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Facile synthesis of porous carbon/Fe 3O 4 composites derived from waste cellulose acetate by one-step carbothermal method as a recyclable adsorbent for dyes

机译:孔隙合成多孔碳/ Fe 3 O 4 从废纤维素醋酸纤维素衍生的复合材料-Step Carbothotmal方法作为染料可回收吸附剂

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The porous carbon/Fe3O4composites have been used to adsorb the dyes recently, however, most carbon sources are not preferable for the environment protection. In this paper, the porous carbon/Fe3O4composites were synthesized by a simple step carbonization method using the waste cigarette butts and the ferric nitrate as carbon source and oxidizer, respectively. Notably, the obtained products can be reused. The results show that the crystallite size of as-prepared Fe3O4will increase at high treating temperature. In addition, the sample of C-Fe3O4-1000 possesses the highest saturation magnetization of 92.2 emu?g?1, and the sample of C-Fe3O4-600 has the highest specific surface area of 90.23 m2?g?1and the maximum adsorption of 102.04 mg?g?1for methyl orange. Furthermore, the adsorbent can maintain an excellent adsorption capacity for the dye after 4 cycles. Therefore, as-prepared porous carbon/Fe3O4composite is an excellent candidate for recyclable dye adsorbent, and the waste can be converted into products for reducing the environment pollution.
机译:多孔碳/ Fe3O4孔料最近用于吸附染料,然而,对于环境保护而言,大多数碳源不是优选的。在本文中,通过使用废烟烟香烟和硝酸铁作为碳源和氧化剂的简单步骤碳化法合成多孔碳/ Fe3O4孔。值得注意的是,可以重复获得所获得的产品。结果表明,在高处理温度下,制备的Fe3O4的微晶尺寸增加。另外,C-Fe3O4-1000的样品具有92.2鸸αg≤1的最高饱和磁化强度,并且C-Fe3O4-600的样品具有90.23m2的最高比表面积为90.23m 2?1和最大吸附102.04mg?g?1甲基橙。此外,吸附剂可以在4个循环后保持染料的优异吸附能力。因此,如制备的多孔碳/ Fe3O4Composite是可再循环染料吸附剂的优异候选物,并且可以将废物转化为可降低环境污染的产品。

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