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Adsorption kinetics of phenol in aqueous solution onto activated carbon from wheat straw lignin

机译:小麦秸秆木质素对活性炭水溶液中苯酚的吸附动力学

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Activated carbon produced from wheat straw lignin using chemical activation with phosphoric acid acts as an activator at 873K. Porous structure of activated carbon was characterized by scanning electron microscopy and nitrogen adsorption. The BET surface area of activated carbon is 1,123m(2)/g, the total pore volume is 0.43cm(3)/g, and the nominal pore size is 0.12nm. Experiments were performed to investigate the adsorption kinetics of phenol in aqueous solution onto activated carbon. Four models (the pseudo-first-order model of Lagergren, the pseudo-second-order model of Lagergren, Elovich equation, and the intraparticle diffusion model) were used in this study. The results showed that the adsorption processes were perfectly fitted to the pseudo-second-order model with very high regression coefficients. The application of the intraparticle diffusion model indicated that the adsorption mechanism of phenol in aqueous solution was rather a complex process. The rate was controlled not only by intraparticle diffusion but also some other mechanisms.
机译:小麦秸秆木质素利用磷酸的化学活化作用制得的活性炭在873K时起活化剂的作用。活性炭的多孔结构通过扫描电子显微镜和氮吸附来表征。活性炭的BET表面积为1,123m(2)/ g,总孔体积为0.43cm(3)/ g,标称孔径为0.12nm。进行实验以研究水溶液中苯酚在活性炭上的吸附动力学。本研究使用了四个模型(Lagergren的伪一阶模型,Lagergren的伪二阶模型,Elovich方程和粒子内扩散模型)。结果表明,吸附过程非常适合拟二阶模型,具有很高的回归系数。颗粒内扩散模型的应用表明,苯酚在水溶液中的吸附机理是一个复杂的过程。该速率不仅受颗粒内扩散控制,还受其他一些机制控制。

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