Methylene Blue Adsorption Kinetics Investigation by Coconut Shell Activated Carbon Adsorbent Using Fractional Power, Avrami and Bangham Models

Abdulghaffaar Assayyidi Yusuf, A. Abubakar, Muhammad Abdulrazak, Kamran Khan, G. Rajasekar
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Abstract

Methylene blue is not easily biodegradable, and its persistence in water can contribute to long-term contamination if not properly treated. Numerous adsorption kinetic study successes were achieved utilizing activated carbons of coconut shell, especially the Pseudo-First and Pseudo-Second order models with little/no regards to the unique behavior described by the Avrami, Bangham and the Fractional Power kinetic models. The parameters in those models are determined to describe the sorption mechanism. Avrami model fitting results suggests a complex adsorption process, which does not follow the first-order kinetic. Obtained results show that the Fractional Power model best described the Coconut Shell-Activated Carbon Methylene blue bio-sorption process at constant adsorption capacity of 15937.8 mg/g. Findings show that Bangham kinetic model does not fit the experimental data for Methylene blue sorption from aqueous solution. Methylene blue exposure issues like gastrointestinal discomfort, skin and eye irritation, and imbalances in the populations of various species in aquatic ecosystems due to impacts on their growth, reproduction and survival, may be solved using a very effective adsorbent, such as the Coconut Shell -Activated Carbon used here.  
使用分数功率、阿夫拉米和班哈姆模型研究椰壳活性炭吸附剂对亚甲蓝的吸附动力学
亚甲蓝不易生物降解,如果处理不当,其在水中的持久性会造成长期污染。利用椰壳活性碳进行的吸附动力学研究取得了许多成功,特别是伪一阶和伪二阶模型,几乎/完全不考虑 Avrami、Bangham 和分数功率动力学模型所描述的独特行为。这些模型中的参数是为了描述吸附机理而确定的。阿夫拉米模型拟合结果表明,吸附过程很复杂,并不遵循一阶动力学。结果表明,在吸附容量恒定为 15937.8 毫克/克时,分数功率模型最能描述椰壳活性炭对亚甲蓝的生物吸附过程。研究结果表明,Bangham 动力学模型并不适合从水溶液中吸附亚甲蓝的实验数据。使用非常有效的吸附剂,如这里使用的椰壳活性炭,可以解决接触亚甲蓝的问题,如肠胃不适、皮肤和眼睛刺激,以及水生生态系统中各种物种因生长、繁殖和生存受到影响而导致的种群失衡。
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