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首页> 外文期刊>Applied Surface Science >A functional activated carbon for efficient adsorption of phenol derived from pyrolysis of rice husk, KOH-activation and EDTA-4Na-modification
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A functional activated carbon for efficient adsorption of phenol derived from pyrolysis of rice husk, KOH-activation and EDTA-4Na-modification

机译:一种功能活性炭,可有效吸附稻壳热解,KOH活化和EDTA-4Na改性衍生的苯酚

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摘要

In this study, the rice husk-based activated carbon was prepared via pyrolysis of rice husk and simultaneous KOH-activation and EDTA-4Na-modification and used for phenol adsorption from water. When the rice-husk was carbonized at 500 degrees C and activated at 750 degrees C with mass ratio of carbon to KOH of 1:3, an activated carbon can be prepared, with rich micro-porosity, high specific area of 2087 m(2).g(-1) and maximum phenol adsorbance of 194.24 mg.g(-1). When the above activated carbon is prepared by simultaneous KOH-activation and EDTA-4Na-modification at 750 degrees C, N-containing functional groups were introduced to the activated carbon, which is beneficial to the adsorption of phenol. Under optimum conditions with mass ratio of carbon : KOH : EDTA-4Na = 1:3:1, the specific surface area of the resulting activated carbon decreases to 1368 m(2).g(-1), while its maximum adsorption capacity for phenol increases to 215.27 mg.g(-1). The adsorption kinetics of phenol on activated carbon agrees with the pseudo-second-order adsorption model, and the adsorption isotherm follows the Langmuir pattern.
机译:在这项研究中,通过稻壳的热解并同时进行KOH活化和EDTA-4Na改性来制备基于稻壳的活性炭,并将其用于从水中吸附苯酚。当稻壳在500摄氏度下碳化并在750摄氏度下活化,碳与KOH的质量比为1:3时,可以制备出具有丰富的微孔,高比表面积2087 m(2 ).g(-1)和最大苯酚吸附量为194.24 mg.g(-1)。当通过同时在750℃下进行KOH活化和EDTA-4Na修饰来制备上述活性炭时,将含N的官能团引入到活性炭中,这有利于苯酚的吸附。在最佳条件下,碳:KOH:EDTA-4Na的质量比= 1:3:1,所得活性炭的比表面积减少至1368 m(2).g(-1),而其最大吸附量为苯酚增加到215.27 mg.g(-1)。苯酚在活性炭上的吸附动力学符合拟二级吸附模型,吸附等温线遵循Langmuir模式。

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