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Phosphoric acid activation—Functionalization and porosity modification

机译:磷酸活化—功能化和孔隙率改性

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4,4'-Bis(maleimidodiphenyl) methane (BM) and divinylbenzene (DVB) copolymers with different compositions were used for production of carbons by carbonization and phosphoric acid activation. It has been shown that both BM and DVB polymers are good carbon precursors which show the same potential to produce carbonaceous material. However, despite cross-linked nature of all polymers, BM softens before formation of coke giving non-porous material. Phosphoric acid activation of polymer precursor increased the yield, surface area and pore volume as compared to acid-free heat treatment. Phosphoric acid activation of polymer precursor resulted in carbon material containing 6—8% of phosphorus and considerable amount of surface acidic groups of four types (total 2.6-3.2 mmol/g) which are responsible for metal ion adsorption from aqueous solutions.
机译:具有不同组成的4,4'-双(马来酰亚胺二苯基)甲烷(BM)和二乙烯基苯(DVB)共聚物用于通过碳化和磷酸活化生产碳。已经表明,BM和DVB聚合物都是良好的碳前体,其显示出生产碳质材料的相同潜力。然而,尽管所有聚合物具有交联性质,但BM在形成焦炭前会软化,形成无孔材料。与无酸热处理相比,聚合物前体的磷酸活化提高了收率,表面积和孔体积。聚合物前体的磷酸活化导致碳材料含有6-8%的磷和大量的四种类型的表面酸性基团(总计2.6-3.2 mmol / g),这些金属负责从水溶液中吸附金属离子。

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