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Removal of Zinc from Aqueous Solution by Adsorption using Coir Dust (Residue and Extract)

机译:使用椰壳粉尘(残留物和提取物)吸附去除水溶液中的锌

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The adsorption behaviour of Zn (II) ions onto unmodified coconut coir dust residue and NaCl treated coconut coir dust extract (UCCR, UCCE, NaCCE and NaCCR) was investigated at 30oC and pH of 7.0. The trend in the percentage adsorption of the adsorbate on the adsorbents decreased in the following descending: UCCR NaCCE>NaCCR> UCCE. There was justification in modifying the coir dust extract since this enhanced its adsorptive capacity. However, modification of the coir residue decreased its adsorptive capacity and not justifiable. The sorption data were also subjected to Langmuir, Freundlich and Flory-Huggins adsorption isotherm models. The adsorption of Zn(II) ions on NaCl treated coir residue (NaCCR) conform to the Langmuir isotherm model with high correlation value R2 > 0.90. This indicated monolayer surface coverage of the Zn(II) ions on these adsorbents. The data for the adsorption on NaCl treated coir residue (NaCCR) and NaCl treated coir residue (NaCCR) at 50oC fitted well to the Freundlich isotherm model implying a heterogeneous surface coverage of the adsorbents. All the adsorptions of Zn(II) ions on these adsorption did not fit the Flory-Huggins model. The adsorption increased with increase in temperature indicating an endothermic process. The negative value of ?Go signifies that the adsorption reaction was spontaneous process. The result indicate that the coir dust residue and modified coir dust extract could be employed as low-cost alternative for the removal of Zn(II) ions from solution.
机译:在30oC和pH值为7.0的条件下,研究了Zn(II)离子在未改性的椰壳粉尘残余物和NaCl处理的椰壳粉尘提取物(UCCR,UCCE,NaCCE和NaCCR)上的吸附行为。吸附剂在吸附剂上的吸附百分数的趋势以下列降序下降:UCCR NaCCE> NaCCR> UCCE。有理由对椰壳粉尘提取物进行改性,因为这提高了其吸附能力。然而,对椰壳残基的修饰降低了其吸附能力并且是不合理的。还对吸附数据进行了Langmuir,Freundlich和Flory-Huggins吸附等温线模型。 Zn(II)离子在NaCl处理的椰壳残基(NaCCR)上的吸附符合Langmuir等温模型,具有较高的相关值R2> 0.90。这表明这些吸附剂上Zn(II)离子的单层表面覆盖。在50oC的NaCl处理的椰壳残渣(NaCCR)和NaCl处理的椰壳残渣(NaCCR)上的吸附数据非常适合Freundlich等温模型,表明吸附剂的表面分布不均。 Zn(II)离子在这些吸附上的所有吸附均不符合Flory-Huggins模型。吸附随着温度的升高而增加,表明吸热过程。 ΔGo的负值表示吸附反应是自发过程。结果表明,椰壳粉尘残留物和改性椰壳粉尘提取物可以作为低成本的替代品,用于从溶液中去除Zn(II)离子。

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