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Adsorption and desorption of heavy metals by the sewage sludge and biochar-amended soil

机译:污水污泥和生物炭改性土壤对重金属的吸附和解吸

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摘要

The goal of the study was to evaluate the application of biochar (BC) to the sewage sludge (SL) on the adsorption and desorption capacity of Cd(II), Cu(II), Ni(II) and Zn(II). The effect of biochar contribution in the sewage sludge (2.5, 5 and 10%) was investigated. The isotherms data were fitted to the Langmiur (LM), Freundlich (FM) and Temkin (TM) models. The best fitting for kinetic study was obtained for the pseudo-second-order equation. The best fitting of the experimental data was observed for the LM in the case of SL and BC, and for the FM in the case of SL- and SL/BC-amended soil. SL was characterized by even four-order higher sorption capacity than BC. The addition of the BC to the SL and next to the soil increased the adsorption capacity of the soil and the SL-amended soil. In the case of all investigated potentially toxic elements (PTEs), the highest adsorption capacity was achieved for SL-amended soil in comparison with the control soil. In the case of other experimental variants, the adsorption capacity of metal ions was as follows: 2.5% BC > 5.0% BC > 10% BC. The negative correlation between hydrated radius of metal ions and the kinetics of sorption was observed. However, the desorption of PTEs from BC/SL-amended soil was significantly lower than for SL-amended soil (except of Cd) and non-amended soil. It can be concluded that the addition of the biochar enhanced the immobilization of PTEs and reduced their bioavailability and mobility in the soil amended by the sewage sludge.Electronic supplementary materialThe online version of this article (doi:10.1007/s10653-017-0036-1) contains supplementary material, which is available to authorized users.
机译:该研究的目的是评估生物炭(BC)在污水污泥(SL)中对Cd(II),Cu(II),Ni(II)和Zn(II)的吸附和解吸能力。研究了生物炭在污水污泥中的贡献率(2.5%,5%和10%)。等温线数据适用于Langmiur(LM),Freundlich(FM)和Temkin(TM)模型。拟二阶方程获得了动力学研究的最佳拟合。在SL和BC的情况下,对于LM观察到实验数据的最佳拟合,在SL和SL / BC / BC改良的土壤下,对于FM观察到了最佳的实验数据。 SL的特征是吸附能力比BC高四倍。在SL和土壤旁边添加BC可以增加土壤和SL改良土壤的吸附能力。在所有调查的潜在有毒元素(PTE)的情况下,与对照土壤相比,SL改良土壤获得了最高的吸附能力。在其他实验变体的情况下,金属离子的吸附能力如下:2.5%BC> 5.0%BC> 10%BC。观察到金属离子的水合半径与吸附动力学之间呈负相关。但是,PTE从BC / SL改良土壤中的解吸显着低于SL改良土壤(Cd除外)和非改良土壤。可以得出结论,添加生物炭增强了PTE的固定化并降低了PTE在污水污泥改良后的土壤中的生物利用度和迁移率。电子补充材料本文的在线版本(doi:10.1007 / s10653-017-0036-1) )包含补充材料,授权用户可以使用。

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