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GO/铁系体系增强用于处理含硫酸盐有机废水的厌氧系统的抗pH冲击能力。

GO/iron series systems enhancing the pH shock resistance of anaerobic systems for sulfate-containing organic wastewater treatment.

作者信息

Wang Longyu, Li Haoyang, Wang Xiao, Liu Xiaofeng, Ma Weiqing, Zhou Guangji, Liang Qiaochu, Lan Huixia

机构信息

College of Environment and Safe Engineering, Qingdao University of Science & Technology Qingdao 266042 China

Shandong Linglong Tire Co., Ltd Yantai 265406 China.

出版信息

RSC Adv. 2022 Jul 21;12(32):20983-20990. doi: 10.1039/d2ra01616h. eCollection 2022 Jul 14.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b05/9301633/efdb78fd8c40/d2ra01616h-f1.jpg

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