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首页> 外文期刊>Journal of Hazardous Materials >Effects of green synthesis, magnetization, and regeneration on ciprofloxacin removal by bimetallic nZVI/Cu composites and insights of degradation mechanism
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Effects of green synthesis, magnetization, and regeneration on ciprofloxacin removal by bimetallic nZVI/Cu composites and insights of degradation mechanism

机译:绿色合成,磁化和再生对双金属nZVI / Cu复合材料去除环丙沙星的影响及其降解机理的见解

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摘要

In this study, nanoscale zerovalent iron (nZVI) with copper (Cu) bimetallic particles, whichare applied for degradation of Ciprofloxacin (CIP) under weak magnetic field (WMF), were synthesized using green tea extracts (GT-nZVI/Cu). The surface morphology and physicochemical properties of the novel catalytic materials were characterized. It was found that GT-nZVI was more stable and performed better in oxidation resistance than the nZVI synthesized by traditional chemical methods. Besides, the catalytic reactivity of GT-nZVI/Cu was measured with and without WMF, it is obvious from the experimental results the performance of GT-nZVI/Cu system was enhanced significantly with WMF. Moreover, WMF still had a certain effect even after being removed, which is called remanence effect. The mass spectrometry (MS) was utilized to analyze the degradation products of CIP, and the contribution of adsorption and Fenton/Fenton-like oxidation of GT-nZVI/Cu during CIP removal process was further evaluated. It was found that as the removal process progressed, the contribution ratio of Fenton/Fenton-like oxidation rose rapidly and exceeded adsorption after 20 min. Eventually, attempts have been made to regenerate GT-nZVI/Cu, in which physical recovery (ultrasonic) was the main route, and the CIP removal rate decreased as the regeneration times increased. This research provides new insights into the green synthesis and regeneration of nZVI and is expected to realize the practical application of nZVI.
机译:在这项研究中,使用绿茶提取物(GT-nZVI / Cu)合成了具有铜(Cu)双金属颗粒的纳米级零价铁(nZVI),该金属可用于弱磁场(WMF)下环丙沙星(CIP)的降解。表征了新型催化材料的表面形貌和理化性质。发现与传统化学方法合成的nZVI相比,GT-nZVI更稳定并且抗氧化性能更好。此外,在有和无WMF的情况下,都可以测量GT-nZVI / Cu的催化反应活性,从实验结果可以明显看出,使用WMF可以显着提高GT-nZVI / Cu体系的性能。而且,WMF甚至在删除后仍具有一定的作用,这称为剩磁效应。利用质谱(MS)分析了CIP的降解产物,并进一步评估了CIP去除过程中GT-nZVI / Cu的吸附和Fenton / Fenton样氧化的贡献。发现随着去除过程的进行,Fenton /类Fenton氧化的贡献率迅速上升,并在20分钟后超过吸附。最终,已经尝试再生GT-nZVI / Cu,其中物理恢复(超声波)是主要途径,随着再生时间的增加,CIP去除率降低。该研究为nZVI的绿色合成和再生提供了新的见识,有望实现nZVI的实际应用。

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