Li Tianpeng, Fan Jing, Sun Tingting
School of Environment, Henan Normal University, Xinxiang, People's Republic of China.
College of City and Architecture Engineering, Zaozhuang University, Zaozhuang, People's Republic of China.
Environ Technol. 2021 Oct;42(24):3807-3819. doi: 10.1080/09593330.2020.1743368. Epub 2020 Mar 24.
The study aims to remove methylene blue dye from water with a fixed-bed column packed with CuO nanocomposite ceramsites. The column showed the advantages of fixed-bed column adsorption and photocatalytic oxidation. The CuO nanocomposite ceramsites with strong photocatalytic oxidation activity and well-developed porous structure were successfully prepared with the chemical vapour deposition process, which also met with the China's industrial standard of CJ/T 299-2008 and China's national standard of GB 5085.3-2007. In the column experiments under the experimental conditions (initial pH was 3, reaction temperature was 25°C and flow rate was 33 mL/min), the breakthrough curve was much more smooth. The breakthrough time and saturation time under ultraviolet radiation were 36.0% and 26.83% longer than those under the conditions without ultraviolet radiation, because the micro-pore structure of ceramsite was closely related to optical excitation properties of nano-CuO. The Yoon-Nelson and Adams-Bohart models were applied to describe the obtained breakthrough curves using non-linear regression, in which the Yoon-Nelson model gave the better prediction results for breakthrough curves, with R>0.98. Besides, amines were the dominant intermediates at saturation point and final products were inorganic anions. This study confirmed that the fixed-bed column packed with CuO nanocomposite ceramsites could efficiently treat methylene blue dye wastewater, due to the structure-function relationship between ceramsite and nano-CuO.
该研究旨在利用填充有CuO纳米复合陶粒的固定床柱去除水中的亚甲基蓝染料。该柱展现出固定床柱吸附和光催化氧化的优势。通过化学气相沉积法成功制备出具有强光催化氧化活性且多孔结构发达的CuO纳米复合陶粒,其符合中国CJ/T 299 - 2008行业标准和GB 5085.3 - 2007国家标准。在实验条件(初始pH为3,反应温度为25°C,流速为33 mL/min)下的柱实验中,穿透曲线更为平滑。紫外线辐射下的穿透时间和饱和时间比无紫外线辐射条件下分别长36.0%和26.83%,这是因为陶粒的微孔结构与纳米CuO的光激发特性密切相关。运用Yoon - Nelson和Adams - Bohart模型通过非线性回归来描述所获得的穿透曲线,其中Yoon - Nelson模型对穿透曲线的预测结果更好,R>0.98。此外,胺是饱和点处的主要中间产物,最终产物为无机阴离子。该研究证实,由于陶粒与纳米CuO之间的结构 - 功能关系,填充有CuO纳米复合陶粒的固定床柱能够高效处理亚甲基蓝染料废水。