Department of Applied Chemistry, Saga University, Honjo 1, Saga 840-8502, Japan.
Department of Applied Chemistry, Saga University, Honjo 1, Saga 840-8502, Japan.
Bioresour Technol. 2013 Oct;146:713-720. doi: 10.1016/j.biortech.2013.07.014. Epub 2013 Jul 10.
The potential of the adsorbent prepared from DOJR marketed as cattle food in Japan was identified as an efficient and low cost adsorbent for fluoride using fixed bed column. DOJR was loaded with Zr(IV) ions to develop active adsorption sites for fluoride. Fluoride adsorption performance of column packed with Zr(IV) loaded DOJR was assessed under variable operating conditions such as Zr(IV) loading temperature, initial fluoride concentration, bed depth, initial pH, and flow rate. Breakthrough curve modeling showed that Thomas and bed depth service time (BDST) models were in good agreement with the experimental data. Application of adsorbent investigated in this study to the treatment of actual waste plating solution containing fluoride ion showed successful removal below acceptable standard in Japan using a fixed bed column, hence, Zr(IV)-DOJR can be expected to be a promising candidate for the treatment waste water containing trace amount of fluoride ion in fixed bed column.
从日本市场上的 DOJR 制备的吸附剂的潜力被确定为一种高效且低成本的氟化物吸附剂,可用于固定床柱。DOJR 负载 Zr(IV)离子,以开发用于氟化物的活性吸附位。在不同的操作条件下,如 Zr(IV)负载温度、初始氟浓度、床层深度、初始 pH 值和流速,评估了填充有 Zr(IV)负载 DOJR 的柱的氟化物吸附性能。穿透曲线模型表明,Thomas 和床层服务时间 (BDST) 模型与实验数据吻合较好。本研究中应用的吸附剂对含有氟离子的实际电镀废水进行处理的应用表明,使用固定床柱可以成功地去除低于日本可接受标准的氟离子,因此,Zr(IV)-DOJR 有望成为处理固定床柱中痕量氟离子废水的有前途的候选物。