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Evaluation of Removal Efficiency of Ni(II) and 2,4-DCP Using in Situ Nitrogen-Doped Biochar Modified with Aquatic Animal Waste

机译:用水生动物粪便改性的原位掺氮生物炭评估Ni(II)和2,4-DCP的去除效率

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Currently, biochar (BC) has shown promising potential in groundwater and surface-water remediation. In this work, Trapa natans husks based biochar (TBC) was prepared and modified with aquatic animal waste (shrimp and crab) to produce shrimp-modified biochar (SBC) and crab-modified biochar (CBC), respectively. The as-prepared BCs (TBC, SBC, and CBC) were characterized by X-ray diffraction, scanning electron microscopy, elemental analysis, Boehm titration, Fourier transform infrared, and X-ray photoelectron spectroscopy. SBC and CBC had more developed nitrogen-containing functional groups than TBC, which indicates that the crude proteins in shrimp and crab have successfully achieved in situ nitrogen doping. Results of batch experiments showed that SBC and CBC had larger groundwater pollutants (2,4-dichlorophenol (2,4-DCP) and Ni(II)) adsorption capacities than TBC. According to batch adsorption experiment and characterization analysis results, the proposed adsorption mechanism of 2,4-DCP includes hydrogen bonding and π–π electron–donor–acceptor interaction, while the mechanism for Ni(II) adsorption are proposed to be surface complexation, ion exchange, and electrostatic attraction.
机译:目前,生物炭(BC)在地下水和地表水修复中显示出令人鼓舞的潜力。在这项工作中,制备了基于Trapa natans壳的生物炭(TBC),并用水生动物废物(虾和蟹)进行了改性,以分别生产虾类改性生物炭(SBC)和蟹类改性生物炭(CBC)。通过X射线衍射,扫描电子显微镜,元素分析,Boehm滴定,傅立叶变换红外和X射线光电子能谱对制备的BC(TBC,SBC和CBC)进行表征。 SBC和CBC比TBC具有更发达的含氮官能团,这表明虾和蟹中的粗蛋白已成功实现了原位氮掺杂。批处理实验的结果表明,SBC和CBC比TBC具有更大的地下水污染物(2,4-二氯苯酚(2,4-DCP)和Ni(II))吸附能力。根据间歇吸附实验和表征分析结果,提出的2,4-DCP的吸附机理包括氢键和π–π电子-给体-受体相互作用,而Ni(II)的吸附机理则是表面络合,离子交换和静电吸引。

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