Sorption kinetics of heavy oil into porous carbons

吸附 多孔性 碳化 水银孔隙仪 材料科学 石墨 化学 曲折 动力学 化学工程 复合材料 吸附 多孔介质 有机化学 扫描电子显微镜 工程类 物理 量子力学
作者
Yoko Nishi,Norio Iwashita,Yoshihiro Sawada,Michio Inagaki
出处
期刊:Water Research [Elsevier]
卷期号:36 (20): 5029-5036 被引量:80
标识
DOI:10.1016/s0043-1354(02)00225-7
摘要

Sorption kinetics of heavy oil into porous carbons was evaluated by a concept of liquid sorption coefficient obtained from the weight increase of heavy oil with sorption time, which was measured by a wicking test. Exfoliated graphite, carbonized fir fibers and carbon fiber felts were used as porous materials. It was found that the liquid sorption coefficient of fibrous carbons was twice larger than that of exfoliated graphite. Such a difference in the liquid sorption coefficient between the exfoliated graphite and two fibrous carbons was caused by a difference in effective sorption porosity and tortuosity between them. For the exfoliated graphite and carbonized fir fibers, the liquid sorption coefficient and the effective sorption porosity were strongly dependent on their density. The maximum values of both liquid sorption coefficient and effective sorption porosity of the exfoliated graphite were shown at the bulk density around 16 kg/m3. The liquid sorption coefficient of the carbonized fir fibers increased with increasing the density in the range from 6 to 30 kg/m3. When the carbonized fir fibers were densified above 30 kg/m3, the sorption rate was saturated. On the other hand, the sorption kinetics into the carbon fiber felt was almost independent of the bulk density, because the density of the carbon fiber felt is not effective for the pore structure. The effect of bulk density on the sorption kinetics could be supported from an analysis of pore structure of the porous carbons with different densities, which was measured by mercury porosimeter.
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