生物炭
吸附
吸附
废水
热解
化学工程
铜
多孔性
离子交换
镁
降水
化学
纳米颗粒
无机化学
核化学
材料科学
离子
废物管理
有机化学
气象学
工程类
物理
作者
Yuanfeng Wei,Tao Chen,Zhiyuan Qiu,Huiling Liu,Yufen Xia,Zhimin Wang,Ruiying Zou,Chengbin Liu
标识
DOI:10.1016/j.biortech.2022.128146
摘要
Removing non-biodegradable Pb2+ and Cu2+ is the top priority in wastewater purification, while adsorption is a green technology to remove them. Herein, MgO-embedded granular hierarchical porous biochar (HP-MgO@BC) was fabricated by pyrolysis of porous Mg-infused chitosan beads. MgO nanoparticles were homogeneously embedded throughout the hierarchical porous biochar matrix in a high-density and accessible manner, thus providing a large number of easily accessible adsorption sites. Pb2+ and Cu2+ sorption capacities on HP-MgO@BC are 1044.8 and 811.2 mg/g at pH 5, respectively. It could effectively remove Pb2+ and Cu2+ across a broad pH range of 2-7, and show excellent adsorption efficiency in the presence of interfering cations. It also possessed excellent reusability. In the fixed-bed operation, 7880 BV (78.80 L) and 1610 BV (16.10 L) of synthetic Pb2+ and Cu2+ wastewater could be purified by HP-MgO@BC packed column, respectively. The adsorption mechanism involves mineral precipitation, ion exchange, and surface coordination.
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