生物炭对养殖水体中复合污染物的去除效果与吸附机理初探
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X714;S912

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中华鲟养殖基地的水质监测与评价项目(D-8006-22-0074);长三角核心区池塘养殖污染物源头控制与尾水治理技术攻关及示范项目(21002410500)


Preliminary study on the removal effect and adsorption mechanism of biochar on combined pollutants in aquaculture water
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    摘要:

    以养殖池塘周边水生植物作为原料制备生物炭,吸附去除养殖水体中普遍存在的重金属镉(Cd2+)、多环芳烃(PAHs)和抗生素恩诺沙星(EFX)复合污染。通过污染物去除率和风险(RQ)的下降评估其吸附效果,同时采用扫描电镜分散光谱仪(SEM-EDS)、X射线衍射仪(XRD)和傅里叶红外光谱仪(FTIR)分别对其元素组成、比表面积、表观形貌、物相结构和官能团组成进行表征,并结合吸附动力学和吸附等温线研究对吸附机理进行了初探。结果表明,BC500比表面积较大,且C=C、C=O、-COO和-OH是BC500的主要官能团。BC500对Cd2+、FLU、PHE、FLT、PYR和EFX的平均去除率为54%~90%,生态风险RQ值也从0.85降低到0.33,表明BC500生物炭对实际水产养殖水中复合污染物的去除效果良好。吸附动力学和吸附等温线模型模拟结果表明,BC500生物炭对复合污染物的吸附以化学单分子层吸附为主,重金属Cd2+和有机污染物(PAHs和EFX)之间存在竞争性吸附,这使得BC500在以重金属污染为主导的复合污染水体中具有更好的表现。此外,BC500生物炭对复合污染物的吸附机理包括含氧官能团络合(Cd2+、PAHs和EFX)、π-π相互作用(Cd2+、PAHs和EFX)、离子交换(Cd2+和EFX)、氢键(PAHs和EFX)以及Cd2+-EFX的络合。

    Abstract:

    The combined pollution of heavy metals and organic matter in aquaculture water bodies threatens the quality of aquatic products and human health. In this study, aquatic plants from aquaculture ponds were used as raw materials to prepare biochar for adsorption and removal of heavy metal cadmium (Cd2+), polycyclic aromatic hydrocarbons (PAHs) and enrofloxacin (EFX) in aquaculture wastewater. The adsorption effect was assessed by pollutant removal and risk (RQ) reduction, while the elemental composition, specific surface area, apparent morphology, physical phase structure and functional group composition were characterized by scanning electron microscopy (SEM-EDS), X-ray diffractometry (XRD), and Fourier Transform Infrared Spectrometry (FTIR), respectively, and the preliminary adsorption mechanism was carried out in conjunction with adsorption kinetics and isotherm studies. The results showed that the specific surface area of BC500 was large, and C=C, C=O, -COO and -OH were the main functional groups of BC500.The average removal of Cd2+, FLU, PHE, FLT, PYR and EFX by BC500 ranged from 54% to 90%, and the RQ value of ecological risk was also reduced from 0.85 to 0.33, indicating the excellent removal performance of BC500 biochar. The results of adsorption kinetics and isothermal model simulation showed that the adsorption of BC500 biochar on the composite pollutants was dominated by the adsorption of chemical monomolecular layer, and there was a competitive adsorption between heavy metal Cd2+ and organic pollutants (PAHs and EFX). In addition, the adsorption mechanisms of BC500 biochar on composite pollutants included oxygenated functional group complexation (Cd2+, PAHs, and EFX), π-π interactions (Cd2+, PAHs, and EFX), ion exchange (Cd2+ and EFX), hydrogen bonding (PAHs and EFX), and Cd2+-EFX complexation.

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郑跃平,徐嘉楠,范厚勇,尹杰,李娟英.生物炭对养殖水体中复合污染物的去除效果与吸附机理初探[J].上海海洋大学学报,2024,33(6):1369-1379.
ZHENG Yueping, XU Jianan, FAN Houyong, YIN Jie, LI Juanying. Preliminary study on the removal effect and adsorption mechanism of biochar on combined pollutants in aquaculture water[J]. Journal of Shanghai Ocean University,2024,33(6):1369-1379.

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  • 收稿日期:2023-08-02
  • 最后修改日期:2023-11-14
  • 录用日期:2024-02-15
  • 在线发布日期: 2024-12-05
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