Cong Qiao, Ren Miao, Zhang Tingting, Cheng Fangyuan, Qu Jiao
School of Municipal and Environmental Engineering, Jilin Jianzhu University, Research Field: Environmental Chemistry Changchun 130118 China
School of Environment, Northeast Normal University, Research Field: Environmental Chemistry No. 2555 Jingyue Street Changchun 130117 China
RSC Adv. 2021 Sep 6;11(48):29896-29905. doi: 10.1039/d1ra04533d.
Photoelectrocatalytic technology has proven to be an efficient way of degrading organic contaminants, including dyes. Graphene (GR) -based catalysts have been frequently used in photoelectrocatalysis, due to their excellent catalytic performances. In this work, the GR/beta-cyclodextrin (GR/β-CD) composite was prepared and used for a widely used triphenylmethane dye (bromophenol blue, BPB) photoelectrocatalytic degradation. The results indicated that the degradation of the prepared GR/β-CD composite for BPB was effective with the combination of external bias voltage and simulated sunlight irradiation. Under optimum conditions, the BPB (10 mg L) was completely eliminated by GR/β-CD composite within 120 min. ˙O played a prominent role in the BPB photoelectrocatalytic degradation. The time required for the removal of BPB in water to reach 100% can be reduced to 30 min with the presence of Cl, owing to the generation of ˙Cl. Moreover, the toxicity of the degraded system with Cl, predicted by the QSAR (Quantitative Structure-Activity Relationship) model in ECOSAR (Ecological Structure-Activity Relationships) program, was weaker than that without Cl. The prepared GR/β-CD composite revealed great advantages in photoelectrocatalytic degradation of organic pollutants due to its metal-free, low cost, simplicity, and efficient performance. This work provided new insight into the efficient and safe degradation of organic pollutants in wastewaters.
光电催化技术已被证明是降解包括染料在内的有机污染物的有效方法。基于石墨烯(GR)的催化剂因其优异的催化性能而经常用于光电催化。在这项工作中,制备了GR/β-环糊精(GR/β-CD)复合材料,并将其用于一种广泛使用的三苯甲烷染料(溴酚蓝,BPB)的光电催化降解。结果表明,在外部偏置电压和模拟阳光照射的共同作用下,制备的GR/β-CD复合材料对BPB的降解是有效的。在最佳条件下,GR/β-CD复合材料在120分钟内可将10 mg/L的BPB完全去除。˙O在BPB的光电催化降解中起主要作用。由于˙Cl的产生,在有Cl存在的情况下,水中BPB去除率达到100%所需的时间可缩短至30分钟。此外,ECOSAR(生态结构-活性关系)程序中的QSAR(定量结构-活性关系)模型预测,含Cl的降解体系的毒性比不含Cl的降解体系弱。所制备的GR/β-CD复合材料由于其无金属、低成本、简单且高效的性能,在有机污染物的光电催化降解方面显示出巨大优势。这项工作为废水中有机污染物的高效安全降解提供了新的见解。