Tyre-derived activated carbon – textural properties and modelling of adsorption equilibrium of n-hexane

吸附 活性炭 己烷 化学 工业化学 化学工程 碳纤维 热力学 材料科学 色谱法 物理化学 复合材料 生化工程 复合数 工程类 物理
作者
Tomasz Kotkowski,Robert Cherbański,Eugeniusz Molga
出处
期刊:Inzynieria Chemiczna I Procesowa [De Gruyter Open]
被引量:4
标识
DOI:10.24425/cpe.2019.130221
摘要

There is general agreement that primary pyrolysis products of end-of-life tyres should be valorised to improve the economics of pyrolysis.In this work, tyre pyrolysis char (TPC) is produced in a pyrolysis pilot plant designed and built at our home university.The produced TPC was upgraded to tyre-derived activated carbon (TDAC) by activation with CO 2 , and then characterised using stereological analysis (SA) and nitrogen adsorption at 77 K. SA showed that the grains of TPC and TDAC were quasispherical and slightly elongated with a 25% increase in the mean particle cross-section surface area for TDAC.The textural properties of TDAC demonstrated the BET and micropore surface areas of 259 and 70 m 2 /g, respectively.Micropore volume and micropore surface area were 5.8 and 6.7 times higher for TDAC than TPC at ∼ 2 nm, respectively.The n-hexane adsorption was investigated using experiments and modelling.Eight adsorption isotherms along with three error functions were tested to model the adsorption equilibrium.The optimum sets of isotherm parameters were chosen by comparing sum of the normalized errors.The analysis indicated that the Freundlich isotherm gave the best agreement with the equilibrium experiments.In relation to different activated carbons, the adsorption capacity of TDAC for n-hexane is about 16.2 times higher than that of the worst reference material and 4.3 times lower than that of the best reference material.In addition, stereological analysis showed that activation with CO 2 did not change the grain's shape factors.However, a 25% increase in the mean particle cross-section surface area for TDAC was observed.
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