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Adsorbent material based on passion-fruit wastes to remove lead (Pb), chromium (Cr) and copper (Cu) from metal-contaminated waters

机译:基于激情水果废物的吸附材料除去金属污染水域的引线(Pb),铬(Cr)和铜(Cu)

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The aim of the present work was to evaluate the feasibility of passion-fruit shell (PFS) biomass as adsorbent material to remove heavy metals from contaminated waters. Model mediums were used, which were composed of distilled water and the respective metal: lead (Pb), chromium (Cr) and copper (Cu), with a dose of 10g of dry PFSbiomass per liter of medium. The residual concentration of each metal was determined by Atomic Absorption Spectrophotometry (AAS). A good adsorption capacity was exhibited by this agro industrial waste, achieving removal levels of 96,93 and 82% for Pb, Cr and Cu, respectively. In addition, the results obtained showed an adequate fit to the Freundlich model (R~2 > 0.91), on the basis of which, the following values of adsorption capacity (k: 1.7057, 0.6784, 0.3302) and adsorption intensity (n: 0.6869, 2.3474, 1.0499), for Pb, Cr and Cu respectively, were obtained. Our results suggest that Pb, Cr and Cu ions can be removed by more than 80% by using this agro industrial waste, which with a minimum treatment could be used as an adsorbent material in the treatment of metal-contaminated waters.
机译:本作本作的目的是评估西番莲果壳(PFS)生物质作为吸附材料的可行性,以除去来自受污染的水的重金属。使用模型培养基,其由蒸馏水和​​相应的金属组成:铅(Pb),铬(Cr)和铜(Cu),每升培养基为10g干燥的Pfsbiomass。通过原子吸收分光光度法(AAS)测定每种金属的残留浓度。这种农业工业废物展出了良好的吸附能力,分别实现了Pb,Cr和Cu的去除水平96,93和82%。此外,所得到的结果表明,适用于Freundlich模型(R〜2> 0.91),基于以下吸附能力(K:1.7057,0.6784,0.3302)和吸附强度(n:0.6869)为PB,Cr和Cu分别获得2.3474,1.0499)。我们的研究结果表明,通过使用这种农业工业废物可以通过80%以上除去Pb,Cr和Cu离子,其最低处理可用于治疗金属污染水域的吸附材料。

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