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Lead and uranium sorptive removal from aqueous solution using magnetic and nonmagnetic fast pyrolysis rice husk biochars

机译:利用磁性和非磁性快速热解稻壳生物炭去除水溶液中的铅和铀

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This paper discusses the sorption characteristics of Pb( II ) and U( VI ) on magnetic and nonmagnetic rice husk biochars. The porosity, specific surface area, hydrophobility, and reusability of biochar were effectively improved (1–2 times) after magnetic modification. The optimum adsorption conditions were as follows: biochar loading was 0.4 g L ~(?1) , pH value was 7.0, and anion strength of NO _(3) ~(?) and PO _(4) ~(3?) were 0.01 mol L ~(?1) for Pb( II ) and 0.04 mol L ~(?1) for U( VI ) respectively. Compared with U( VI ), Pb( II ) had the faster adsorption rate and higher adsorption capacity on magnetic biochar (MBC). The adsorption experimental data were well fitted by pseudo-second-order kinetic and Langmuir isotherm models. The maximum adsorption capacity of Pb( II ) and U( VI ) on MBC was 129 and 118 mg g ~(?1) at 328 K respectively, which was significantly higher than that of other sources biochars. Pb( II ) was mainly bonded to biochar by physisorption but the adsorption of U( VI ) on biochar was mostly chemisorption. Fe oxides in MBC noticeably improved the ion exchange and complexation action between biochar and metal ion especially for U( VI ). The experimental results confirmed MBC material can be used as a cost-effective adsorbent for the removal of Pb( II ) and U( VI ) and can be separated easily from aqueous solution when application.
机译:本文讨论了Pb(II)和U(VI)在磁性和非磁性稻壳生物炭上的吸附特性。磁性改性后,生物炭的孔隙率,比表面积,疏水性和可重复使用性得到了有效改善(1-2倍)。最佳吸附条件如下:生物炭负载量为0.4 g L〜(?1),pH值为7.0,NO_(3)〜(?)和PO_(4)〜(3?)的阴离子强度为Pb(II)为0.01 mol L〜(?1),U(VI)为0.04 mol L〜(?1)。与U(VI)相比,Pb(II)对磁性生物炭(MBC)具有更快的吸附速率和更高的吸附能力。吸附实验数据通过拟二阶动力学模型和Langmuir等温线模型很好地拟合。 MBC上Pb(II)和U(VI)在328 K时的最大吸附容量分别为129和118 mg g〜(?1),明显高于其他来源的生物炭。 Pb(II)主要通过物理吸附与生物炭结合,但是U(VI)在生物炭上的吸附主要是化学吸附。 MBC中的铁氧化物显着改善了生物炭和金属离子之间的离子交换和络合作用,特别是对于U(VI)。实验结果证实,MBC材料可用作去除Pb(II)和U(VI)的经济有效的吸附剂,并且在使用时可以很容易地从水溶液中分离出来。

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