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一种高效吸附剂 Cu-Perusian 蓝@纳米金刚石用于稀释人工海水中和土壤处理废水中的铯。

A Highly Efficient Adsorbent Cu-Perusian Blue@Nanodiamond for Cesium in Diluted Artificial Seawater and Soil-Treated Wastewater.

机构信息

Department of Applied Chemistry, Tokyo University of Technology, 1404-1, Katakura-cho, Hachioji, Tokyo, 192-0982, Japan.

Vision Development Co. Ltd., 2-8-21, Kikuya bld., Kyobashi, Chuo-ku, Tokyo, 104-0031, Japan.

出版信息

Sci Rep. 2018 Apr 11;8(1):5807. doi: 10.1038/s41598-018-24129-0.

Abstract

A new adsorbent Cu-Perussian blue@Nanodiamond (Cu-PB@DND) for Cs removal was prepared and characterized with IR, SEM, X-ray diffraction, particle size analysis, and zeta-potential. The adsorbent consists of a core of aggregated detonation nanodiamond (DND) particles with the surface treated with Cu-PB. Cesium adsorption was studied in two modes; a co-precipitation mode and a batch mode. In the co-precipitation mode, DND, CuCl, and K[Fe(CN)] were added sequentially to a Cs solution in diluted artificial seawater. In the batch mode, adsorbent Cu-PB@DND was dispersed into a Cs solution with stirring. The distribution coefficient (K) of the co-precipitation mode was 8.8 × 10 (mL/g) at Cs 6.6 ppm in 0.07% seawater. The K value of the batch mode was 1.3 × 10 (mL/g). Precipitation of Cs-incorporated particles was complete, and post filtration was not necessary. Excess copper and iron ions were completely removed and were not detected in the supernatant. The adsorption data for Cu-PB@DND were analyzed by assuming Langmuir isotherm and a good fit was obtained with a maximum adsorption capacity Q of 759 mg/g. The co-precipitation method was also applied to soil-treated wastewater.

摘要

一种新型的 Cs 去除吸附剂 Cu-过氧铁氰化铜@纳米金刚石(Cu-PB@DND)被制备并通过红外光谱(IR)、扫描电子显微镜(SEM)、X 射线衍射(XRD)、粒度分析和 Zeta 电位进行了表征。该吸附剂由表面处理过的 Cu-PB 的聚集爆轰纳米金刚石(DND)颗粒核心组成。采用共沉淀和分批两种模式研究了 Cs 的吸附。在共沉淀模式下,DND、CuCl 和 K[Fe(CN)]6 依次添加到稀释人工海水中的 Cs 溶液中。在分批模式下,Cu-PB@DND 吸附剂在搅拌下分散到 Cs 溶液中。在 0.07%海水中 Cs 为 6.6 ppm 的条件下,共沉淀模式的分配系数(K)为 8.8×10(mL/g)。分批模式的 K 值为 1.3×10(mL/g)。Cs 结合颗粒的沉淀完全,不需要过滤。过量的铜和铁离子完全去除,上清液中未检出。通过假设 Langmuir 等温线对 Cu-PB@DND 的吸附数据进行分析,得到了很好的拟合,最大吸附容量 Q 为 759 mg/g。该共沉淀方法还应用于处理过土壤的废水。

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