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首页> 外文期刊>PLoS One >Adsorption in a Fixed-Bed Column and Stability of the Antibiotic Oxytetracycline Supported on Zn(II)-[2-Methylimidazolate] Frameworks in Aqueous Media
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Adsorption in a Fixed-Bed Column and Stability of the Antibiotic Oxytetracycline Supported on Zn(II)-[2-Methylimidazolate] Frameworks in Aqueous Media

机译:Zn(II)-[2-甲基咪唑啉]骨架上固定的抗生素土霉素吸附柱和稳定性的土霉素。

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A metal-organic framework, Zn-[2-methylimidazolate] frameworks (ZIF-8), was used as adsorbent material to remove different concentrations of oxytetracycline (OTC) antibiotic in a fixed-bed column. The OTC was studied at concentrations of 10, 25 and 40 mg L-1. At 40 mg L-1, the breakthrough point was reached after approximately 10 minutes, while at 10 and 25 mg L-1 this point was reached in about 30 minutes. The highest removal rate of 60% for the 10 mg L-1 concentration was reached after 200 minutes. The highest adsorption capacity (28.3 mg g-1) was attained for 25 mg L-1 of OTC. After the adsorption process, a band shift was observed in the UV-Vis spectrum of the eluate. Additional studies were carried out to determine the cause of this band shift, involving a mass spectrometry (MS) analysis of the supernatant liquid during the process. This investigation revealed that the main route of adsorption consisted of the coordination of OTC with the metallic zinc centers of ZIF-8. The materials were characterized by thermal analysis (TA), scanning electron microscopy (SEM), powder X-ray diffraction (XRD), and infrared spectroscopy (IR) before and after adsorption, confirming the presence of OTC in the ZIF-8 and the latter’s structural stability after the adsorption process.
机译:使用金属有机骨架Zn- [2-甲基咪唑啉]骨架(ZIF-8)作为吸附剂,以去除固定床色谱柱中不同浓度的土霉素(OTC)抗生素。研究了OTC的浓度为10、25和40 mg L-1。在40 mg L-1时,约10分钟后达到突破点,而在10和25 mg L-1时,约30分钟后达到突破点。 200分钟后,对于10 mg L-1浓度,去除率达到60%的最高水平。 25 mg L-1的OTC达到最高的吸附容量(28.3 mg g-1)。吸附过程之后,在洗脱液的UV-Vis光谱中观察到了带移。进行了其他研究以确定这种带移的原因,包括在此过程中对上清液进行的质谱分析(MS)。这项研究表明,主要的吸附途径包括OTC与ZIF-8的金属锌中心的配位。在吸附前后,通过热分析(TA),扫描电子显微镜(SEM),粉末X射线衍射(XRD)和红外光谱(IR)对材料进行了表征,从而确认ZIF-8和后者在吸附过程后的结构稳定性。

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