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首页> 外文期刊>Water Science and Technology >Simultaneous activation/sulfurization method for production of sulfurized activated carbons: characterization and Hg(II) adsorption capacity
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Simultaneous activation/sulfurization method for production of sulfurized activated carbons: characterization and Hg(II) adsorption capacity

机译:用于生产硫化活性炭的同时活化/硫化方法:表征和Hg(II)吸附容量

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As an inexpensive method for modification of activated carbons (ACs), sulfurization has attracted significant attention. However, the resulting sulfurized activated carbons (SACs) often are less porous than the original ACs. In this work, we propose a new method for concurrent sulfurization/activation that can lead to preparation of SACs with more porosity than the corresponding non-sulfurized ACs. By using scanning electron microscopy, nitrogen adsorption/desorption, and iodine number experiments, the porous structure of the SACs has been compared with that of non-sulfurized ACs. The specific surface areas of SACs are higher than the corresponding ACs, regardless of the type of activation agents used. For instance, the specific surface area of SAC and AC activated with phosphoric acid is 1,637 and 1,338 m~2/g, respectively. Additionally, sulfur contents and surface charges (pH_(pzc)) of the SACs and non-sulfurized ACs are compared. In fact, the SACs have higher sulfur contents and more acidic surfaces. Furthermore, the Hg(II) adsorption capacity of SACs has been compared with the corresponding non-sulfurized ACs. The Hg(II) adsorption isotherms on a selected SAC is measured at different pH values and temperatures. Hg(II) adsorptions as high as 293 mg/g are observed by using SACs prepared by the method proposed in this study.
机译:作为一种廉价的改性活性炭(ACs)的方法,硫化已引起了广泛的关注。但是,所得的硫化活性炭(SAC)的孔隙度通常比原始AC的孔隙度小。在这项工作中,我们提出了一种同时进行硫化/活化的新方法,该方法可以制备出比相应的未硫化AC具有更高孔隙率的SAC。通过使用扫描电子显微镜,氮吸附/解吸和碘值实验,已将SAC的多孔结构与未硫化的AC进行了比较。无论使用哪种活化剂,SAC的比表面积均高于相应的AC。例如,磷酸活化的SAC和AC的比表面积分别为1637和1338m 2 / g。另外,比较了SAC和未硫化AC的硫含量和表面电荷(pH_(pzc))。实际上,SAC具有更高的硫含量和更多的酸性表面。此外,已将SAC的Hg(II)吸附容量与相应的未硫化AC进行了比较。在不同的pH值和温度下测量所选SAC上的Hg(II)吸附等温线。通过使用本研究中提出的方法制备的SAC,观察到Hg(II)的吸附高达293 mg / g。

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