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使用胶体硅对镍铝锆复合氢氧化物进行造粒,用于从液相中吸附六价铬离子。

Granulation of Nickel-Aluminum-Zirconium Complex Hydroxide Using Colloidal Silica for Adsorption of Chromium(VI) Ions from the Liquid Phase.

机构信息

Faculty of Pharmacy, Kindai University, 3-4-1 Kowakae, Higashi-Osaka 577-8502, Osaka, Japan.

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

出版信息

Molecules. 2022 Apr 7;27(8):2392. doi: 10.3390/molecules27082392.

Abstract

We combined a nickel-aluminum-zirconium complex hydroxide (NAZ) with colloidal silica as a binder to prepare a granulated agent for adsorbing heavy metals from aqueous media. Three samples with different particle diameters were prepared to evaluate the effects on the properties: small (NAZ-S), medium (NAZ-M), and large (NAZ-L). We confirmed the granulation of the prepared samples at a binder content of 25%. NAZ-S had the largest specific surface area and number of hydroxyl groups, followed by NAZ-M and then NAZ-L. Regarding the adsorption capacity, NAZ-S adsorbed the most chromium(VI) ions followed by NAZ-M and then NAZ-L. The binding energy of Cr(2p) at 575-577 eV was detected after adsorption, and the effects of the temperature, contact time, and pH on the adsorption of chromium(VI) ions were evaluated. We identified the following adsorption mechanism: ion exchange with sulfate ions in the interlayer region of the NAZ samples. Finally, the chromium(VI) ions adsorbed by the NAZ samples were easily desorbed using a desorption solution. The results showed that NAZ offers great potential for the removal of chromium(VI) ions from aqueous solutions.

摘要

我们将镍铝锆复合氢氧化物(NAZ)与胶体硅酸钠结合作为粘结剂,制备了一种用于从水介质中吸附重金属的颗粒剂。制备了三种不同粒径的样品,以评估对性能的影响:小颗粒(NAZ-S)、中颗粒(NAZ-M)和大颗粒(NAZ-L)。我们在粘结剂含量为 25%时确认了所制备样品的造粒。NAZ-S 的比表面积和羟基数量最大,其次是 NAZ-M,然后是 NAZ-L。关于吸附容量,NAZ-S 吸附了最多的六价铬离子,其次是 NAZ-M,然后是 NAZ-L。吸附后检测到 Cr(2p)在 575-577 eV 的结合能,并评估了温度、接触时间和 pH 值对六价铬离子吸附的影响。我们确定了以下吸附机制:与 NAZ 样品层间区域的硫酸根离子进行离子交换。最后,用解吸溶液很容易将 NAZ 样品吸附的六价铬离子解吸。结果表明,NAZ 具有从水溶液中去除六价铬离子的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2ef/9028990/f647248db247/molecules-27-02392-g001.jpg

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