Xiao-Yan Lv
Guangxi University
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Featured researches published by Xiao-Yan Lv.
Materials | 2017
Zhi Wu; Rong-Rong Huang; Hang Yu; Yong-Chun Xie; Xiao-Yan Lv; Jing Su; Yun-Fei Long; Yanxuan Wen
Olivine-type LiMnPO4/C nanorods were successfully synthesized in a chloride/ethylene glycol-based deep eutectic solvent (DES) at 130 °C for 4 h under atmospheric pressure. As-synthesized samples were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), Raman spectroscopy, Fourier transform infrared spectroscopy (FTIR) and electrochemical tests. The prepared LiMnPO4/C nanorods were coated with a thin carbon layer (approximately 3 nm thick) on the surface and had a length of 100–150 nm and a diameter of 40–55 nm. The prepared rod-like LiMnPO4/C delivered a discharge capacity of 128 mAh·g−1 with a capacity retention ratio of approximately 93% after 100 cycles at 1 C. Even at 5 C, it still had a discharge capacity of 106 mAh·g−1, thus exhibiting good rate performance and cycle stability. These results demonstrate that the chloride/ethylene glycol-based deep eutectic solvents (DES) can act as a new crystal-face inhibitor to adjust the oriented growth and morphology of LiMnPO4. Furthermore, deep eutectic solvents provide a new approach in which to control the size and morphology of the particles, which has a wide application in the synthesis of electrode materials with special morphology.
Kemija u industriji : Časopis kemičara i kemijskih inženjera Hrvatske | 2015
Yun-Fei Long; Xiao-Yan Lv; Yi-Ju Lv; Yogn-Ni Li; Jing Su; Yanxuan Wen
Manganese is widely used in many fields. Many efforts have been made to recover manganese from low-grade pyrolusite due to the depletion of high-grade manganese ore. Thus, it is of practical significance to develop a clean, energy-saving and environmentally friendly technical route to reduce the low-grade pyrolusite. The reported results show that biomass wastes from crops, crop waste, wood and wood waste are environmentally friendly, energy-saving, and low-cost reducing agents for roasting reduction of low-grade pyrolusite. Kinetics of the reduction reactions is necessary for an efficient design of biomass reduction of pyrolusite. Therefore, it is important to look for a general kinetics equation to describe the reduction of pyrolusite by different kinds of biomass, because there is a wide variety of biomass wastes, meaning that it is impossible to investigate the kinetics for each biomass waste. In this paper, thermal gravimetric analysis and differential thermal analysis were applied to study the overall reduction kinetics of pyrolusite using a mixture of hemicellulose and lignin, two major components of biomass. Overall reduction process is the overlap of the respective reduction processes. A new empirical equation based on the Johnson–Mehl–Avrami equation can be used to describe the respective reduction kinetics using hemicellulose and lignin as reductants, and the corresponding apparent activation energy is 30.14 kJ mol−1 and 38.91 kJ mol−1, respectively. The overall kinetic model for the reduction of pyrolusite by the mixture of hemicellulose and lignin can be simulated by the summation of the respective kinetics by considering their mass-loss fractions, while a unit step function was used to avoid the invalid conversion data. The obtained results in this work are necessary to understand the biomass reduction of pyrolusite and provide valuable assistance in the development of a general kinetics equation.
Kemija u industriji : Časopis kemičara i kemijskih inženjera Hrvatske | 2015
Yun-Fei Long; Xiao-Yan Lv; Yi-Ju Lv; Yogn-Ni Li; Jing Su; Yanxuan Wen
Manganese is widely used in many fields. Many efforts have been made to recover manganese from low-grade pyrolusite due to the depletion of high-grade manganese ore. Thus, it is of practical significance to develop a clean, energy-saving and environmentally friendly technical route to reduce the low-grade pyrolusite. The reported results show that biomass wastes from crops, crop waste, wood and wood waste are environmentally friendly, energy-saving, and low-cost reducing agents for roasting reduction of low-grade pyrolusite. Kinetics of the reduction reactions is necessary for an efficient design of biomass reduction of pyrolusite. Therefore, it is important to look for a general kinetics equation to describe the reduction of pyrolusite by different kinds of biomass, because there is a wide variety of biomass wastes, meaning that it is impossible to investigate the kinetics for each biomass waste. In this paper, thermal gravimetric analysis and differential thermal analysis were applied to study the overall reduction kinetics of pyrolusite using a mixture of hemicellulose and lignin, two major components of biomass. Overall reduction process is the overlap of the respective reduction processes. A new empirical equation based on the Johnson–Mehl–Avrami equation can be used to describe the respective reduction kinetics using hemicellulose and lignin as reductants, and the corresponding apparent activation energy is 30.14 kJ mol−1 and 38.91 kJ mol−1, respectively. The overall kinetic model for the reduction of pyrolusite by the mixture of hemicellulose and lignin can be simulated by the summation of the respective kinetics by considering their mass-loss fractions, while a unit step function was used to avoid the invalid conversion data. The obtained results in this work are necessary to understand the biomass reduction of pyrolusite and provide valuable assistance in the development of a general kinetics equation.
Journal of Alloys and Compounds | 2009
Li Zhang; Xiao-Yan Lv; Yanxuan Wen; Fan Wang; Haifeng Su
Electrochimica Acta | 2014
Yi-Ju Lv; Yun-Fei Long; Jing Su; Xiao-Yan Lv; Yanxuan Wen
Powder Technology | 2014
Yi-Ju Lv; Jing Su; Yun-Fei Long; Xiao-Ru Cui; Xiao-Yan Lv; Yanxuan Wen
Electrochimica Acta | 2015
Yong-Ni Li; Jing Su; Xiao-Yan Lv; Yun-Fei Long; Yanxuan Wen
Chinese Journal of Chemical Engineering | 2015
Yun-Fei Long; Le Ruan; Xiao-Yan Lv; Yi-Ju Lv; Jing Su; Yanxuan Wen
Ceramics International | 2016
Qiao-Ying Huang; Zhi Wu; Jing Su; Yun-Fei Long; Xiao-Yan Lv; Yanxuan Wen
Particuology | 2012
Kedi Yang; Jing Su; Li Zhang; Yun-Fei Long; Xiao-Yan Lv; Yanxuan Wen