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Biosorptive removal of Pb~(2+), Cd~(2+) and Zn~(2+) ions from water by Lagenaria vulgaris shell

机译:寻常紫花苜蓿壳吸附去除水中Pb〜(2+),Cd〜(2+)和Zn〜(2+)离子的研究。

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摘要

Lagenaria vulgaris (LV) shell was used as a biosorbent for the removal of heavy metal ions, Pb2+, Cd2+ and Zn2+, from aqueous solutions. Experiments were carried out under batch conditions. The effects of contact time, initial pH, temperature and stirring speed on removal efficiency are presented. Sorption of the investigated metals was fast, reaching equilibrium after about 5 to 10 min, depending on the metal. Biosorption was highly pH-dependent, and the optimal pH for investigated metals was in the range of 4.5 to 6.0. The effects of temperature demonstrated that biosorption of the metals is a chemical process. SEM analysis revealed interesting morphological changes after acid refinement of the raw biosorbent and metal uptake that is related to the chemical nature of the biosorption process. EDX analysis ofLagenaria vulgaris biosorbent (LVB) before and after metal sorption revealed that the ion exchange mechanism was the principal sorption process. Fourier transform infrared spectroscopy (FTIR) analysis has shown that major functional groups (carboxyl and hydroxyl) on the biosorbent surface took part in the metal ion uptake process as active sites. The results obtained showed that Lagenaria vulgaris based biosorbent could be used as an effective and low-cost pre-treatment step for removal of toxic metals from wastewaters.
机译:Lagenaria vulgaris(LV)壳用作生物吸附剂,用于从水溶液中去除重金属离子Pb2 +,Cd2 +和Zn2 +。实验在间歇条件下进行。给出了接触时间,初始pH,温度和搅拌速度对去除效率的影响。所研究的金属的吸附速度很快,大约5至10分钟后达到平衡,具体取决于金属。生物吸附高度依赖于pH值,所研究金属的最佳pH值为4.5至6.0。温度的影响表明金属的生物吸附是一个化学过程。 SEM分析揭示了原始生物吸附剂的酸精制和金属吸收后有趣的形态变化,这与生物吸附过程的化学性质有关。金属吸附之前和之后对普通紫花苜蓿生物吸附剂(LVB)的EDX分析表明,离子交换机制是主要的吸附过程。傅里叶变换红外光谱(FTIR)分析表明,生物吸附剂表面的主要官能团(羧基和羟基)作为活性位点参与了金属离子的吸收过程。获得的结果表明,基于寻常的紫花苜蓿的生物吸附剂可以用作一种有效且低成本的预处理步骤,以去除废水中的有毒金属。

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