery, a nanostructural lead oxide was prepared under the present investigation in low temperature calcination of lead citrate powder. The lead citrate, the precursor for preparation of this lead oxide, was synthesized through leaching of spent lead acid battery paste in citric acid solution. Both lead citrate and oxide products were characterized by means of thermogravimetric-differential thermal analysis (TG-DTA), X-ray diffraction (XRD), and scanning electron microscope (SEM). The results showed that the lead citrate was sheet-shape crystal of Pb(C(6)H(6)O(7)) · H(2)O. When the citrate was calcined in N(2) gas, β-PbO in the orthorhombic phase was the main product containing small amount of Pb and C and it formed as spherical particles of 50-60 nm in diameter. On combusting the citrate in air at 370°C (for 20 min), a mixture of orthorhombic β-PbO, tetragonal α-PbO and Pb with the particle size of 100-200 nm was obtained, with β-PbO as the major product. The property of the nanostructural lead oxide was investigated by electrochemical technique, such as cyclic voltammetry (CV). The CV measurements presented the electrochemical redox potentials, with reversibility and cycle stability over 15 cycles.
Journal of Hazardous Materials | 2013
Xinfeng Zhu; Xiong He; Jiakuan Yang; Linxia Gao; Jianwen Liu; Danni Yang; Xiaojuan Sun; Wei Zhang; Qin Wang; R. Vasant Kumar
A sustainable method, with minimal pollution and low energy cost in comparison with the conventional smelting methods, is proposed for treating components of spent lead-acid battery pastes in aqueous organic acid(s). In this study, PbO, PbO2, and PbSO4, the three major components in a spent lead paste, were individually reacted with a mixture of aqueous sodium citrate and acetic acid solution. Pure lead citrate precursor of Pb3(C6H5O7)2 · 3H2O is the only product crystallized in each leaching experiment. Conditions were optimized for individual lead compounds which were then used as the basis for leaching real industrial spent paste. In this work, efficient leaching process is achieved and raw material cost is reduced by using aqueous sodium citrate and acetic acid, instead of aqueous sodium citrate and citric acid as reported in a pioneering hydrometallurgical method earlier. Acetic acid is not only cheaper than citric acid but is also more effective in aiding dissolution of the lead compounds thus speeding up the leaching process in comparison with citric acid. Lead citrate is readily crystallized from the aqueous solution due to its low solubility and can be combusted to directly produce leady oxide as a precursor for making new battery pastes.
Hydrometallurgy | 2012
Xinfeng Zhu; Lei Li; Xiaojuan Sun; Danni Yang; Linxia Gao; Jianwen Liu; R. Vasant Kumar; Jiakuan Yang
Journal of Power Sources | 2014
Danni Yang; Jianwen Liu; Qin Wang; Xiqing Yuan; Xinfeng Zhu; Lei Li; Wei Zhang; Yuchen Hu; Xiaojuan Sun; R. Vasant Kumar; Jiakuan Yang
Hydrometallurgy | 2013
Xinfeng Zhu; Jiakuan Yang; Linxia Gao; Jianwen Liu; Danni Yang; Xiaojuan Sun; Wei Zhang; Qin Wang; Lei Li; Dongsheng He; R. Vasant Kumar
Journal of Power Sources | 2014
Xiaojuan Sun; Jiakuan Yang; Wei Zhang; Xinfeng Zhu; Yuchen Hu; Danni Yang; Xiqing Yuan; Wenhao Yu; Jinxin Dong; Haifeng Wang; Lei Li; R. Vasant Kumar; Sha Liang
Materials Research Bulletin | 2013
Lei Li; Yuchen Hu; Xinfeng Zhu; Danni Yang; Qin Wang; Jianwen Liu; R. Vasant Kumar; Jiakuan Yang
Journal of Power Sources | 2011
Jianwen Liu; Danni Yang; Linxia Gao; Xinfeng Zhu; Lei Li; Jiakuan Yang
Journal of The Electrochemical Society | 2013
Linxia Gao; Jianwen Liu; Xinfeng Zhu; Danni Yang; Qin Wang; Lei Li; Dongsheng He; R. Vasant Kumar; Jiakuan Yang
Journal of Power Sources | 2015
Qin Wang; Jianwen Liu; Danni Yang; Xiqing Yuan; Lei Li; Xinfeng Zhu; Wei Zhang; Yucheng Hu; Xiaojuan Sun; Sha Liang; Jingping Hu; R. Vasant Kumar; Jiakuan Yang