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Mesoporous activated carbon from Pentace species sawdust via microwave-induced KOH activation: optimization and methylene blue adsorption

机译:来自PENTACE物种锯末的中孔活性炭通过微波诱导的KOH活化:优化和亚甲基蓝吸附

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This work studied the optimization of preparation conditions of Pentace species sawdust activated carbon (PSAC) via microwave-induced KOH activation for the adsorption of methylene blue (MB) dye from aqueous solutions. The produced activated carbon was characterised through Brunauer-Emmett-Teller (BET) surface area and pore structural analysis, proximate and ultimate, scanning electron microscopy, and Fourier transform infrared spectroscopy. Response surface methodology technique was used to optimize the radiation power, radiation time and impregnation ratio for MB removal and PSAC yield through central composite design. The optimum preparation conditions for PSAC were obtained at a radiation power of 418W, radiation time of 6.4min, and an impregnation ratio of 0.5, which resulted in 27% PSAC yield and 93.74% MB removal. A mesoporous structure of PSAC was formed, with a BET surface area, total pore volume and average pore diameter of 914.15m(2)/g, 0.52cm(3)/g, and 3.19nm, respectively. The experimental kinetic data were well described by a pseudo-second-order model and intraparticle diffusion. Adsorption data fitted the Redlich-Peterson equation better than the Langmuir, Freundlich, Temkin, Dubinin-Radushkevich and Sips equations. However, the exponential value of Redlich-Peterson approached unity, hence, resulting in the original Langmuir equation, with adsorption capacity of 357.14mg/g. The adsorption performance was effectively preserved even after four consecutive cycles, demonstrating good regeneration ability.
机译:该工作研究了通过微波诱导的KOH活化来优化普及物种锯末活性炭(PSAC)的制备条件,用于吸附亚甲基蓝(MB)染料从水溶液中吸附。通过Brunauer-Emmett-Teller(BET)表面积和孔结构分析,近似和最终,扫描电子显微镜和傅里叶变换红外光谱,所生产的活性炭。响应面方法技术用于通过中央复合设计优化MB去除和PSAC产量的辐射功率,辐射时间和浸渍率。在418W的辐射功率下获得PSAC的最佳制备条件,辐射时间为6.4分钟,浸渍比为0.5,导致27%的PSAC产率和93.74%的MB除去。形成介孔结构,具有BET表面积,BET表面积,总孔体积和平均孔径为914.15m(2)/ g,0.52cm(3)/ g和3.19nm。实验动力学数据通过伪二阶模型和骨质型扩散良好地描述。吸附数据比Langmuir,Freundlich,Temkin,Dubinin-Radushkevich和Sips方程更好地安装了Redlich-Peterson方程。然而,Redlich-Peterson的指数值接近统一,因此导致原始Langmuir方程,吸附容量为357.14mg / g。即使在四次连续循环后,也有效地保存了吸附性能,证明了良好的再生能力。

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