Porous activated carbon fiber adsorbing material of sheath-core composite structure and preparation thereof
A technology of porous activated carbon and adsorption materials, which is applied in the direction of alkali metal compounds, other chemical processes, alkali metal oxides/hydroxides, etc., and can solve the problems affecting the range of use and service life of ACF, strength loss, etc., and achieve a favorable load The effect of biological cells, prolonging the service life, and easy preparation method
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Embodiment 1
[0027] Viscose-based carbon fibers with a strength of 0.7GPa were placed in 0.1M Na 3 PO 4 The solution was left to stand for 3 hours, and then put into the activation furnace, and water vapor and N 2 , the temperature was raised to 1000°C at a rate of 20°C / min, and water vapor was passed through for constant temperature activation for 0.5 hours. After cooling down to 200°C, the inert gas and water vapor were turned off to prepare a porous activated carbon fiber adsorption material.
[0028] image 3 It is the electron microscope photo of the adsorption material of this embodiment, the pore size on the surface is 50nm2 / g.
Embodiment 2
[0030] Put viscose-based carbon fibers with a strength of 0.7GPa in 0.2M NaH 2 PO 4 Stand in the solution for 2 hours, then put it into the activation furnace, pass water vapor and N 2 , the temperature was raised to 1000°C at a rate of 10°C / min, and water vapor was passed through for constant temperature activation treatment for 1 hour. After cooling down to 200°C, the inert gas and water vapor were turned off to prepare a porous activated carbon fiber adsorption material.
[0031] Figure 4 It is the electron microscope photo of the adsorption material of this embodiment, the pore diameter on the surface is 100nm2 / g.
Embodiment 3
[0033] Viscose-based carbon fibers with a strength of 0.7GPa were placed in 0.1M Na 2 HPO 4 Stand in the solution for 4 hours, then put it into the activation furnace, pass water vapor and N 2 , the temperature was raised to 1000°C at a rate of 10°C / min, and water vapor was passed through for constant temperature activation for 0.5 hours. After cooling down to 200°C, the inert gas and water vapor were turned off to prepare a porous activated carbon fiber adsorption material.
[0034] Figure 5 It is the electron micrograph of the adsorption material of this embodiment, the pore diameter on the surface is 50nm2 / g.
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