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通过电化学合成制备氧化石墨烯的环境友好路线,重点在于从水中吸附去除染料。

Environmentally friendly route for graphene oxide production via electrochemical synthesis focused on the adsorptive removal of dyes from water.

作者信息

de Assis Filho Romero Barbosa, de Araújo Caroline Maria Bezerra, Baptisttella Ana Maria Salgueiro, Batista Edinália Bleilla, Barata Rafaela Alvina, Ghislandi Marcos Gomes, da Motta Sobrinho Mauricio Alves

机构信息

Chemical Engineering Department, Universidade Federal de Pernambuco (UFPE), Recife, Brazil.

Department of Chemistry, Instituto Federal de Pernambuco (IFPE), Recife, Brazil.

出版信息

Environ Technol. 2020 Sep;41(21):2771-2782. doi: 10.1080/09593330.2019.1581842. Epub 2019 Feb 27.

Abstract

This work shows a promising, environmentally friendly and greener alternative for the production and application of electrochemically produced Graphene Oxide (GO) for the adsorptive removal of Methylene Blue (MB) dye in an aqueous medium. During the adsorption tests, GO produced via electrochemical route reached the equilibrium in only 10 min of contact, exhibiting a percentage removal of MB over 97%. It could also be observed that the experimental data better fitted to the pseudo-second order kinetic model. By analysing the isotherms, it was verified the maximum adsorptive capacity was 500 mg g (303.15 K) and that in overall, adsorptive capacity decreases with the increase in temperature. Experimental equilibrium data were better fitted to the Freundlich isotherms in all temperatures studied (303.15, 318.15 and 333.15 K). The thermodynamic analysis confirmed the exothermic nature of the process, and that MB adsorption onto GO occurs spontaneously. ΔH◦ and ΔG◦ values suggested that physisorption occurred, which is mainly due to π-π interactions and electrostatic interactions between MB and oxygen functional groups on the GO surface. Cost-effectiveness analysis showed there is a lower cost involved in the production of electrochemical GO, as compared to the Hummers method; and in the reusability study, even after 5 cycles GO removed ≥ 90% MB. Thus, the electrochemically produced GO seems to be an efficient, cost-effective and environmentally friendly alternative for colour removal from water, as it uses less hazardous and expensive reagents when compared to those applied in the traditional GO synthesis, without losing, however, the efficiency in colour removal from water.

摘要

这项工作展示了一种前景广阔、环境友好且更绿色的替代方案,用于电化学生产氧化石墨烯(GO)及其在水介质中吸附去除亚甲基蓝(MB)染料的生产和应用。在吸附测试中,通过电化学途径制备的GO在仅10分钟的接触时间内就达到了平衡,MB的去除率超过97%。还可以观察到,实验数据更好地拟合了伪二级动力学模型。通过分析等温线,验证了最大吸附容量为500 mg g(303.15 K),总体而言,吸附容量随温度升高而降低。在所有研究温度(303.15、318.15和333.15 K)下,实验平衡数据都更好地拟合了弗伦德里希等温线。热力学分析证实了该过程的放热性质,并且MB在GO上的吸附是自发进行的。ΔH◦和ΔG◦值表明发生了物理吸附,这主要是由于MB与GO表面的氧官能团之间的π-π相互作用和静电相互作用。成本效益分析表明,与Hummers法相比,电化学生产GO的成本更低;在可重复使用性研究中,即使经过5个循环,GO仍能去除≥90%的MB。因此,电化学生产的GO似乎是一种高效、经济且环保的水脱色替代方案,因为与传统GO合成中使用的试剂相比,它使用的危险性和昂贵试剂更少,然而在水脱色效率方面却没有损失。

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