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Experimental Research on the Preparation of Porous Activated Carbon from Orange Wastes

机译:用橙废料制备多孔活性炭的实验研究。

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Porous activated carbon was prepared from orange wastes using zinc chloride as an activating agent by one-step carbonization method. Effects of impregnation ratio, carbonization temperature and heat preservation time on pore characteristics of activated carbon were studied. The porous structures of the orange wastes activated carbon were investigated by BET, D-R equations, BJH equations and Kelvin theory. The morphology was observed using transmission electron microscopy (TEM). The mesoporous activated carbon is gained when the impregnation ratio is 3:1; the carbonization temperature is 550°Cand heat preservation time is 1.0 h. The activated carbon has total pore volume 2.098 cm3/g, mesoporous pore volume 1.438 cm3/g, with a high BET surface area 1476m2/g. The pore distribution of the mesoporous activated carbon is very concentrative, with average pore diameter of 3.88nm. While, the high specific surface area activated carbon is gained when the impregnation ratio is 2:1; the carbonization temperature is 550℃and heat preservation time is 1.0 h. The activated carbon has high BET surface area 1909 m2/g, while the total pore volume is only 1.448cm3/g and microporous pore volume is 0.889cm3/g, with average pore diameter of 2.29 nm.
机译:使用氯化锌作为活化剂,通过一步碳化法,从橙色废料中制备出多孔活性炭。研究了浸渍率,碳化温度和保温时间对活性炭孔隙特性的影响。通过BET,D-R方程,BJH方程和Kelvin理论研究了橙废活性炭的多孔结构。使用透射电子显微镜(TEM)观察形态。浸渍比为3:1时,得到中孔活性炭。碳化温度为550℃,保温时间为1.0小时。活性炭的总孔体积为2.098 cm3 / g,中孔孔体积为1.438 cm3 / g,BET表面积为1476m2 / g。中孔活性炭的孔分布非常集中,平均孔径为3.88nm。而当浸渍比为2∶1时,获得了高比表面积的活性炭。碳化温度为550℃,保温时间为1.0 h。活性炭具有高的BET表面积1909m2 / g,而总孔体积仅为1.448cm3 / g,微孔孔体积为0.889cm3 / g,平均孔径为2.29nm。

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