Isotherms, kinetic and thermodynamic studies of methylene blue adsorption on chitosan flakes derived from African giant snail shell

Abidoye Olafadehan Olaosebikan, Ehigimetor Bello Victor, O. A. Kehinde, Morufat Bello Adebukola
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引用次数: 4

Abstract

In the present study, modeling of 19 adsorption isotherms, 8 kinetic models and thermodynamics of methylene blue (MB) adsorption on chitosan flakes synthesized using Archachatina marginata shell wastes was investigated in a batch mode. The operational parameters’ effects on the MB adsorption were studied. The model parameters were statistically analyzed using 10 error functions. The choices of the best fitted adsorption and kinetic models were based on the comparison of the sum of normalized error (SNE) and two statistical tools of information-based criteria. The 5-p Fritz-Schlüender isotherm best fitted the experimental adsorption data of MB on chitosan flakes based on SNE whereby maximum adsorption capacity, axm q , of 143.6660 mg/g was obtained. The adsorption rate of MB on chitosan flakes was kinetically described by pseudo second-order model at all initial concentrations of MB investigated, with film diffusion being the rate-controlling step and the adsorption process chemisorption-influenced. The calculated thermodynamic parameters, kJ/(mol K), negative 0 G  values revealed that the adsorption of MB onto chitosan flakes was physical, endothermic, spontaneous, energetically favorable and exergonic. The reaction mechanism of the adsorption of MB onto chitosan flakes was proposed taking cognizance of the electrostatic force of attraction between the negatively charged surface of the chitosan (biosorbent) and the positively charged MB. alkaline medium by varying pH values using 0.1 M HCl and 0.1 M measured by a pH meter. The effect of initial concentration of MB solution on the % removal of methylene blue (MB) was investigated by using 10 to 60 mL with a fixed amount of 0.1 g of biosorbent (chitosan) at contact time of 30 min, agitated using a mechanical orbit shaker set at 120 rev/min and ambient temperature of 30  2°C. The impact of contact time was carried out within 4 h durations at a fixed mass of 0.1 g chitosan and room 30  2°C. The thermodynamics study, which is hinged on the effect of variation of in within the ranges of 30 to 90°C at a fixed MJ  regression
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非洲巨蜗牛壳壳聚糖薄片吸附亚甲基蓝的等温线、动力学和热力学研究
研究了19条吸附等温线、8个吸附动力学模型和亚甲基蓝(MB)在壳聚糖薄片上的吸附热力学。研究了操作参数对吸附MB的影响。采用10个误差函数对模型参数进行统计分析。通过比较归一化误差(SNE)和两种信息化标准的统计工具,选择了最适合的吸附模型和动力学模型。5-p fritz - schlender等温线最符合壳聚糖薄片对MB的吸附实验数据,最大吸附量为143.6660 mg/g。采用拟二阶动力学模型描述了壳聚糖在不同初始浓度下的吸附速率,其中膜扩散为速率控制步骤,化学吸附影响吸附过程。计算得到的热力学参数kJ/(mol K)、负0 G值表明壳聚糖薄片对MB的吸附是物理吸附、吸热吸附、自发吸附、能量有利吸附和吸能吸附。利用0.1 M HCl和0.1 M pH值的不同pH值,考虑了带负电荷的壳聚糖(生物吸附剂)表面与带正电荷的MB.碱性介质之间的静电力吸引力,提出了壳聚糖薄片吸附MB的反应机理。研究了MB溶液初始浓度对亚甲基蓝(MB)去除率的影响。10 ~ 60 mL加入0.1 g固定量的生物吸附剂(壳聚糖),接触时间为30 min,在120转/分钟的机械轨道搅拌器上搅拌,环境温度为302℃。在0.1 g壳聚糖的固定质量和2°C的室温条件下,在4 h内研究接触时间的影响。热力学研究,这是取决于在30至90°C范围内的变化的影响在一个固定MJ回归
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