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首页> 外文期刊>Environmental Science and Pollution Research >Enhanced adsorption performance and regeneration of magnetic Fe3O4 nanoparticles assisted extracellular polymeric substances in sulfonamide-contaminated water
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Enhanced adsorption performance and regeneration of magnetic Fe3O4 nanoparticles assisted extracellular polymeric substances in sulfonamide-contaminated water

机译:增强的吸附性能和磁Fe3O4纳米颗粒的再生辅助磺酰胺污染水中的细胞外聚合物物质

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摘要

It is still unclear about the superiority of the nanoscale Fe3O4-assisted extracellular polymeric substances (EPS) compared to traditional EPS and its application feasibility in sulfonamide-contaminated aqueous system. This study reported eco-friendly and reusable EPS/Fe3O4 was applied in the sulfonamide-contaminated water treatment, including sulfamethoxazole (SMX), sulfamerazine (SM1), sulfamethazine (SM2) and sulfadiazine (SDZ), respectively. EPS/Fe3O4 exhibited the adsorption performance of 77.93%, 74.13%, 65.62%, and 56.64% for SMX, SM1, SM2 and SDZ, respectively, increased by 7.93%, 19.02%, 13.78% and 9.93% compared to traditional EPS. The initial pH value tuned adsorption performance via varying existing species of each sulfonamides. The adsorption process could be well fitted by Freundlich and pseudo-second-order kinetics models. Moreover, the multiple evidences from SEM, FTIR, zeta potential and XRD explained the adsorption mechanisms (i.e., chemisorption, ion exchange, hydroxyl group and hydrophobicity). Desorption and recycle adsorption experiments demonstrated the well regeneration ability of EPS/Fe3O4 as biosorbent (67.12% adsorption performance for SMX after five adsorption-desorption cycles), suggesting EPS/Fe3O4 was considered as a superior choice for sulfonamide-contaminated water treatment compared to the unrecyclable EPS.
机译:与传统的EPS相比,纳米级Fe3O4辅助细胞外聚合物物质(EPS)的优越性尚不清楚其在磺酰胺酰胺污染的含水系统中的应用可行性。本研究报告了环保和可重复使用的EPS / Fe3O4分别应用于磺胺酰胺污染的水处理,包括磺胺甲恶唑(SMX),磺胺嘧啶(SM1),磺胺甲嘧啶(SM2)和磺胺酰胺(SDZ)。 EPS / FE3O4分别显示出77.93%,74.13%,65.62%,SMX,SM1,SM2和SDZ的吸附性能增加7.93%,19.02%,19.02%,13.78%和9.93%与传统的EPS相比。通过改变每种磺胺酰胺的现有物​​种,初始pH值调节吸附性能。吸附过程可以通过Freundlich和Pseudo-二阶动力学模型齐全。此外,SEM,FTIR,Zeta电位和XRD的多重证据解释了吸附机制(即,化学吸附,离子交换,羟基和疏水性)。解吸和再循环吸附实验证明了EPS / Fe3O4作为生物吸附剂的井再生能力(5个吸附 - 解吸循环后SMX的67.12%的吸附性能),表明EPS / Fe3O4被认为是磺胺胺污染水处理的优异选择不可识别的eps。

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