Comparative Analysis of the Adsorption of Methylene Blue Using Magnetised and Non-Magnetised Coconut Shell Biochar

A. Musa
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Abstract

It is envisaged that magnetisation might alter the sorption behaviours of magnetised biochars due to some variation in the physicochemical properties from their precursor. This study evaluated the adsorption behaviours of a coconut shell biochar produced at 600 °C, CSB600, and its magnetised pair, MCSB600, in the adsorption of methylene blue (MB) from aqueous solutions. Langmuir, Freundlich and Redlich-Peterson isotherm models were used to describe the experimental isotherm using linear and nonlinear regression methods to determine the best fit for MB adsorption from the batch experiments conducted. The Langmuir model proved to be the best fit to explain the experimental data as it had the highest R2 (0.9684 and 0.9855) from linear regression and the lowest hybrid fractional error function, HYBRID (4.58, 1.145) and marquardt’s percent standard deviation, MPSD (10.61, 5.04) error function values from the nonlinear regression methods with maximum monolayer adsorption capacities of 5.590 and 5.229 mg/g for CSB600 and MCSB600 respectively. The magnetised biochar exhibited similar adsorption characteristics to what was observed for the non-magnetised biochar and only about 6.46% lower MB adsorption capacity was recorded. A p-value of 0.088 obtained suggested the isotherms were similar and therefore, magnetisation did not affect the adsorption of MB.
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磁化与非磁化椰壳生物炭吸附亚甲基蓝的对比分析
据设想,磁化可能会改变磁化生物炭的吸附行为,因为磁化生物炭的物理化学性质与其前体有一些变化。本研究评价了600℃条件下制备的椰子壳生物炭CSB600及其磁化对MCSB600对水溶液中亚甲基蓝(MB)的吸附行为。采用Langmuir, Freundlich和Redlich-Peterson等温线模型描述实验等温线,采用线性和非线性回归方法确定最适合批量实验的MB吸附。Langmuir模型最适合解释实验数据,线性回归的R2最高(0.9684和0.9855),非线性回归的混合分数误差函数hybrid(4.58, 1.145)和marquardt的百分比标准差MPSD(10.61, 5.04)误差函数值最小,CSB600和MCSB600的最大单层吸附量分别为5.590和5.229 mg/g。磁化生物炭的吸附性能与未磁化生物炭相似,仅比未磁化生物炭低6.46%左右。得到的p值为0.088表明等温线相似,因此磁化不影响MB的吸附。
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