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首页> 外文期刊>RSC Advances >Reusable bentonite clay: modelling and optimization of hazardous lead and p-nitrophenol adsorption using a response surface methodology approach
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Reusable bentonite clay: modelling and optimization of hazardous lead and p-nitrophenol adsorption using a response surface methodology approach

机译:可重复使用的Bentonite Clay:使用响应面方法方法建模和优化危险铅和P-硝基苯酚吸附

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摘要

In this work, bentonite clay (BC) calcined at 500 degrees C was used as an adsorbent (BC-500) for the adsorption of Pb2+ and p-nitrophenol. The ability of BC-500 for the removal of Pb2+ and p-nitrophenol has been investigated. The adsorption studies tailored well the pseudo-first-order and the Langmuir model for Pb2+ and p-nitrophenol both. In addition, the optimal removal of Pb2+ and p-nitrophenol was found at pH 5 for Pb2+ and pH 6 for p-nitrophenol. However, the change of temperature (20-60 degrees C) was found to have a negative effect on the adsorption process on BC-500. Based on the Dubinin-Radushkevich model the adsorption occurs via a physical process. Accordingly, the adsorption mechanism was proposed using N-2-physisorption analysis before and after adsorption of Pb2+ and p-nitrophenol. The reusability of BC-500 was examined and the outcomes recommended that BC-500 had good potential as an economic and proficient adsorbent for Pb2+ or p-nitrophenol from contaminated water. Finally, the experimental Pb2+ and p-nitrophenol removal efficiency were found to be 90.93 +/- 2.15% and 98.06 +/- 1.87% while the predicted value by model equals 91.28 +/- 1.68 and 97.24 +/- 2.54, respectively, showing that the predicted model values are in good agreement with the experimental value.
机译:在这项工作中,用500℃煅烧的膨润土粘土(BC)用作吸附剂(BC-500),用于吸附PB2 +和对硝基苯酚。研究了BC-500用于去除PB2 +和P-NITOLOphenol的能力。吸附研究定制了PB2 +和P-硝基苯酚的伪第一阶和Langmuir模型。此外,在pB2 +和pH6的pH5中发现Pb2 +和p-硝基苯酚的最佳去除,对于p-硝基苯酚。然而,发现温度(20-60℃)的变化对BC-500的吸附过程产生负面影响。基于Dubinin-Radushkevich模型,吸附通过物理过程进行。因此,在吸附PB2 +和对硝基苯酚之前和之后使用N-2物理化分析提出了吸附机理。检查了BC-500的可重用性,结果建议BC-500作为PB2 +或来自受污染的水的PB2 +或P-硝基苯酚的经济性和精通吸附剂具有良好的潜力。最后,发现实验PB2 +和对硝基苯酚去除效率为90.93 +/- 2.15%和98.06 +/- 1.87%,而预测值分别等于91.28 +/- 1.68和97.24 +/- 2.54,显示预测的模型值与实验值吻合良好。

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  • 来源
    《RSC Advances 》 |2019年第10期| 共14页
  • 作者单位

    Chouaib Doukkali Univ Lab Catalysis &

    Corros Mat Fac Sci El Jadida BP 20 El Jadida 24000 Morocco;

    Ibn Zohr Univ Mat &

    Environm Lab Fac Sci Agadir Morocco;

    Ibn Zohr Univ Mat &

    Environm Lab Fac Sci Agadir Morocco;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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