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Facile preparation of nitrogen and sulfur co-doped graphene-based aerogel for simultaneous removal of Cd 2+ and organic dyes

机译:用于同时去除CD <上标> 2 + 的氮和硫的氮和硫的共掺杂石墨烯的舒适性制备用于同时去除CD <上标> 2 + /上标>

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The need in simultaneous removal of heavy metals and organic compounds dictates the development of synthetic adsorbents with tailor-made properties. A nitrogen (N) and sulfur (S) co-doped graphene-based aerogel (GBA) modified with 2,5-dithiobisurea was synthesized hydrothermally for simultaneous adsorption of Cd_(2+)and organic dyes—safranin-O (SO), crystal violet (CV), and methylene blue (MB). 2,5-Dithiobisurea was used as nitrogen and sulfur sources to introduce N and S-containing functional group onto graphene oxide. The adsorption mechanism of GBA towards Cd_(2+)and organic dyes was studied by Dumwald-Wagner models and the results showed that surface and intraparticle diffusion was the key factor in controlling the rate of adsorption. The maximum adsorption capacities of GBA towards Cd_(2+), SO, CV, and MB comprised 1.755, 0.949, 0.538, and 0.389?mmol/g in monocomponent system, respectively. Adsorption synergism was observed with respect to Cd_(2+)in presence of the dyes. The performance of GBA with respect to Cd_(2+)removal from binary solutions, Cd_(2+)-SO, Cd_(2+)-CV, and Cd_(2+)-MB, was enhanced by the presence of the dyes significantly, while the adsorption capacities towards the dyes were not affected by the presence of Cd_(2+).
机译:同时除去重金属和有机化合物的需要决定了具有量身定制的性质的合成吸附剂的开发。用2,5- dithiobisurea改性的氮(N)和硫的基于掺杂的石墨烯基气凝胶(GBA)被合成水热,用于同时吸附CD_(2+)和有机染料 - Safranin-O(SO),水晶紫(CV)和亚甲基蓝色(MB)。使用2,5- dithiobisurea用作氮气和硫来源,以将N和S含含量基团引入石墨烯氧化物上。通过Dumwald-Wagner模型研究了GBA朝向CD_(2+)和有机染料的吸附机理,结果表明,表面和骨盆分散是控制吸附速率的关键因素。 GBA朝向CD_(2+),SO,CV和MB的最大吸附容量分别在单一组分系统中包含1.755,0.949,0.538和0.389摩尔/克。在染料存在下观察到CD_(2+)观察吸附协同作用。通过存在染料,增强了从二元溶液中除去CD_(2+)去除CD_(2+)去除CD_(2+)的性能,CD_(2 +) - SO,CD_(2 +) - CV和CD_(2 +) - MB,并通过染料增强显着,虽然染料的吸附能力不受CD_(2+)的存在影响。

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