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首页> 外文期刊>Separation and Purification Technology >Sorption of Pb(II),Ni(II),Cu(II)and Cd(II)from aqueous solution by olive stone waste
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Sorption of Pb(II),Ni(II),Cu(II)and Cd(II)from aqueous solution by olive stone waste

机译:橄榄石废料从水溶液中吸附Pb(II),Ni(II),Cu(II)和Cd(II)

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Olive stone waste generated in the olive oil production process has been investigated as metal biosorbent for Pb(II),Ni(II),Cu(II)and Cd(II)from aqueous solutions for its wide availability as agricultural waste and also for its cellulosic matrix rich of potential metal binding active sites.The effect of contact time,solution pH,ionic medium and initial metal concentration were studied in batch experiments at room temperature.Maximum metal sorption was found to occur at initial pH around 5.5-6.0.Kinetic studies revealed that the initial uptake was rapid and equilibrium was established in 1 h for all the studied metals and that the data followed the pseudo-second order reaction.The equilibrium sorption data for single metal systems at initial pH 5.5 were described by the Langmuir and Freundlich isotherm models;however,the non-competitive Freundlich model has been found to provide the best correlation.The highest value of Langmuir maximum uptake,(q_(max)),was found for cadmium(6.88 X 10~(-5)mol g~(-1))followed by lead(4.47 X 10~(-5)mol g~(-1)),nickel(3.63 X 10~(-5)molg~(-1))and copper(3.19 X 10~(-5)mol g~(-1)).Similar Freundlich empirical constants,kappa,were obtained for all metals(2.4 X 10~(-5)to 2.8 X 10~(-5)).Adsorption-complexation,in addition to ion-exchange,must be involved in the sorption process of copper,lead and cadmium while ion-exchange is the most important mechanism for Ni sorption.An increase of ionic strength concentration caused a decrease in metal removal.Sorption experiments with equimolar concentration of each metal in binary mixtures were also performed and then the extended Langmuir isotherm model fits adequately the experimental data.Desorption experiments put into evidence that after three contacts neither HCl nor EDTA solutions were able to desorb metals from the olive stones completely.The results obtained show that olive stone waste,which has a very low economical value,may be used for the treatment of wastewaters contaminated with heavy metals.
机译:人们已经研究了橄榄油生产过程中产生的橄榄石废料作为水溶液中Pb(II),Ni(II),Cu(II)和Cd(II)的金属生物吸附剂,因为其广泛用作农业废料,并且其用途广泛。纤维素基质中富含潜在的金属结合活性位点。在室温下的分批实验中研究了接触时间,溶液pH值,离子介质和初始金属浓度的影响。发现最大金属吸附发生在初始pH值5.5-6.0左右。研究表明,所有被研究的金属的初始吸收都很快,并且在1小时内建立了平衡,数据遵循伪二级反应.Langmuir和Freundlich等温模型;但是,已发现非竞争性Freundlich模型提供了最佳相关性.Cd的Langmuir最大吸收值(q_(max))最高(6.88 X 10〜( -5)mol g〜(-1))之后是铅(4.47 X 10〜(-5)mol g〜(-1)),镍(3.63 X 10〜(-5)molg〜(-1))和铜(3.19 X 10〜(-5)mol g〜(-1))。对于所有金属(2.4 X 10〜(-5)至2.8 X 10〜(-5))获得相似的Freundlich经验常数kappa。铜,铅和镉的吸附过程中,除离子交换外,还必须进行吸附络合,而离子交换是镍吸附的最重要机理。离子强度浓度的增加导致金属去除率降低还进行了二元混合物中每种金属等摩尔浓度的吸附实验,然后扩展的Langmuir等温线模型完全符合实验数据。解吸实验表明,三接触后HCl和EDTA溶液均无法从橄榄中解吸金属。结果表明,具有很低的经济价值的橄榄石废料可用于处理重金属污染的废水。伙计们。

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