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[磷酸根离子与金属络合物层状氢氧化物之间的相互作用评估]

[Evaluation of Interaction between Phosphate Ion and Metal Complex-layered Hydroxide].

作者信息

Ogata Fumihiko

机构信息

Laboratory of Public Health, Faculty of Pharmacy, Kindai University.

出版信息

Yakugaku Zasshi. 2020;140(8):955-960. doi: 10.1248/yakushi.20-00087.

Abstract

A nickel-aluminium-zirconium complex-layered hydroxide (NAZ), which was synthesized using each inorganic sulfate mixing ratio of 0.9 : 1.0 : 0.1, was prepared and calcined at different temperatures. The physicochemical properties of the NAZ were analyzed by scanning electron microscopy, specific surface area, number of hydroxyl groups, and pore volume. The specific surface area, number of hydroxyl groups, and pore volume of NAZ was 51.9 m/g, 1.08 mmol/g, and 0.27 μL/g, respectively. The amount of phosphate ion adsorbed onto NAZ was higher than that onto calcined NAZ at different temperatures. Therefore, the interaction between phosphate ions and NAZ was assessed using the elemental distribution analysis and the binding energy. After adsorption, the intensity of phosphorus atoms increased, indicating that the phosphate ions were adsorbed onto the NAZ surface. Additionally, phosphorus peaks (189 eV for 2s and 130 eV for 2p), which were not detected before adsorption, were clearly detected after adsorption. On the other hand, the intensity of the sulfur peak (165 eV for 2p) decreased after adsorption. Thus, we evaluated the ion exchange between phosphate ion and sulfate ion in the interlayer space of the NAZ. As a result, the correlation coefficient between the amount of phosphate ion adsorbed and the amount of sulfate ion released was positively correlated (r=0.960). Therefore, it can be clearly stated that one of the adsorption mechanisms of phosphate ions was related to ion exchange in the interlayer space of the NAZ. These findings are useful for preventing the eutrophication and recovery of phosphate ion in water environments.

摘要

采用0.9:1.0:0.1的各无机硫酸盐混合比例合成了镍铝锆复合层状氢氧化物(NAZ),并在不同温度下进行煅烧。通过扫描电子显微镜、比表面积、羟基数量和孔体积对NAZ的物理化学性质进行了分析。NAZ的比表面积、羟基数量和孔体积分别为51.9 m/g、1.08 mmol/g和0.27 μL/g。在不同温度下,NAZ上吸附的磷酸根离子量高于煅烧后的NAZ。因此,利用元素分布分析和结合能评估了磷酸根离子与NAZ之间的相互作用。吸附后,磷原子的强度增加,表明磷酸根离子吸附在了NAZ表面。此外,吸附前未检测到的磷峰(2s为189 eV,2p为130 eV)在吸附后被清晰检测到。另一方面,吸附后硫峰(2p为165 eV)的强度降低。因此,我们评估了NAZ层间空间中磷酸根离子与硫酸根离子之间的离子交换。结果,吸附的磷酸根离子量与释放的硫酸根离子量之间的相关系数呈正相关(r = 0.960)。因此,可以明确指出,磷酸根离子的吸附机制之一与NAZ层间空间中的离子交换有关。这些发现对于防止水环境中的富营养化和磷酸根离子的回收具有重要意义。

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