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首页> 外文期刊>ACS Omega >Removal of Berberine from Wastewater by MIL-101(Fe): Performance and Mechanism
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Removal of Berberine from Wastewater by MIL-101(Fe): Performance and Mechanism

机译:通过MIL-101(FE)从废水中去除Berberine:性能和机制

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The water contamination from pharmaceuticals and personal care products (PPCPs) has attracted worldwide attention in recent years because of its threat to public health. Berberine is a typical anti-inflammatory medicine and berberine wastewater is difficult to be treated due to its high toxicity, poor biodegradability, and high acidity. Metal–organic frameworks would be a good choice to remove berberine from wastewater due to its advantages of high specific surface area, ultrahigh porosity, and structural and functional tunability. In this study, MIL-101(Fe) was synthesized and used for the removal of berberine from water. Experimental results indicated that MIL-101(Fe) showed promising characteristics when berberine was adsorbed in acidic wastewater. The high concentration of chloride in berberine wastewater could promote the adsorption of berberine by MIL-101(Fe). Fitting of batch equilibrium data showed that MIL-101(Fe) had a maximum adsorption capacity of 163.93 mg/g for berberine removal at pH 7, and the berberine sorption on MIL-101(Fe) followed the pseudo-second-order model. Furthermore, the associate mechanism for berberine removal was proposed by characterizing the material and theoretical calculation. The X-ray power diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), and X-ray photoelectron spectroscopy (XPS) analysis showed that no chemical reaction occurred during the adsorption of berberine by MIL-101(Fe). Also, the theoretical calculation results indicated that π–π interactions may play the main role in the adsorption of berberine onto MIL-101(Fe). The findings of this study suggest that MIL-101(Fe) is a promising sorbent for berberine removal from wastewater.
机译:近年来,药品和个人护理产品(PPCPS)的水污染是由于其对公共卫生的威胁而引起全世界的关注。小檗碱是一种典型的抗炎药,由于其高毒性,较差的生物降解性和高酸度而难以治疗小檗碱废水。由于其具有高比表面积,超高孔隙度和结构和功能可调性,金属有机框架是一种不错的选择,从废水中取出污水中的小檗碱。在该研究中,合成MIL-101(Fe)并用于从水中去除小檗碱。实验结果表明,MIL-101(FE)在酸性废水中吸附了Berberine时显示出有希望的特性。小檗碱废水中的高浓度氯化物可以促进MIL-101(Fe)的Berberine的吸附。批量平衡数据的拟合显示,MIL-101(Fe)在pH7的小檗碱除去的Berberine除去的最大吸附容量为163.93mg / g,并且在MIL-101(Fe)上的Berberine吸附跟随伪二阶模型。此外,通过表征材料和理论计算,提出了Berberine去除的助理机制。 X射线功率衍射(XRD),傅里叶变换红外光谱(FTIR)和X射线光电子谱(XPS)分析表明,在MIL-101(Fe)的Berberine吸附过程中没有发生化学反应。此外,理论计算结果表明,π-π相互作用可能在MIL-101(Fe)上的Berberine吸附中的主要作用。该研究的结果表明Mil-101(Fe)是对废水中的小檗碱去除的有前途的吸附剂。

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