氧-厌氧生物悬浮流化床反应器(O-ABMSFBR)处理浴浴废水的生物调控及工艺特性深入分析

IF 4.1 2区 环境科学与生态学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Yunxiao Ban, Qiang Dou, Liyuan Liu, Cong Ma, Zhijie Wan
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引用次数: 0

摘要

本研究提出了一种氧-缺氧生物悬浮流化床反应器(O-ABMSFBR)用于处理含有高浓度线性烷基苯磺酸盐(LAS)和低水平有机物和营养物质的浴浴废水。结果表明,当进水速率保持在5.2 ~ 6.0 mL/min时,LAS、浊度和CODcr的去除率分别超过94%、90%和83%。结合高通量测序发现,在好氧条件下,LAS可降解为硫酸盐和亚硫酸盐;在缺氧条件下,硫酸盐和亚硫酸盐被还原到更低的价态,最终转化为有机硫供微生物代谢。磁场有助于微生物抵抗LAS的毒性,增强其生物活性,促进细菌对LAS胁迫的适应,加强生物絮凝,从而提高O-ABMSFBR对各种污染物的去除效率。磁悬浮层促进活性污泥层和生物膜层的形成,促进反应器内好氧-缺氧环境的建立,增强LAS及其降解产物的去除,对有机负荷波动表现出更强的弹性。O-ABMSFBR有效提高了液相与活性污泥的混合效率和传质能力,具有水力停留时间(HRT)较短的特点。出水的LAS、CODcr和浊度浓度符合中水回用标准,在处理低污染废水方面表现出巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In-depth analysis of biological regulation and process characteristics in the treatment of bath wastewater using oxic-anoxic biological magnetically suspended fluidized bed reactor (O-ABMSFBR)

In-depth analysis of biological regulation and process characteristics in the treatment of bath wastewater using oxic-anoxic biological magnetically suspended fluidized bed reactor (O-ABMSFBR)
This study proposes an Oxic-Anoxic Biological Magnetically Suspended Fluidized Bed Reactor (O-ABMSFBR) for the treatment of bath wastewater containing high concentrations of linear alkylbenzene sulfonates (LAS) and low levels of organic matter and nutrients. The results indicate that when the inflow rate is maintained between 5.2 and 6.0 mL/min, the removal rates of LAS, turbidity, and Chemical Oxygen Demand with Dichromate (CODcr) exceed 94%, 90%, and 83%, respectively. Combined with high-throughput sequencing, it was found that under aerobic conditions, LAS can be degraded into sulfates and sulfites; under anoxic conditions, sulfates and sulfites are reduced to lower valence states and ultimately converted into organic sulfur for microbial metabolism. The magnetic field assists microorganisms in resisting the toxicity of LAS, enhances their biological activity, promotes bacterial adaptation to LAS stress, and strengthens bioflocculation, thereby improving the removal efficiency of various pollutants by the O-ABMSFBR. The magnetic levitation layer facilitates the formation of both the activated sludge layer and the biofilm layer, fostering the establishment of an aerobic-anoxic environment within the reactor, enhancing the removal of LAS and their degradation products, and demonstrating greater resilience to fluctuations in organic load. The O-ABMSFBR effectively enhances mixing efficiency and mass transfer capacity between the liquid phase and activated sludge, characterized by a relatively short hydraulic retention time (HRT). The effluent concentrations of LAS, CODcr, and turbidity meet greywater reuse standards and exhibit significant potential for treating low-pollution wastewater.
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来源期刊
CiteScore
9.60
自引率
10.40%
发文量
107
审稿时长
21 days
期刊介绍: International Biodeterioration and Biodegradation publishes original research papers and reviews on the biological causes of deterioration or degradation.
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