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采用磁性 Mg-Al-、Zn-Al- 和 Mg-Fe-层状双氢氧化物吸附磷:比较研究和吸附机制。

Adsorption of phosphorus by using magnetic Mg-Al-, Zn-Al- and Mg-Fe-layered double hydroxides: comparison studies and adsorption mechanism.

机构信息

Department of Municipal Engineering, School of Civil and Hydraulic Engineering, Hefei University of Technology, Hefei, 230009, China.

Nanjing University & Yancheng Academy of Environmental Protection Technology and Engineering, Yancheng, 224001, China.

出版信息

Environ Sci Pollut Res Int. 2019 Mar;26(7):7102-7114. doi: 10.1007/s11356-019-04191-5. Epub 2019 Jan 15.

Abstract

Mg-Al, Zn-Al and Mg-Fe magnetic layered double hydroxide (LDH) adsorbents were synthesized. The adsorption effect and influencing factors of these adsorbents were explored, and the adsorption mechanism of phosphorus was studied with advanced instruments. The results showed that the best adsorption performance was observed when the molar ratio of metals was 3 for the magnetic LDH adsorbents, and the maximum adsorption amount for phosphorus was 74.8, 80.8 and 67.8 mg/g for Mg-Al, Zn-Al and Mg-Fe LDHs, respectively. Pseudo-second-order kinetics could be used to describe the adsorption process of phosphorus onto the magnetic LDHs. The adsorption of phosphorus onto the magnetic LDHs was an exothermic process. Lower temperatures were favourable for adsorption, and the adsorption of phosphorus onto the magnetic LDHs was a spontaneous process. When the solid-liquid ratios were 0.10 g/L, 0.10 g/L and 0.05 g/L for Mg-Al, Zn-Al and Mg-Fe magnetic LDHs, respectively, the highest adsorption amount of phosphorus was achieved for each magnetic LDH. The maximum adsorption amount was observed at pH values of 6.0-8.0. The inhibitory effect of HCO on the adsorption capacity of phosphorus onto the magnetic LDHs was the strongest at a higher HCO concentration level. The relative content of -OH significantly reduced after adsorption of phosphorus by the FTIR analysis, which indicated that the mechanism of phosphorus removal was mainly through the exchange between hydroxyl on the adsorbent surface and phosphorus in water. XPS studies showed that oxygen provided electrons during the adsorption of phosphorus.

摘要

镁铝、锌铝和镁铁磁性层状双氢氧化物(LDH)吸附剂被合成。这些吸附剂的吸附效果和影响因素被探索,并使用先进的仪器研究了磷的吸附机制。结果表明,当金属摩尔比为 3 时,磁性 LDH 吸附剂的吸附性能最佳,磷的最大吸附量分别为 74.8、80.8 和 67.8 mg/g 的镁铝、锌铝和镁铁 LDHs。准二级动力学可用于描述磷在磁性 LDH 上的吸附过程。磷在磁性 LDH 上的吸附是一个放热过程。较低的温度有利于吸附,磷在磁性 LDH 上的吸附是一个自发的过程。当固液比分别为 0.10 g/L、0.10 g/L 和 0.05 g/L 时,镁铝、锌铝和镁铁磁性 LDH 的磷吸附量最高。磷的最大吸附量出现在 pH 值为 6.0-8.0 之间。在较高的 HCO 浓度水平下,HCO 对磷在磁性 LDH 上吸附容量的抑制作用最强。磷吸附后 FTIR 分析表明 -OH 的相对含量显著降低,这表明磷的去除机制主要是通过吸附剂表面羟基与水中磷之间的交换。XPS 研究表明,在磷吸附过程中氧提供了电子。

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