Advanced Multifunctional Materials Laboratory, Chemistry Department, Faculty of Science, Assiut University, Assiut, 71515, Egypt.
Sci Rep. 2022 Mar 31;12(1):5499. doi: 10.1038/s41598-022-09475-4.
The resources of clean water worldwide are very limited, and climate change is already affecting the available supplies. Therefore, developing a low-cost, highly efficient, and recyclable adsorbent to upgrade water quality has become an essential task. Herein, we report the fabrication of activated carbon (AC) adsorbents derived from lignocellulosic wastes. Both physical and chemical activation were investigated to modify the surface texture properties. The results indicated that increasing the activation temperature, whether physically or chemically, increases the specific surface area (S). On the contrary, increasing the amount of the chemical activating agent significantly decreases the S values. The S of 1771, 2120, and 2490 m g were obtained for water vapor, KCO and KOH, at activation temperatures of 950 °C, 800 °C, and 800 °C, respectively. Methylene blue (MB) and phenol were used as adsorbates for the adsorption experiment. Adsorption of methylene blue dye revealed the ability of the water activated carbon to remove more than 95% of the dye (100 ppm) within 5 min with an adsorption capacity of 148.8 mg g. For phenol adsorption, Several parameters were investigated, including initial concentration (50-250 ppm), pH (2-10), contact time (5-60 min), and temperature (25-45 °C). The highest adsorption capacity of phenol achieved was 158.9 mg g. The kinetics of adsorption of phenol was better described by pseudo-second-order reaction while the isotherm process using Langmuir model. This study presents a roadmap for conversion of lignocellulosic biomass waste into highly efficient porous carbon adsorbents.
全球清洁水资源的资源非常有限,气候变化已经影响到了现有水资源的供应。因此,开发一种低成本、高效率和可回收的吸附剂来改善水质已成为一项必要任务。在这里,我们报告了由木质纤维素废物制备的活性炭(AC)吸附剂。研究了物理和化学活化来改变表面纹理特性。结果表明,无论是物理还是化学活化,增加活化温度都会增加比表面积(S)。相反,增加化学活化剂的量会显著降低 S 值。水蒸气、KCO 和 KOH 在 950°C、800°C 和 800°C 的活化温度下,分别获得 1771、2120 和 2490 m²/g 的 S 值。亚甲基蓝(MB)和苯酚被用作吸附实验的吸附质。吸附亚甲基蓝染料表明,水活化碳能够在 5 分钟内去除超过 95%的染料(100 ppm),吸附容量为 148.8 mg/g。对于苯酚吸附,研究了多个参数,包括初始浓度(50-250 ppm)、pH 值(2-10)、接触时间(5-60 min)和温度(25-45°C)。苯酚的最高吸附容量达到 158.9 mg/g。苯酚吸附的动力学更符合准二级反应,而等温过程则符合 Langmuir 模型。本研究为将木质纤维素生物质废物转化为高效多孔碳吸附剂提供了一条途径。