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Fenton-like catalytic degradation of tetracycline by magnetic palygorskite nanoparticles prepared from steel pickling waste liquor

机译:钢酸洗废液制备的磁性坡缕石纳米粒子的芬顿状催化降解四环素

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Magnetic palygorskite nanoparticles (Pal@Fe3O4) were prepared from steel pickling waste liquor and used for Fenton-like catalytic degradation of tetracycline(TC). The results showed that TC can be efficiently removed in a wide pH range of 3-7. The degradation efficiency reached 72.9% within 60 min under neutral conditions. Moreover, since the amount of leached iron ions was < 0.03 mg/L after each reaction, the catalytic effectiveness of Pal@Fe3O4 hardly changed after five cycles. The microstructure of Pal@Fe3O4 was investigated by SEM, TEM and STEM-EDS mapping, which showed that the Fe3O4 spherical nanoparticles were supported on the surface of the rod-shaped Pal. Moreover, the saturation magnetization of Pal@Fe3O4 was 44.11 emu/g, indicating that the catalyst could be easily separated by magnetic separation technology. Both hydroxyl radicals (center dot OH) and superoxide radicals (center dot O-2(-)) were proven by electron spin resonance spectroscopy to be the dominant active species responsible for TC degradation. Four degradation products were identified by LC-MS/MS, mainly produced by the attack of the active radicals on the N-C bond in the TC molecule.
机译:用钢酸洗废液制备磁性坡缕石纳米颗粒(Pal @ Fe3O4),用于芬顿样催化降解四环素(TC)。结果表明,可以在3-7的宽pH范围内有效去除TC。在中性条件下,降解效率在60分钟内达到72.9%。而且,由于每个反应后浸出的铁离子的量<0.03mg / L,所以在五个循环后Pal @ Fe3O4的催化效率几乎不变。通过SEM,TEM和STEM-EDS图谱研究了Pal @ Fe3O4的微观结构,表明Fe3O4球形纳米颗粒负载在棒状Pal表面。此外,Pal @ Fe3O4的饱和磁化强度为44.11 emu / g,表明该催化剂可通过磁分离技术轻松分离。电子自旋共振光谱证明,羟基自由基(中心点OH)和超氧化物自由基(中心点O-2(-))都是负责TC降解的主要活性物质。通过LC-MS / MS鉴定出四种降解产物,主要由TC分子中N-C键上的活性基团攻击而产生。

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