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首页> 外文期刊>Adsorption Science & Technology >Adsorption Characteristics of Coal-Based Activated Carbons. 1. Adsorption of Nitrogen and Carbon Dioxide
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Adsorption Characteristics of Coal-Based Activated Carbons. 1. Adsorption of Nitrogen and Carbon Dioxide

机译:煤基活性炭的吸附特性。 1.氮和二氧化碳的吸附

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Non-activated carbon from coal contains ultrafine pores in which adsorption of nitrogen at 77 K is controlled by activated diffusion. Carbons activated with phosphoric acid or with steam contain a large fraction of microporosity. However, they do not contain ultrafine pores or pore constrictions in which activated diffusion takes place. The BET equation can be applied to calculate the surface area of microporous carbon when the monolayer capacity lies in the relative pressure range 0.05-0.30, the BET areas in such cases being comparable with those obtained from the as-method. The Dubinin-Radushkevich (D-R) equation is the most suitable for the interpretation of CO2 adsoiption at 298 K. Chemical and physical activation starts with new pore creation, further activation being associated with pore widening. Microporosity is more predominant in chemically-activated carbons.
机译:来自煤的非活性炭包含超细孔,其中77 K处的氮吸附通过活性扩散来控制。用磷酸或蒸汽活化的碳具有很大一部分的微孔性。但是,它们不包含发生活化扩散的超细孔或收缩孔。当单层容量在相对压力范围0.05-0.30时,BET方程可用于计算微孔碳的表面积,这种情况下的BET面积与从方法获得的BET面积相当。 Dubinin-Radushkevich(D-R)方程最适合于298 K时CO2吸附的解释。化学和物理活化从产生新的孔开始,进一步的活化与孔变宽有关。在化学活化碳中,微孔性更为主要。

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