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Nano activated carbon from industrial mine coal as adsorbents for removal of dye from simulated textile wastewater: operational parameters and mechanism study

机译:工业矿煤中的纳米活性炭作为吸附剂,用于去除模拟纺织废水中的染料:操作参数和机理研究

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Feasibility studies were conducted in the preparation of an effective activated carbon (AC) using the new raw Egyptian coal source called Maghara coal. Using this is eco-friendly, economical and highly available since it is a local and a natural material; thus, it was inspected for the removal of methylene blue (MB) dye from aqueous solutions. A very simple technique known as impregnation activated carbon with NaOH by chemical activation process was used. The most proper nano-activated carbon (NAC) was produced from carbonization of average particle size coal of 0.478?mm at 550?°C for 90?min. with 50% NaOH and ratio 35. The equilibrium data of MB onto the most effective prepared material was simulated using Langmuir and Freundlich isotherm models. Moreover, the adsorption mechanism of MB onto the prepared nano-activated carbon was suggested to take place as mono-layers adsorption on the homogenous active sites. The maximum mono-layers adsorption capacity was recorded as 28.09?mg/g. The morphological, chemical, and textural properties of the prepared NaOH activated carbon was investigated using TEM, Raman spectroscopy, FT-IR, and BET. Results indicated that the material was prepared at spherical shape with average diameter of 38?nm with high total pore volume of 0.183?cm3/g. The adsorption stability and reuseability of NAC was established using HCl as an eluent solution. The findings revealed the versatility of Maghara coal as a good precursor for the preparation of high quality, efficient and economical NAC.
机译:在使用称为Maghara煤的新埃及原始煤源制备有效活性炭(AC)方面进行了可行性研究。由于它是当地的天然材料,因此使用它既环保,经济又易于使用。因此,检查了从水溶液中去除亚甲基蓝(MB)染料的情况。使用了一种非常简单的技术,即通过化学活化工艺用NaOH浸渍活性炭。最合适的纳米活性炭(NAC)是由平均粒径为0.478?mm的煤在550°C下碳化90?min产生的。用50%的NaOH和35的比率。使用Langmuir和Freundlich等温模型模拟了MB到最有效制备材料上的平衡数据。而且,MB在制备的纳米活性炭上的吸附机理被认为是在均质活性位上单层吸附。记录的最大单层吸附容量为28.09?mg / g。使用TEM,拉曼光谱,FT-IR和BET研究了制备的NaOH活性炭的形态,化学和结构特性。结果表明,该材料制备为球形,平均直径为38nm,总孔容高,为0.183Ωcm3/ g。使用HCl作为洗脱液可确定NAC的吸附稳定性和可重复使用性。研究结果表明,Maghara煤具有多种用途,可作为制备高质量,高效和经济的NAC的良好前体。

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