首页> 外文期刊>Journal of the Chemical Society of Pakistan >Adsorption Mechanism of Microcrystalline Cellulose as Green Adsorbent for the Removal of Cationic Methylene Blue Dye
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Adsorption Mechanism of Microcrystalline Cellulose as Green Adsorbent for the Removal of Cationic Methylene Blue Dye

机译:微晶纤维素作为绿色吸附剂去除阳离子亚甲基蓝染料的吸附机理

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摘要

The adsorption mechanism of pure cellulose is yet to be explored. Thus, in this study, the adsorption mechanism of Microcrystalline Cellulose (MCC), a polysaccharide which is renewable, low cost and non-toxic, was studied on the adsorption of model dye Methylene blue (MB). It was found that the main adsorption mechanism of MB on MCC was due to the electrostatic attraction between the positively charged MB dye and negatively charged MCC. Thus, physical adsorption was the dominant effect, since electrostatic attraction is categorized as physical adsorption. This was verified by Dubinin-Radushkevich isotherm, whereby mean free energy adsorption value was found to be less than 8 kJ/mol. The values of Gibbs free energy for thermodynamics studies were found to be within the range of -20 kJ/mol and 0 kJ/mol, which also indicated physical adsorption. It was due to the electrostatic attraction as adsorption mechanism of this adsorption process which resulted rapid adsorption of MB dye. It was found that equilibrium dye concentration was achieved between 1-3 minutes, depending on the adsorption temperature. The rapid adsorption, as compared to a lot of materials, showed the potential of MCC as the future of green adsorbent. The adsorption of Methylene Blue on MCC fitted well in Langmuir Isotherm, with R-2 values of higher than 0.99, while fitted moderately in Freundlich Isotherm, with R-2 values between 0.9224 and 0.9223. Comparatively, the adsorption of MB on MCC fitted best Langmuir Isotherm as compared to Freundlich Isotherm which monolayer adsorption occurred at the homogenous surface of MCC. This also indicated adsorbed MB molecules do not interact with each other at neighboring adsorption sites. The maximum adsorption capacity calculated from Langmuir Isotherm was found to be 4.95 mg/g. Despite the potential of MCC as green adsorbent, the challenge of low adsorption capacity has to be addressed in the future.
机译:纯纤维素的吸附机理尚待探索。因此,在本研究中,研究了可再生,低成本且无毒的多糖微晶纤维素(MCC)在模型染料亚甲基蓝(MB)上的吸附机理。发现MB在MCC上的主要吸附机理是由于带正电荷的MB染料和带负电荷的MCC之间的静电吸引。因此,物理吸附是主要的作用,因为静电吸引力被归类为物理吸附。这由Dubinin-Radushkevich等温线证实,平均自由能吸附值小于8 kJ / mol。用于热力学研究的吉布斯自由能的值被发现在-20 kJ / mol和0 kJ / mol的范围内,这也表明存在物理吸附。正是由于静电吸附作为该吸附过程的吸附机理,导致了MB染料的快速吸附。发现取决于吸附温度,在1-3分钟之间达到平衡的染料浓度。与许多材料相比,快速吸附显示出MCC作为绿色吸附剂的未来的潜力。亚甲基蓝在MCC上的吸附在Langmuir等温线中拟合得很好,R-2值高于0.99,而在Freundlich等温线中适度拟合,R-2值在0.9224和0.9223之间。相比之下,与在MCC的均质表面上发生单层吸附的Freundlich等温线相比,MB在MCC上的吸附最适合Langmuir等温线。这也表明被吸附的MB分子在相邻的吸附位点彼此不相互作用。由Langmuir等温线计算得出的最大吸附容量为4.95mg / g。尽管MCC有潜力作为绿色吸附剂,但将来仍必须解决低吸附容量的挑战。

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