期刊
ACS OMEGA
卷 4, 期 6, 页码 9932-9938出版社
AMER CHEMICAL SOC
DOI: 10.1021/acsomega.9b01074
关键词
-
资金
- National Science Foundation of China [21576170]
- Opening Project of Material Corrosion and Protection Key Laboratory of Sichuan province [2017CL19]
A novel method whose starting materials was Fe-P waste slag and CO2 using a closed-loop carbon and energy cycle to synthesize LiFePO4/C materials was proposed recently. In the first step, Fe-P slag was calcinated in a CO2 atmosphere to manufacture Fe-3(PO4)(2), in which the solid products were tested by XRD (X-ray diffraction) analysis and the gaseous products were analyzed by the gas detection method. In the second step, as-synthesized Fe-3(PO4)(2) was further used as the Fe and P source to manufacture LiFePO4/C materials. Also, the influence of the preparation conditions of Fe-3(PO4)(2), including calcination time and calcination temperature, on the energy storage properties of as-obtained LiFePO4/C was investigated. It was found that the LiFePO4/C materials, which was synthesized from Fe-3(PO4)(2) obtained by calcining Fe-P waste slag at 800 degrees C for 10 h in CO2, exhibited a higher capacity, better reversibility, and lower polarization than other samples. The discharge capacity of as-obtained LiFePO4/C can reach 145 mAh/g at 0.1 C current rate. This work puts forward an environment-friendly method of manufacturing has a closed-loop carbon and energy cycle.
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