Synergistic effects of anionic surfactants on adsorption of norfloxacin by magnetic biochar derived from furfural residue

生物炭 化学 吸附 肺表面活性物质 十二烷基硫酸钠 无机化学 弗伦德利希方程 核化学 色谱法 环境化学 有机化学 热解 生物化学
作者
Changjing Li,Yuan Gao,Aimin Li,Lei Zhang,Guozhao Ji,Kongyun Zhu,Xuexue Wang,Yulin Zhang
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:254: 113005-113005 被引量:67
标识
DOI:10.1016/j.envpol.2019.113005
摘要

Norfloxacin (NOR) is a persistent organic pollutant and can be effectively removed from effluent by adsorption of biochar. However, the presence of other emerging contaminants, such as surfactants, will potentially alter adsorption performance of norfloxacin by biochar and the molecular-scale mechanisms of the interaction between surfactants and biochar remain poorly understood. In this study, adsorption of norfloxacin on magnetic biochar prepared with iron-containing furfural residue (FRMB) in the presence or absence of anionic surfactants was investigated. The adsorption of NOR was significantly affected by the initial pH and anionic surfactants-sodium dodecyl sulfate (SDS) and sodium dodecyl benzene sulfonate (SDBS). In the presence of SDS and SDBS, the maximum sorption capacities of NOR were 2.33 and 1.97 times higher than that in the absence of surfactants, reached to 698.6 mg g−1 and 589.9 mg g−1, respectively. The optimal pH condition which was 4 indicated that electrostatic adsorption played a decisive role in the adsorption process after introduction of SDS/SDBS. The adsorption data were fitted well by the Elovich model and Freundlich model at the optimal conditions in which both SDS and SDBS were hemimicelle (0.8 mM SDS or 0.4 mM SDBS), indicating surface heterogeneity of FRMB and the adsorption mechanism was related to the assembly of surfactants on biochar. FTIR results showed that FRMB and SDS/SDBS interacted through hydrophobic action, and more complex or aggregates were formed between the NOR and biochar/SDS/SDBS. This work highlights the synergistic enhancement effects of tested surfactants on the removal of NOR by magnetic biochar from aqueous systems.
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