放射性废物
吸附
锕系元素
石墨烯
放射性核素
环境修复
氧化物
化学
超铀元素
放射化学
膨润土
核化学
污染
环境化学
材料科学
化学工程
纳米技术
吸附
有机化学
量子力学
工程类
生态学
物理
生物
作者
Anna Yu. Romanchuk,Alexander Slesarev,Stepan N. Kalmykov,Dmitry V. Kosynkin,James M. Tour
摘要
Here we show the efficacy of graphene oxide (GO) for rapid removal of some of the most toxic and radioactive long-lived human-made radionuclides from contaminated water, even from acidic solutions (pH < 2). The interaction of GO with actinides including Am(III), Th(IV), Pu(IV), Np(V), U(VI) and typical fission products Sr(II), Eu(III) and Tc(VII) were studied, along with their sorption kinetics. Cation/GO coagulation occurs with the formation of nanoparticle aggregates of GO sheets, facilitating their removal. GO is far more effective in removal of transuranium elements from simulated nuclear waste solutions than other routinely used sorbents such as bentonite clays and activated carbon. These results point toward a simple methodology to mollify the severity of nuclear waste contamination, thereby leading to effective measures for environmental remediation.
科研通智能强力驱动
Strongly Powered by AbleSci AI