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Sorptive removal of phenanthrene from aqueous solutions using magnetic and non-magnetic rice husk-derived biochars

机译:使用磁性和非磁性稻壳衍生的生物炭从水溶液中吸附去除菲

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A magnetically modified rice husk biochar (MBC) was successfully prepared by a hydrothermal method from original biochar (BC) and subsequently used to remove phenanthrene (PHE) from aqueous solutions. The porosity, specific surface area and hydrophobicity of BC were significantly improved (approx. two times) after magnetic modification. The adsorption data fitted well to pseudo-second-order kinetic and Langmuir models. Compared with BC, MBC had a faster adsorption rate and higher adsorption capacity of PHE. The adsorption equilibrium for PHE on MBC was achieved within 1.0?h. The maximum adsorption capacity of PHE on MBC was 97.6?mg?g?1 based on the analysis of the Sips model, which was significantly higher than that of other sources of BCs. The adsorption mechanism of the two BCs was mainly attributed to the action of surface functional groups and π–π-conjugated reactions. The adsorption of PHE on MBC mainly occurred in the functional groups of C–O and Fe3O4, but that on BC was mainly in the functional groups of –OH, N–H, C=C and C–O.
机译:通过水热法从原始生物炭(BC)成功制备了磁性修饰的稻壳生物炭(MBC),随后将其用于从水溶液中去除菲(PHE)。磁改性后,BC的孔隙率,比表面积和疏水性得到了显着改善(大约两倍)。吸附数据非常适合拟二阶动力学模型和Langmuir模型。与BC相比,MBC具有更快的吸附速率和更高的PHE吸附能力。在1.0?h内达到了PHE在MBC上的吸附平衡。根据Sips模型分析,PHE在MBC上的最大吸附容量为97.6?mg?g ?1 ,明显高于其他来源的BCs。两种BCs的吸附机理主要归因于表面官能团的作用和π-π共轭反应。 PHE在MBC上的吸附主要发生在C–O和Fe 3 O 4 的官能团中,而在BC上的吸附主要是在–OH, N–H,C = C和C–O。

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