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磷酸根或硝酸根存在下镁铝层状双金属氢氧化物对四环素的去除:行为及机理探究

The tetracyclines removal by MgAl layered double oxide in the presence of phosphate or nitrate: Behaviors and mechanism exploration.

作者信息

Zhang Ping, He Tao, Chen Han, Li Peng, Xiang Mingxue, Ding Nengshui, Deng Shuguang

机构信息

Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, School of Environmental and Chemical Engineering, Nanchang University, Nanchang 330031, China.

Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, School of Environmental and Chemical Engineering, Nanchang University, Nanchang 330031, China.

出版信息

J Colloid Interface Sci. 2020 Oct 15;578:124-134. doi: 10.1016/j.jcis.2020.04.122. Epub 2020 Apr 30.

Abstract

Pollution of tetracyclines (TCs) in swine wastewater has been a critical concern worldwide. Notably, multiple anions (e.g. PO, NO) coexist in the actual environments, which could significantly influence the TCs removal. In the current study, MgAl layered double oxide (MgAl-LDO) was adopted for investigating the TC removal performance with/without PO or NO. In all systems, the adsorption performance exhibited two different approaches between low and high TC concentrations. In the single system, pseudo-second-order and the Freundlich model fitted well to the equilibrium adsorption data when TC concentration was below 125 mg·L, while the pseudo-first-order and the linear model could describe the removal process at high TC concentration (>125 mg·L). The maximum adsorption capacity was 83.56 mg·g. In the co-existing system, the adsorption capacity was slightly enhanced when TC concentration below 150 mg·L however was inhibited at high concentration (>150 mg·L). Combined with the characterization analyses, the interaction mechanism at low concentration was primarily surface adsorption on reconstructed LDH from LDO in the TC-alone system. It is worth mention that both PO and NO facilitated the formation of LDH via rehydration of LDO which enhanced surface adsorption in the co-existing system. At high TC concentration, the formation of tetracycline-metal complexes played a dominant role in TC removal in the single system, whereas diminished complexation in the binary system led to the decreased TC removal. This study provides a theoretical and practical guidance for MgAl-LDO on the efficient remediation of actual tetracyclines wastewater.

摘要

猪废水中四环素(TCs)的污染已成为全球关注的关键问题。值得注意的是,实际环境中多种阴离子(如PO、NO)共存,这可能会显著影响TCs的去除效果。在本研究中,采用镁铝层状双氢氧化物(MgAl-LDO)来研究在有/无PO或NO存在的情况下TCs的去除性能。在所有体系中,吸附性能在低TC浓度和高TC浓度之间呈现出两种不同的方式。在单一体系中,当TC浓度低于125mg·L时,准二级动力学模型和Freundlich模型能很好地拟合平衡吸附数据,而在高TC浓度(>125mg·L)时,准一级动力学模型和线性模型可以描述去除过程。最大吸附容量为83.56mg·g。在共存体系中,当TC浓度低于150mg·L时吸附容量略有增强,但在高浓度(>150mg·L)时受到抑制。结合表征分析,低浓度下的相互作用机制主要是在单一TC体系中LDO重构的层状双氢氧化物(LDH)上的表面吸附。值得一提的是,PO和NO都通过LDO的再水化促进了LDH的形成,这增强了共存体系中的表面吸附。在高TC浓度下,四环素-金属络合物的形成在单一体系中对TC去除起主导作用,而在二元体系中络合作用减弱导致TC去除率降低。本研究为MgAl-LDO高效修复实际四环素废水提供了理论和实践指导。

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