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煅烧镍钴二元氢氧化物对水溶液中磷酸根离子的吸附

Adsorption of phosphate ions from an aqueous solution by calcined nickel-cobalt binary hydroxide.

作者信息

Ogata Fumihiko, Ueta Erimi, Toda Megumu, Otani Masashi, Kawasaki Naohito

机构信息

Faculty of Pharmacy, Kinki University, 3-4-1 Kowakae, Higashi-Osaka, Osaka 577-8502, Japan E-mail:

Kansai Catalyst Co., Ltd, 1-3-13, Kashiwagi-cho, Sakai-ku, Sakai, Osaka 590-0837, Japan.

出版信息

Water Sci Technol. 2017 Jan;75(1-2):94-105. doi: 10.2166/wst.2016.492.

Abstract

Different molar ratios of a Ni/Co binary hydroxide (NiCo82, NiCo91, and Ni100) were prepared and calcined at 270 °C (NiCo82-270, NiCo91-270, and Ni100-270). The properties of the adsorbents and the amount of adsorbed phosphate ions were evaluated. The adsorbents calcined at 270 °C had a nickel oxide structure. The amount of adsorbed phosphate ions, the amount of hydroxyl groups, and the specific surface area of the calcined adsorbents at 270 °C were greater than those of the uncalcined adsorbents. The amount of adsorbed phosphate ions was related to the amount of hydroxyl groups and the specific surface area; the correlation coefficients were 0.966 and 0.953, respectively. The adsorption isotherm data for NiCo91 and NiCo91-270 were fit to both the Freundlich and Langmuir equations. The amount of adsorbed phosphate ions increased with increasing temperature. The experimental data fit the pseudo-second-order model better than the pseudo-first-order model. A neutral pH was optimal for phosphate ion adsorption. In addition, the phosphate ions that were adsorbed onto NiCo91-270 could be recovered using sodium hydroxide, and the adsorbent was useful for the repetitive adsorption/desorption of phosphate ions. Collectively, these results suggest that NiCo91-270 is prospectively useful for the adsorption of phosphate ions from aqueous solutions.

摘要

制备了不同摩尔比的镍钴二元氢氧化物(NiCo82、NiCo91和Ni100),并在270℃下煅烧(NiCo82 - 270、NiCo91 - 270和Ni100 - 270)。对吸附剂的性能以及吸附的磷酸根离子量进行了评估。在270℃下煅烧的吸附剂具有氧化镍结构。270℃下煅烧的吸附剂吸附的磷酸根离子量、羟基量和比表面积均大于未煅烧的吸附剂。吸附的磷酸根离子量与羟基量和比表面积有关;相关系数分别为0.966和0.953。NiCo91和NiCo91 - 270的吸附等温线数据符合Freundlich方程和Langmuir方程。吸附的磷酸根离子量随温度升高而增加。实验数据拟合伪二级模型比伪一级模型更好。中性pH值最有利于磷酸根离子的吸附。此外,吸附在NiCo91 - 270上的磷酸根离子可用氢氧化钠回收,该吸附剂可用于磷酸根离子的重复吸附/解吸。总体而言,这些结果表明NiCo91 - 270在从水溶液中吸附磷酸根离子方面具有潜在的应用价值。

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