Wang Dongxu, Mao Wanfeng, Zhao Lihong, Meng Duo, Tang Jiaqi, Wu Tengfei
Department of Civil and Architecture Engineering, Liaoning University of Technology, Jinzhou 121000, China.
Jinzhou Water Affairs (Group) Co., Ltd., Jinzhou 121000, China.
Nanomaterials (Basel). 2024 Dec 13;14(24):1996. doi: 10.3390/nano14241996.
With the development of industry, agriculture, and aquaculture, excessive ammonia nitrogen mainly involving ionic ammonia (NH) and molecular ammonia (NH) has inevitable access to the aquatic environment, posing a severe threat to water safety. Photocatalytic technology shows great advantages for ammonia nitrogen removal, such as its efficiency, reusability, low cost, and environmental friendliness. In this study, CP (g-CN/CoP) composite materials, which exhibited high-efficiency ammonia nitrogen removal, were synthesized through a simple self-assembly method. For the optimal CP-10 (10% CoP) samples, the removal rate of ammonia nitrogen reached up to 94.8% within 80 min under visible light illumination. In addition, the nitrogen selectivity S(N2) is about 60% for all oxidative products. The high performance of the CP-10 photocatalysts can be ascribed to the effective separation and transmission of electron-hole pairs caused by their heterogeneous structure. This research has significance for the application of photocatalysis for the remediation of ammonia nitrogen wastewater.
随着工业、农业和水产养殖业的发展,主要包括离子氨(NH)和分子氨(NH)的过量氨氮不可避免地进入水环境,对水安全构成严重威胁。光催化技术在氨氮去除方面显示出巨大优势,如效率高、可重复使用、成本低和环境友好。在本研究中,通过简单的自组装方法合成了具有高效氨氮去除性能的CP(g-CN/CoP)复合材料。对于最佳的CP-10(10% CoP)样品,在可见光照射下80分钟内氨氮去除率高达94.8%。此外,所有氧化产物的氮选择性S(N2)约为60%。CP-10光催化剂的高性能可归因于其异质结构导致的电子-空穴对的有效分离和传输。本研究对光催化在氨氮废水修复中的应用具有重要意义。