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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Efficient removal of dimethyl phthalate with activated iron-doped carbon aerogel through an integrated adsorption and electro-Fenton oxidation process
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Efficient removal of dimethyl phthalate with activated iron-doped carbon aerogel through an integrated adsorption and electro-Fenton oxidation process

机译:通过集成吸附和电芬氧化过程有效地除去邻苯二甲酸二甲酯与活化的铁掺杂碳气凝胶

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摘要

A promising activated iron-doped carbon aerogel (AFeC) possessing high adsorption capacity and "self-cleaning" ability via generated (OH)-O-center dot radicals was fabricated and applied to remove dimethyl phthalate (DMP). Around 90% of the DMP (50 ppm) was first adsorbed on the surface of a DMP-imprinted AFeC electrode and then further catalytically oxidized by surface (OH)-O-center dot produced via an electro-Fenton reaction. DMP removal of 98% can be achieved in 150 min in the heterogeneous electro-Fenton process. The addition of Fe-0 favoured the generation of graphene sheets of amorphous carbon and then provided strong pi-pi interaction with aromatic pollutants. In addition to iron, a DMP molecular template was also introduced to AFeC to create special molecular imprinting affinity for DMP. The CO2-N-2 activation treatment increased the porosity and enriched the hydroxyl and quinone groups (C-O and C=O). The high DMP adsorption capacity of the DMP-imprinted AFeC electrode can be ascribed to the following mechanism: (i) electrostatic interaction; (ii) hydrophobic interaction; (iii) pi-pi electron-donor-acceptor interactions; (iv) molecular imprinting affinity between template molecules and imprinted sites. Thus, this carbon-based material is promising to be potentially applied in the removal of DMP containing wastewater through integrated adsorption and degradation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过产生高吸附容量和“自清洁”能力(OH)-O中心点自由基具有高吸附容量和“自清洁”能力的有希望的激活的铁掺杂碳气凝胶(AFEC),并施加以除去邻苯二甲酸二甲酯(DMP)。首先将约90%的DMP(50ppm)吸附在DMP印迹的AFEC电极的表面上,然后通过通过电芬反应产生的表面(OH)-O-中心点进一步催化氧化。在非均相电气芬顿工艺中,可以在150分钟内实现DMP去除98%。加入Fe-0赞成了无定形碳的石墨烯片的产生,然后与芳香污染物提供强的PI-PI相互作用。除了铁,还将DMP分子模板引入AFEC,为DMP创造特殊的分子印迹亲和力。 CO2-N-2活化处理增加孔隙率并富集羟基和醌基(C-O和C = O)。 DMP印迹的AFEC电极的高DMP吸附容量可以归因于以下机制:(i)静电相互作用; (ii)疏水性互动; (III)PI-PI电子 - 供体 - 受体相互作用; (iv)模板分子和印迹位点之间的分子印迹亲和力。因此,这种基于碳的材料是可能应用通过集成的吸附和降解除去含有废水的DMP。 (c)2017 Elsevier Ltd.保留所有权利。

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