Dichiara Anthony B, Webber Michael R, Gorman William R, Rogers Reginald E
Department of Chemical Engineering, Rochester Institute of Technology, Rochester, New York 14623, United States.
ACS Appl Mater Interfaces. 2015 Jul 22;7(28):15674-80. doi: 10.1021/acsami.5b04974. Epub 2015 Jul 10.
The development of technologies for water purification is critical to meet the global challenges of insufficient water supply and inadequate sanitation. Among all wastewater treatments, adsorption is globally recognized as the most promising method because of its versatility and economic feasibility. Herein, the removal of copper ions (Cu(II)) from aqueous solutions through adsorption on free-standing hybrid papers comprised of a mixture between graphene and different types of carbon nanotubes (CNTs) was examined. Results indicate that the rate of adsorption and long-time capacity of the metal ions on the nanocomposites significantly exceeds that of activated carbon by a factor of 4. Moreover, the combination of graphene with CNTs endows an increase in the uptake of Cu(II) up to 50% compared to that of CNTs alone, with a maximum adsorption capacity higher than 250 mg·g(-1). The removal of Cu(II) from water is sensitive to solution pH, and the presence of oxygen functional groups on the adsorbent surface promotes higher adsorption rates and capacities than pristine materials. These hybrid nanostructures show great promise for environmental remediation efforts, wastewater treatments, and separation applications, and the results presented in this study have important implications for understanding the interactions of carbonaceous materials at environmental interfaces.
水净化技术的发展对于应对全球供水不足和卫生设施不完善的挑战至关重要。在所有废水处理方法中,吸附因其多功能性和经济可行性而被全球公认为最具前景的方法。在此,研究了通过吸附在由石墨烯和不同类型碳纳米管(CNT)混合物组成的自立式混合纸上从水溶液中去除铜离子(Cu(II))的情况。结果表明,金属离子在纳米复合材料上的吸附速率和长期容量比活性炭高出4倍。此外,与单独的碳纳米管相比,石墨烯与碳纳米管的结合使Cu(II)的摄取量增加了50%,最大吸附容量高于250 mg·g(-1)。从水中去除Cu(II)对溶液pH敏感,吸附剂表面存在氧官能团比原始材料具有更高的吸附速率和容量。这些混合纳米结构在环境修复、废水处理和分离应用方面显示出巨大潜力,本研究结果对于理解碳质材料在环境界面的相互作用具有重要意义。