Ni Lingfeng, Li Yi
Key Laboratory of Integrated Regulation and Resource Development of Shallow Lakes, Ministry of Education, College of Environment, Hohai University Nanjing 210098 P. R. China
State Key Laboratory of Pollution Control and Resources Reuse, Shanghai Institute of Pollution Control and Ecological Security, College of Environmental Science and Engineering, Tongji University Siping Road Shanghai 200092 P. R. China.
RSC Adv. 2018 Dec 12;8(72):41358-41367. doi: 10.1039/c8ra09135h. eCollection 2018 Dec 7.
Graphene oxide (GO) is increasingly used and inevitably released into aquatic environments, facilitating its interaction with traditional pollutants such as heavy metal ions. However, the potential effect of GO on the toxicity of heavy metal ions to aquatic animals is unknown. This work aims to assess the toxicity of heavy metal ions (Cu(ii), Cd(ii), and Zn(ii)) on () in the presence of GO. GO nanoparticles remarkably reduced the concentrations of heavy metal ions by adsorption and decreased the metal accumulation in . The maximum desorption rate of heavy metal ions from metal-adsorbed GO was below 5%. At pH 7.8, with addition of 2 mg L GO, the 72 h median lethal concentration (LC) values of Cu(ii), Cd(ii), and Zn(ii) were increased from 14.3, 38, and 780 μg L to 36.6, 72, and 1010 μg L, respectively. The analyses of oxidative stress indicators suggested that the oxidative damage to by heavy metal ions was reduced after addition of GO at pH 7.8. Moreover, a higher pH level in the growing range (6.5 to 8.5) of led to weaker toxicity of metal ions with GO addition due to more adsorption and less bioaccumulation. The results revealed the role of GO nanoparticles in the mitigated toxicity of heavy metal ions in the aquatic environment.
氧化石墨烯(GO)的使用日益广泛,并不可避免地释放到水生环境中,从而促进了它与重金属离子等传统污染物的相互作用。然而,GO对重金属离子对水生动物毒性的潜在影响尚不清楚。这项工作旨在评估在GO存在的情况下重金属离子(铜(II)、镉(II)和锌(II))对(此处原文缺失具体受试对象)的毒性。GO纳米颗粒通过吸附显著降低了重金属离子的浓度,并减少了(此处原文缺失具体受试对象)中的金属积累。重金属离子从金属吸附的GO上的最大解吸率低于5%。在pH 7.8时,添加2 mg/L的GO后,铜(II)、镉(II)和锌(II)的72小时半数致死浓度(LC)值分别从14.3、38和780 μg/L增加到36.6、72和1010 μg/L。氧化应激指标分析表明,在pH 7.8添加GO后,重金属离子对(此处原文缺失具体受试对象)的氧化损伤有所降低。此外,在(此处原文缺失具体受试对象)生长范围(6.5至8.5)内较高的pH水平由于更多的吸附和更少的生物积累,导致添加GO时金属离子的毒性较弱。结果揭示了GO纳米颗粒在减轻水生环境中重金属离子毒性方面的作用。