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首页> 外文期刊>Iranian Journal of Chemistry and Chemical Engineering >Attenuation Kinetics and Desorption Performance of artocarpus altilis Seed Husk for Co (Ⅱ), Pb (Ⅱ) and Zn (Ⅱ) Ions
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Attenuation Kinetics and Desorption Performance of artocarpus altilis Seed Husk for Co (Ⅱ), Pb (Ⅱ) and Zn (Ⅱ) Ions

机译:面包皮对Co(Ⅱ),Pb(Ⅱ)和Zn(Ⅱ)离子的衰减动力学和解吸性能。

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摘要

The potential of Bread Fruit (artocarpus altilis) Seed Husk (BFSH) as low-cost biosorbent for the removal of Pb (II), Zn (II) and Co (II) ions from aqueous solution was investigated. The adsorbent was characterized by the Fourier Transform InfraRed (FT-IR) spectroscopy, Scanning Electron Microscopy (SENT) and X-Ray Difflaction (XRD). The batch methodology was utilized to determine the effect of pH, metal ion concentration, adsorbent dose, contact time and temperature on biosorption. Data generated were fitted into appropriate isotherm, kinetic and thermodynamic models. The effect of pH showed an increase in adsorption of metals with an increase in pH and an optimum pH of 5.0 was obtained for Pb (II), while 6.0 were obtained for Co (II) and Zn (II) ions biosorption. An equilibrium sorption contact time of 30, 40 and 60 min was obtained for Co (II), Zn (II) and Pb (II) ions respectively. The biosorption of metal ions was in the order Co (II) Pb Zn (II). In general, the Freundlich model provided a better fit than the Langmuir, Tempkin, and Dubinin-Radushkevich isotherm models with R-2 values greater than 0.9. The pseudo-first-order kinetic model was applicable in the adsorption of Pb (II) and Zn (II) ions while the pseudo-second-order model provided the best fit for Co (II) ion adsorption. The adsorption mechanism was found to be controlled by the liquid film diffusion model (R-2 0.9) rather than the intraparticle diffusion model (R-2 0.9). Thermodynamics revealed a spontaneous, feasible, exothermic physisorption process and over 60% of the metal ions were desorbed using 0.1114 HCl and 0.1114 NaOH as eluent. The results showed that BFSH could be utilized as low-cost adsorbent for the removal of toxic heavy metals from solution.
机译:研究了面包果(artocarpus altilis)种子壳(BFSH)作为低成本生物吸附剂从水溶液中去除Pb(II),Zn(II)和Co(II)离子的潜力。通过傅立叶变换红外(FT-IR)光谱,扫描电子显微镜(SENT)和X射线衍射(XRD)对吸附剂进行表征。分批方法用于确定pH,金属离子浓度,吸附剂剂量,接触时间和温度对生物吸附的影响。将生成的数据拟合到适当的等温线,动力学和热力学模型中。 pH的影响表明金属的吸附随pH的增加而增加,Pb(II)的最佳pH为5.0,而Co(II)和Zn(II)离子的生物吸附获得6.0。 Co(II),Zn(II)和Pb(II)离子的平衡吸附接触时间分别为30、40和60分钟。金属离子的生物吸附顺序为Co(II)> Pb> Zn(II)。通常,与R-2值大于0.9的Langmuir,Tempkin和Dubinin-Radushkevich等温线模型相比,Freundlich模型具有更好的拟合度。拟一级动力学模型适用于Pb(II)和Zn(II)离子的吸附,而拟二级模型最适合Co(II)离子的吸附。发现吸附机理是由液膜扩散模型(R-2> 0.9)而不是颗粒内扩散模型(R-2 <0.9)控制的。热力学显示出自发的,可行的,放热的物理吸附过程,使用0.1114 HCl和0.1114 NaOH作为洗脱液解吸了60%以上的金属离子。结果表明,BFSH可作为低成本吸附剂从溶液中去除有毒重金属。

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