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Bio-butanol sorption performance on novel porous-carbon adsorbents from corncob prepared via hydrothermal carbonization and post-pyrolysis method

机译:水热碳化后热解法制备的玉米芯新型多孔碳吸附剂对生物丁醇的吸附性能

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摘要

A series of porous-carbon adsorbents termed as HDPC (hydrochar-derived pyrolysis char) were prepared from corncob and used for the 1-butanol recovery from aqueous solution. The influences of pyrolysis temperature on properties of the adsorbents were systematically investigated. The results showed that hydrophobicity, surface area, and pore volume of HDPC samples increased with an increase in pyrolysis temperature. Furthermore, the adsorption mechanism of 1-butanol on the adsorbents was explored based on correlation of the samples properties with adsorption parameters extracted from the 1-butanol adsorption isotherms (K F and Q e12). Overall, the 1-butanol adsorption capacity increased with a decrease in polarity and an increase in aromaticity, surface area and pore volume of HDPC samples. However, at different pyrolysis temperature, the factors causing the increase of 1-butanol adsorption on the adsorbents are variable. The kinetic experiments revealed that the pores played a vital role in the 1-butonal adsorption process. The intraparticle diffusion model was used to predict the adsorption kinetic process. The simulation results showed that intraparticle diffusion was the main rate-controlling step in the 1-butanol adsorption process.
机译:从玉米芯制备了一系列称为HDPC(烃类热解炭)的多孔碳吸附剂,并将其用于从水溶液中回收1-丁醇。系统地研究了热解温度对吸附剂性能的影响。结果表明,HDPC样品的疏水性,表面积和孔体积随热解温度的升高而增加。此外,基于样品性质与从1-丁醇吸附等温线(K F和Q e12)提取的吸附参数之间的相关性,探讨了1-丁醇在吸附剂上的吸附机理。总体而言,HDPC样品的1-丁醇吸附能力随极性的降低以及芳香度,表面积和孔体积的增加而增加。然而,在不同的热解温度下,引起1-丁醇在吸附剂上吸附增加的因素是可变的。动力学实验表明,孔在1-丁酮吸附过程中起着至关重要的作用。颗粒内扩散模型用于预测吸附动力学过程。模拟结果表明,粒子内扩散是1-丁醇吸附过程中的主要速率控制步骤。

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