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嗜热生物膜基系统与臭氧氧化耦合强化高温制浆废水中有机物去除:性能、微生物群落及污染物转化。

Coupling of thermophilic biofilm-based systems and ozonation for enhanced organics removal from high-temperature pulping wastewater: Performance, microbial communities, and pollutant transformations.

机构信息

Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, Ministry of Education, Chongqing University, Chongqing 400045, PR China.

Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, Ministry of Education, Chongqing University, Chongqing 400045, PR China.

出版信息

Sci Total Environ. 2020 Apr 20;714:136802. doi: 10.1016/j.scitotenv.2020.136802. Epub 2020 Jan 18.

Abstract

This study focused on the establishment of thermophilic biofilm-based systems (TBSs) coupled with ozonation for treatment of high-temperature pulping wastewater. The effects of the inoculum, sludge growth mode, and temperature were investigated. These factors played roles in the organics removal performance and microbial communities of pulping wastewater treatment systems. At 50 °C, the TBS inoculated with optimal inoculum achieved 59.12% and 37.96% reductions in COD and chromaticity, which were superior to the reductions achieved by other systems. In this TBS, thermophilic lignocellulolytic microorganisms (Chloroflexus, Meiothermus, norank_f_Caldilineaceae, and Roseiflexus) and carbohydrate-fermenting bacteria (norank_f_Anaerolineaceae) were predominant. Their relative abundances were 25.55% and 10.42%, respectively. For enhanced removal of COD and chromaticity, an integrated system consisting of a primary TBS, ozonation, and a secondary TBS was proposed. The total COD and chromaticity removal efficiencies increased to 90.48% and 87.89%, respectively. BOD/COD increased from 0.20 to 0.40, and shifts of lignin-like and humic acid-like substances were observed during ozonation with the primary TBS effluent.

摘要

本研究聚焦于建立嗜热生物膜基系统(TBS)与臭氧氧化相结合的工艺,用于处理高温制浆废水。考察了接种物、污泥生长模式和温度等因素对制浆废水处理系统中有机物去除性能和微生物群落的影响。在 50°C 时,用最佳接种物接种的 TBS 对 COD 和色度的去除率分别达到了 59.12%和 37.96%,优于其他系统的去除率。在该 TBS 中,主要存在嗜热木质纤维素分解微生物(绿屈挠菌、嗜热栖热菌、未培养拟杆菌科和玫瑰红游动菌)和碳水化合物发酵菌(未培养拟杆菌科),它们的相对丰度分别为 25.55%和 10.42%。为了提高 COD 和色度的去除率,提出了一个由初级 TBS、臭氧氧化和次级 TBS 组成的集成系统。总 COD 和色度的去除效率分别提高到 90.48%和 87.89%。BOD/COD 从 0.20 增加到 0.40,并且在用初级 TBS 出水进行臭氧氧化时观察到木质素样和腐殖酸样物质的转移。

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