Jing Jun, Feng Yucheng, Wu Shuying, Ye Zhangjie, Yang Liu, Li Jiaolong, Chen Youyan, Yang Fei
State Key Laboratory of Pulp and Paper Engineering, South China University of Technology Guangzhou 510640 China
RSC Adv. 2023 May 10;13(21):14190-14197. doi: 10.1039/d3ra00306j. eCollection 2023 May 9.
The photo-Fenton reaction provides an effective strategy for the removal of organic pollution in water environments. However, it remains a great challenge to develop photo-Fenton catalysts with high photocatalytic activity, low catalyst losses and excellent recyclability. In this work, a β-FeOOH/TiO/cellulose nanocomposite aerogel was fabricated as an efficient and convenient heterogeneous catalyst in the photo-Fenton system synthesis of TiO and β-FeOOH NPs on a cellulose-based aerogel. The cellulose aerogel not only acted as a microreactor to prevent aggregation of particles, but also acted as a supporting material to improve the stability and reusable performance of the catalyst. Meanwhile, the synergy between TiO and β-FeOOH endowed the cellulose-based nanocomposite aerogel with highly efficient photo-Fenton degradation of dyes. As a result, the composite β-FeOOH/TiO/cellulose aerogel displayed high photocatalytic performance. Its removal efficiency of MB reached 97.2% under weak UV light for 65 min. There is no obvious decrease in the catalytic efficiency after 5 cycles, suggesting the stability and recyclability of the composite aerogel. This study provides a novel strategy for the preparation of efficient green heterogeneous catalysts by using renewable resources, and shows composite catalyst processes have great potential in wastewater treatment.
光芬顿反应为去除水环境中的有机污染物提供了一种有效策略。然而,开发具有高光催化活性、低催化剂损耗和优异可回收性的光芬顿催化剂仍然是一个巨大的挑战。在这项工作中,制备了一种β-FeOOH/TiO/纤维素纳米复合气凝胶,作为光芬顿体系中一种高效便捷的多相催化剂,即在纤维素基气凝胶上合成TiO和β-FeOOH纳米颗粒。纤维素气凝胶不仅作为微反应器防止颗粒聚集,还作为支撑材料提高催化剂的稳定性和可重复使用性能。同时,TiO和β-FeOOH之间的协同作用赋予了纤维素基纳米复合气凝胶高效光芬顿降解染料的能力。结果,复合β-FeOOH/TiO/纤维素气凝胶表现出高光催化性能。在弱紫外光下65分钟内,其对亚甲基蓝的去除效率达到97.2%。经过5次循环后,催化效率没有明显下降,表明复合气凝胶具有稳定性和可回收性。本研究为利用可再生资源制备高效绿色多相催化剂提供了一种新策略,并表明复合催化剂工艺在废水处理中具有巨大潜力。