生物炭
吸附
热解
化学
碳纤维
双酚A
微型多孔材料
铬
无机化学
环境修复
活性炭
化学工程
核化学
材料科学
有机化学
污染
复合数
生物
工程类
复合材料
环氧树脂
生态学
作者
Jianhua Qu,Xiubo Zhang,Lei Zhu,Xiaojuan Li,Shuyue Wang,Zihan Feng,Zhihuan Wu,Sheng Wang,Zhao Jiang,Ying Zhang
标识
DOI:10.1016/j.biortech.2022.127718
摘要
Herein, magnetic nitrogen doped porous biochar (Fe/N-PBC) was prepared by mixing KHCO3, K2FeO4 and CO(NH2)2 through one-step pyrolysis, and was employed for adsorbing Cr(VI) and BPA in water. The whole co-activated process was accompanied with pore-forming, carbon thermal reduction and element doping. Specifically, the developed microporous structures and high surface area of Fe/N-PBC (1093.68 m2/g) were achieved under synergistic activation of KHCO3 and K2FeO4. Meanwhile, carbon thermal reduction process successfully converted K2FeO4 to Fe0 with introduction of heterocyclic-N (pyrrolic N and pyridinic N) structures by CO(NH2)2 doping. Fe/N-PBC exhibited outstanding uptake for Cr(VI) (340.96 mg/g) and BPA (355.14 mg/g), and possessed favorable regeneration properties after three cycles. Notably, the high-performance Cr(VI) removal was associated to reduction, electrostatic interaction, complexation, pore filling and ion exchange, while pore filling, hydrogen-bonding interaction and π-π stacking were responsible for BPA binding. This work presents reasonable design of Fe/N-carbon materials for Cr(VI)/BPA polluted water remediation.
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