首页> 外文期刊>The Science of the Total Environment >Effective removal of two fluoroquinolone antibiotics by PEG-4000 stabilized nanoscale zero-valent iron supported onto zeolite (PZ-NZVI)
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Effective removal of two fluoroquinolone antibiotics by PEG-4000 stabilized nanoscale zero-valent iron supported onto zeolite (PZ-NZVI)

机译:通过负载在沸石上的PEG-4000稳定的纳米零价铁有效去除两种氟喹诺酮类抗生素(PZ-NZVI)

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摘要

In this work, nanoscale zero-valent iron (NZVI) was synthesized via liquid phase reduction method with surfactant polyethylene glycol (PEG-4000) modified and supported onto zeolite to prepare PZ-NZVI composite. SEM-EDS, XPS, BET.etc. characterizations indicated that the sphere NZVI particles were loaded on the zeolite successfully and the aggregation was restrained. The adsorption performance of PZ-NZVI for norfloxacin (NOR) or ofloxacin (OFL), two typical fluoroquinolones (FQs), from water was conducted. The equilibrium studies were demonstrated using Langmuir, Freundlich, Temkin and Elovich isotherms and better agreement was attained with the Temkin model. Compared with NZVI and zeolite, PZ-NZVI had higher FQs removal efficiency, and the Langmuir maximum adsorption capacity was 54.67 mg g~(-1) (NOR) and 48.88 mg g~(-1) (OFL). The kinetic parameters displayed that two FQs adsorption onto PZ-NZVI followed pseudo-second-order kinetic modeL The thermodynamic analysis suggested the adsorption process was spontaneous and exothermic. In addition, the adsorption tests were executed at different influence factors and the adsorbent PZ-NZVI was suitable for a wide pH range (4-10) with the FQs (10 mg L~(-1)) removal efficiency above 90% in 1 h. Furthermore, it was found that PZ-NZVI can be effortlessly separated from mixed solutions using external magnetic field. Finally, the process of FQs adsorbed onto PZ-NZVI was attributed to the surface complexion (forming bidentate complexes), hydrophobic interaction, pore filling and electrostatic interaction.
机译:本文通过液相还原法,将表面活性剂聚乙二醇(PEG-4000)改性并负载在沸石上,合成了纳米零价铁(NZVI),制备了PZ-NZVI复合材料。 SEM-EDS,XPS,BET等表征表明球形NZVI颗粒成功地负载在沸石上并且聚集被抑制。进行了PZ-NZVI对水中两种典型的氟喹诺酮类(FQs)诺氟沙星(NOR)或氧氟沙星(OFL)的吸附性能。使用Langmuir,Freundlich,Temkin和Elovich等温线证明了平衡研究,并且使用Temkin模型获得了更好的一致性。与NZVI和沸石相比,PZ-NZVI的FQs去除效率更高,Langmuir最大吸附能力为54.67 mg g〜(-1)(NOR)和48.88 mg g〜(-1)(OFL)。动力学参数表明,两个FQ吸附在PZ-NZVI上均遵循伪二级动力学模式L。热力学分析表明吸附过程是自发的且放热的。另外,在不同的影响因素下进行了吸附测试,吸附剂PZ-NZVI适用于较宽的pH范围(4-10),FQs(10 mg L〜(-1))的去除效率在1中超过90%。 H。此外,发现可以使用外部磁场将PZ-NZVI轻松地从混合溶液中分离出来。最后,FQ吸附到PZ-NZVI上的过程归因于表面肤色(形成二齿络合物),疏水相互作用,孔填充和静电相互作用。

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