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Synthesis of activated carbon from biowaste of fir bark for methylene blue removal

机译:利用杉木皮生物废料合成活性炭去除亚甲蓝

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摘要

Activated carbon (AC) was successfully prepared from low-cost forestry fir bark (FB) waste using KOH activation method. Morphology and texture properties of ACFB were studied by scanning and high-resolution transmission electron microscopies (SEM and HRTEM), respectively. The resulting fir bark-based activated carbon (ACFB) demonstrated high surface area (1552 m2 g−1) and pore volume (0.84 cm3 g−1), both of which reflect excellent potential adsorption properties of ACFB towards methylene blue (MB). The effect of various factors, such as pH, initial concentration, adsorbent content as well as adsorption duration, was studied individually. Adsorption isotherms of MB were fitted using all three nonlinear models (Freundlich, Langmuir and Tempkin). The best fitting of MB adsorption results was obtained using Freundlich and Temkin. Experimental results showed that kinetics of MB adsorption by our ACFB adsorbent followed pseudo-second-order model. The maximum adsorption capacity obtained was 330 mg g−1, which indicated that FB is an excellent raw material for low-cost production of AC suitable for cationic dye removal.
机译:使用KOH活化方法成功地从低成本林业杉木树皮(FB)废料中制备了活性炭(AC)。分别通过扫描和高分辨率透射电子显微镜(SEM和HRTEM)研究了ACFB的形态和织构特性。所得的基于杉木树皮的活性炭(ACFB)具有高表面积(1552 m 2 g -1 )和孔体积(0.84 cm 3 g −1 ),两者均反映了ACFB对亚甲基蓝(MB)的极好的潜在吸附性能。分别研究了各种因素的影响,例如pH,初始浓度,吸附剂含量以及吸附持续时间。使用所有三个非线性模型(Freundlich,Langmuir和Tempkin)拟合MB的吸附等温线。使用Freundlich和Temkin可以获得最佳的MB吸附结果。实验结果表明,ACFB吸附剂对MB的吸附动力学遵循伪二级模型。获得的最大吸附容量为330 mg g -1 ,这表明FB是低成本生产适用于阳离子染料去除的AC的极佳原料。

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