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Green Reduction of Oxidized Graphite to Reduced Graphene Oxide Using Zygophyllum album L.f,: Comparative Adsorption Studies on p-nitrophenol

机译:霸王藻绿色还原氧化石墨为氧化石墨烯:对硝基苯酚的比较吸附研究

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摘要

Successfully studies were developed to produce reduced graphene oxide by green reduction of graphene oxide using environmentally-friendly reducing agents. Here for the first time, we report the green reduction of oxidized graphite (OG) to reduced graphene oxide (RGO) using the green plant called Zygophyllum album L.f. (Z. album) which revealed strong reducing activity. Techniques of TEM, Raman, FTIR and BET were carried out for characterization of both samples. Comparative adsorption studies for the removal of p-nitrophenol (PNP) using OG and RGO from aqueous solution in batch mode were studied. Impacting parameters such as pH of solution, adsorbent dose, agitation time, initial concentration of PNP and temperature were estimated. Kinetic studies confirmed that pseudo-second-order kinetic model successfully represented the adsorption process. Batch adsorption isotherms were examined by Langmuir, Freundlich and Florry-Hugins adsorption isotherms. It was found that the experimental data fitted well with the Langmuir model. At different pHs, the isotherms and thermodynamics of adsorption process were also measured, showing that PNP adsorption capacity was significantly pH dependent and endothermic. Maximum adsorption capacities occurred at pH 4 (i.e., 333.3 and 500 mg PNP per gram of OG and RGO, respectively). Therefore, the prepared adsorbents of OG and RGO could be used as potential adsorbents for removing the p-nitrophenol from wastewater.
机译:成功开发出了使用环保型还原剂通过绿色还原氧化石墨烯生产还原氧化石墨烯的研究。在这里,我们首次报道了使用名为Zygophyllum album L.f的绿色植物将氧化石墨(OG)还原为氧化石墨烯(RGO)的过程。 (Z.专辑),其显示出强烈的还原活性。进行了TEM,拉曼,FTIR和BET等技术的表征。研究了使用OG和RGO以间歇方式从水溶液中去除对硝基苯酚(PNP)的对比吸附研究。估算了溶液的pH,吸附剂剂量,搅拌时间,PNP的初始浓度和温度等影响参数。动力学研究证实,伪二级动力学模型成功地代表了吸附过程。批次吸附等温线通过Langmuir,Freundlich和Florry-Hugins吸附等温线进行了检查。发现实验数据与Langmuir模型非常吻合。在不同的pH值下,还测量了吸附过程的等温线和热力学,表明PNP的吸附能力显着依赖于pH和吸热。最大吸附容量出现在pH值为4时(即每克OG和RGO分别为333.3和500 mg PNP)。因此,所制备的OG和RGO吸附剂可以作为潜在的吸附剂去除废水中的对硝基苯酚。

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