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Removal of Pb(II), Cr(III) and Cr(VI) from Aqueous Solutions Using Alum-Derived Water Treatment Sludge

机译:使用明矾衍生的水处理污泥去除水溶液中的Pb(II),Cr(III)和Cr(VI)

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摘要

The sorption of Pb(II), Cr(III) and Cr(VI) from aqueous solution using alum-derived water treatment sludge was investigated using the batch adsorption technique. Samples of sludge from two separate water treatment plants were used (one where alum was used alone and one where it was used in combination with activated C). The sorption characteristics of the two samples were generally very similar. Sorption isotherm data for all three ions fitted equally well to both Freundlich and Langmuir equations. Maximum sorption capacity and indices of sorption intensity both followed the order: Cr(III) > Pb(II) > Cr(VI). Kinetic data correlated well with a pseudo-second-order kinetic model suggesting the process involved was chemisorption. Sorption was pH-dependant with percentage sorption of Cr(III) and Pb(II) increasing from <30% to 100% between pH 3 and 6 whilst that of Cr(VI) declined greatly between pH 5 and 8. HNO3 at a concentration of 0.1 M was effective at removing sorbed Cr(III) and Pb(II) from the sludge surfaces and regeneration was successful for eight sorption/removal cycles. It was concluded that water treatment sludge is a suitable material from which to develop a low-cost adsorbent for removal of Cr and Pb from wastewater streams.
机译:采用分批吸附技术研究了明矾水处理污泥对水溶液中Pb(II),Cr(III)和Cr(VI)的吸附。使用了来自两个不同的水处理厂的污泥样品(其中一个单独使用明矾,另一个与活性炭组合使用)。这两个样品的吸附特性通常非常相似。所有这三种离子的吸附等温线数据均与Freundlich和Langmuir方程拟合得很好。最大吸附容量和吸附强度指数均遵循以下顺序:Cr(III)> Pb(II)> Cr(VI)。动力学数据与伪二级动力学模型很好地相关,表明所涉及的过程是化学吸附。吸附取决于pH,在pH 3和6之间,Cr(III)和Pb(II)的吸附百分比从<30%增加到100%,而在pH 5和8之间,Cr(VI)的吸附百分比大大降低。浓度为0.1 M的3 可以有效地去除污泥表面吸附的Cr(III)和Pb(II),并且再生过程成功进行了八个吸附/去除循环。结论是,水处理污泥是一种合适的材料,可从该材料开发低成本的吸附剂以去除废水中的Cr和Pb。

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