椰壳吸附水溶液中铁离子的参数统计意义

B. Olufemi, A. Nlerum
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摘要

本文研究了未经化学改性的椰壳粉(CSP)对水溶液中铁离子的参数统计吸附。吸附量随吸附剂用量的增加、吸附剂用量的减少、接触时间的延长、温度的降低和粒径的减小而增大。据观察,大约一克吸附剂足以去除98%的铁离子。总接触时间约为40分钟就足以使离子几乎完全吸附,而pH约为6.0时吸附量最大。吸附数据与Langmuir、Freundlich、Temkin和Dubinin-Radushkevich等温线拟合,与Freundlich等温线模型拟合最多。由Temkin和Dubinin-Radushkevich等温线模型得到的能量值表明吸附剂具有较高的化学吸附现象。一些动力学模型的研究证实了CSP对铁离子的吸附是一个准二级动力学过程,这进一步证实了化学吸附在吸附中起主导作用。傅里叶变换分析(FTIR)进一步证实了研究结果。采用方差分析(ANOVA)和Bonferroni-Holm postthoc显著性检验对吸附进行了参数化统计验证。总之,椰子壳被证明是一种非常有效和合适的吸附剂,可以去除水溶液中的铁离子。
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Parametric Statistical Significance of Iron (II) Ions Adsorption by Coconut Shell in Aqueous Solutions
The parametric statistical adsorption of chemically unmodified coconut shell powder (CSP) to adsorb iron (II) ions from aqueous solutions was examined in this work. It was observed that the adsorption capacity increased with increasing adsorbent dose, reducing adsorbate dose, increasing contact time, decreasing temperature and reducing particle size. As observed about one gram of the adsorbent was sufficient enough to remove 98 % iron (II) ions. A total contact time of about 40 minutes was sufficient for almost complete adsorption of the ions, while a pH of about 6.0 exhibited the maximum adsorption capacity. The sorption data were fitted into Langmuir, Freundlich, Temkin and the Dubinin-Radushkevich isotherms, fitted most with the Freundlich Isotherm model. The energy values obtained from the Temkin and Dubinin-Radushkevich isotherm model indicated high chemisorption phenomenon with the adsorbents. Investigation of some kinetic models confirmed that the adsorption of iron (II) ions using CSP was a pseudo-second order kinetic process, which further corroborates that chemisorption dominates the adsorption. Fourier Transform Analysis (FTIR) further established and justified the outcome of the study. The adsorption was parametrically justified statistically with Analysis of Variance (ANOVA) and Bonferroni-Holm Posthoc significance test. Conclusively, coconut shell proved strongly to be an effective and suitable adsorbent for removing iron (II) ions from aqueous solutions.
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