Mehmood Ch Tahir, Zhong Ziyi, Zhou Hua, Zhang Chenchen, Xiao Yeyuan
Department of Civil and Environmental Engineering, College of Engineering, Shantou University Shantou Guangdong 515063 China
Department of Chemical Engineering, Guangdong Technion - Israel Institute of Technology Shantou Guangdong 515063 China.
RSC Adv. 2020 Oct 1;10(60):36349-36362. doi: 10.1039/d0ra06864k.
A visible light responsive TiO/AgPO (10 : 1) nanocomposite was prepared and successfully immobilized (12 wt%) in a spherical polymeric matrix consisting of polysulfone and alginate (10 : 6). The resulted beads featured a sponge-like structure with interconnected macrovoids and micropores, and showed high adsorption and visible-light photocatalytic activity towards various wastewater pollutants, including the widely used dye - methylene blue ( = 0.0321 min), and two emerging pharmaceutical contaminants - diclofenac ( = 0.018 min) and triclosan ( = 0.052 min). As determined, the ˙OH radical and h are the primary reactive oxygen species responsible for the photodegradation. The composite photocatalytic beads are also effective in bacterial inactivation and degradation of acyl-homoserine lactones (AHLs), the bacterial quorum sensing autoinducers triggering biofilms, thus exhibiting a promising future in wastewater disinfection and biofilm retardation. Additionally, these beads could be used in inter-switchable suspended or buoyant forms, and be effectively regenerated by HO treatment, and used for multiple cycles without any significant loss in photoactivity. With these unique features, the prepared visible-light photocatalytic beads could be easily applied in large-scale water and wastewater treatment systems.
制备了一种可见光响应的TiO/AgPO(10:1)纳米复合材料,并成功地以12 wt%的比例固定在由聚砜和海藻酸盐(10:6)组成的球形聚合物基质中。所得珠子具有海绵状结构,带有相互连通的大孔和微孔,对包括广泛使用的染料亚甲基蓝(k = 0.0321 min⁻¹)以及两种新兴的药物污染物双氯芬酸(k = 0.018 min⁻¹)和三氯生(k = 0.052 min⁻¹)在内的各种废水污染物表现出高吸附和可见光光催化活性。经测定,˙OH自由基和h⁺是负责光降解的主要活性氧物种。复合光催化珠子在细菌灭活和酰基高丝氨酸内酯(AHLs)降解方面也很有效,AHLs是触发生物膜形成的细菌群体感应自诱导剂,因此在废水消毒和生物膜抑制方面展现出广阔前景。此外,这些珠子可以以可相互切换的悬浮或漂浮形式使用,并通过H₂O₂处理有效地再生,且可用于多个循环而光活性没有任何显著损失。凭借这些独特特性,所制备的可见光光催化珠子能够轻松应用于大规模的水和废水处理系统。