碳化
检出限
生物炭
吸附
杂原子
碳纤维
水溶液
多孔性
化学工程
氮气
电化学
化学
活性炭
水溶液中的金属离子
材料科学
离子
色谱法
热解
电极
有机化学
烷基
复合材料
物理化学
工程类
复合数
作者
Jin Zou,Jiawei Liu,Yu Qi,Yansha Gao,Shangxing Chen,Xigen Huang,Dongnan Hu,Shuwu Liu,Limin Lu
出处
期刊:Molecules
[MDPI AG]
日期:2022-07-15
卷期号:27 (14): 4516-4516
被引量:6
标识
DOI:10.3390/molecules27144516
摘要
Sensitive detection and efficient removal of heavy metal ions with high toxicity and mobility are of great importance for environmental monitoring and control. Although several kinds of functional materials have been reported for this purpose, their preparation processes are complicated. Herein, nitrogen self-doped activated porous biochar (NAC) was synthesized in a facile process via an activation–carbonization strategy from cicada shell rich in chitin, and subsequently employed as an effective functional material for the simultaneous determination and removal of Cu2+ from aqueous media. With its unique porous structure and abundant oxygen-containing functional groups, along with the presence of heteroatoms, NAC exhibits high sensitivity for the electrochemical sensing of Cu2+ in concentrations ranging from 0.001 to 1000 μg·L−1, with a low detection limit of 0.3 ng·L−1. Additionally, NAC presents an excellent removal efficiency of over 78%. The maximum adsorption capacity is estimated at 110.4 mg/g. These excellent performances demonstrate that NAC could serve as an efficient platform for the detection and removal of Cu2+ in real environmental areas.
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