Wang Longyu, Li Haoyang, Wang Xiao, Liu Xiaofeng, Ma Weiqing, Zhou Guangji, Liang Qiaochu, Lan Huixia
College of Environment and Safe Engineering, Qingdao University of Science & Technology Qingdao 266042 China
Shandong Linglong Tire Co., Ltd Yantai 265406 China.
RSC Adv. 2022 Jul 21;12(32):20983-20990. doi: 10.1039/d2ra01616h. eCollection 2022 Jul 14.
In this study, the effect of pH shock during the treatment of sulfate-containing organic wastewater was investigated using an anaerobic fermentation system reinforced with graphene oxide (GO)/iron series systems. The results show that the anaerobic system with the GO/iron series systems exhibited enhanced resistance to pH shock. Among them, the GO/Fe system had the strongest resistance to pH shock, the systems of GO/FeO and GO/FeO followed close behind, while the blank system performed the worst. After pH shock, the COD removal rate, SO removal rate, and gas production of the GO/Fe group were significantly improved compared with those of the control group by 51.0%, 65.3%, and 34.6%, respectively, while the accumulation of propionic acid was the lowest. Further, detailed microbial characterization revealed that the introduction of the GO/iron series systems was beneficial to the formation of more stable anaerobic co-metabolic flora in the system, and the relative abundance of , , and increased after acidic and alkaline shock.
在本研究中,使用氧化石墨烯(GO)/铁系体系强化的厌氧发酵系统,研究了含硫酸盐有机废水处理过程中pH冲击的影响。结果表明,具有GO/铁系体系的厌氧系统对pH冲击表现出增强的抗性。其中,GO/Fe体系对pH冲击的抗性最强,GO/FeO和GO/Fe₂O₃体系紧随其后,而空白体系表现最差。pH冲击后,GO/Fe组的COD去除率、SO₄²⁻去除率和产气量与对照组相比分别显著提高了51.0%、65.3%和34.6%,而丙酸的积累量最低。此外,详细的微生物表征表明,引入GO/铁系体系有利于在系统中形成更稳定的厌氧共代谢菌群,并且在酸性和碱性冲击后,[此处原文可能缺失具体微生物名称]、[此处原文可能缺失具体微生物名称]、[此处原文可能缺失具体微生物名称]和[此处原文可能缺失具体微生物名称]的相对丰度增加。