A kinetic equation for ultrasonic-assisted extraction process was presented based on Fick’s first law of diffusion.The kinetics of ultrasonic-assisted extraction process agreed with the first-order rate equation.Expe...A kinetic equation for ultrasonic-assisted extraction process was presented based on Fick’s first law of diffusion.The kinetics of ultrasonic-assisted extraction process agreed with the first-order rate equation.Experiments for extracting chlorogenic acid from the leaves of Eucommia ulmoides were studied under different conditions to evaluate the kinetic equation.Experiment data could partly match the kinetic equation.It provided a theoretical reference for the ultrasonic-assisted extraction of Chinese traditional medicine.展开更多
Pure olive-type phased LiFePO4 powders were successfully synthesized b y hydrothermal processes. The samples were investigated by X-ray diffraction, sc anning electron microscopy and so on. Results showed that hydroth...Pure olive-type phased LiFePO4 powders were successfully synthesized b y hydrothermal processes. The samples were investigated by X-ray diffraction, sc anning electron microscopy and so on. Results showed that hydrothermal product w ere of pure olive-type phase with a relatively smaller particle size and regular er morphology compared with the products prepared by solid-state reaction and ba ll milling activation approaches. Charge/discharge curves at 0.5 C rate revealed that the hydrothermal products had a first discharge capacity of 124 mAh·g-1, and the capacity fading rate was only 10.7% after 50 cycles.展开更多
文摘A kinetic equation for ultrasonic-assisted extraction process was presented based on Fick’s first law of diffusion.The kinetics of ultrasonic-assisted extraction process agreed with the first-order rate equation.Experiments for extracting chlorogenic acid from the leaves of Eucommia ulmoides were studied under different conditions to evaluate the kinetic equation.Experiment data could partly match the kinetic equation.It provided a theoretical reference for the ultrasonic-assisted extraction of Chinese traditional medicine.
文摘Pure olive-type phased LiFePO4 powders were successfully synthesized b y hydrothermal processes. The samples were investigated by X-ray diffraction, sc anning electron microscopy and so on. Results showed that hydrothermal product w ere of pure olive-type phase with a relatively smaller particle size and regular er morphology compared with the products prepared by solid-state reaction and ba ll milling activation approaches. Charge/discharge curves at 0.5 C rate revealed that the hydrothermal products had a first discharge capacity of 124 mAh·g-1, and the capacity fading rate was only 10.7% after 50 cycles.