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Optimization of Biosorptive Removal of Dye from Aqueous System by Cone Shell of Calabrian Pine

机译:卡拉布里亚松果壳对水系统中染料的吸附脱除工艺优化

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摘要

The biosorption performance of raw cone shell of Calabrian pine for C.I. Basic Red 46 as a model azo dye from aqueous system was optimized using Taguchi experimental design methodology. L9 (33) orthogonal array was used to optimize the dye biosorption by the pine cone shell. The selected factors and their levels were biosorbent particle size, dye concentration, and contact time. The predicted dye biosorption capacity for the pine cone shell from Taguchi design was obtained as 71.770 mg g−1 under optimized biosorption conditions. This experimental design provided reasonable predictive performance of dye biosorption by the biosorbent (R 2: 0.9961). Langmuir model fitted better to the biosorption equilibrium data than Freundlich model. This displayed the monolayer coverage of dye molecules on the biosorbent surface. Dubinin-Radushkevich model and the standard Gibbs free energy change proposed physical biosorption for predominant mechanism. The logistic function presented the best fit to the data of biosorption kinetics. The kinetic parameters reflecting biosorption performance were also evaluated. The optimization study revealed that the pine cone shell can be an effective and economically feasible biosorbent for the removal of dye.
机译:卡拉布里亚松生锥壳对C.I.的吸附性能使用Taguchi实验设计方法对碱性红46作为水系统中的偶氮染料进行了优化。 L9(3 3 )正交阵列用于优化染料对松锥壳的生物吸附。选择的因素及其水平是生物吸附剂的粒径,染料浓度和接触时间。在优化的生物吸附条件下,Taguchi设计预测的松果壳对染料的生物吸附能力为71.770 mg g -1 。该实验设计为生物吸附剂对染料的生物吸附提供了合理的预测性能(R 2 :0.9961)。 Langmuir模型比Freundlich模型更适合生物吸附平衡数据。这显示了生物吸附剂表面上染料分子的单层覆盖。 Dubinin-Radushkevich模型和标准的吉布斯自由能变化提出了主要的物理吸附方法。逻辑函数最适合生物吸附动力学数据。还评估了反映生物吸附性能的动力学参数。优化研究表明,松果壳是一种用于去除染料的有效且经济可行的生物吸附剂。

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    Fatih Deniz;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 138986
  • 总页数 10
  • 原文格式 PDF
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