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Removal Characteristics of Organic Pollutants from Eutrophic Raw Water by Biological Pretreatment Reactors

机译:通过生物预处理反应器从富营养化原水中的有机污染物的去除特征

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摘要

Two biological contact oxidation reactors, cascade biofilm reactor (CSBR) and one-step biofilm reactor (OSBR), were used in this paper for pretreatment of eutrophic water from Lake Taihu in China. The CSBR was more effective and stable for eutrophic water treatment than OSBR, in terms of extracellular microcystin-LR, chlorophyll-a, DOC, and biodegradable dissolved organic carbon (BDOC) removal. Removal efficiencies of extracellular microcystin-LR and chlorophyll-a were 75.8% and 59.7% in CSBR and 60.5% and 53.0% after 2 h in OSBR. CSBR had much higher removal efficiency (34.3%) than OSBR (22.7%) for DOC, and CSBR could remove 67% BDOC, accounting for 34% of total DOC in source water. 11.5% of DOC was removed through means other than biological degradation, such as biofilm adsorption and bioflocculation. In CSBR at 5.5~13°C, 57.5% of atrazine was removed at 2 h hydraulic retention time, with background concentration of 136.5 ng/L. Meanwhile, removal efficiencies of three phthalic acid esters (PAEs) (dimethyl phthalate, di-(2-ethylhexyl) phthalate, and di-n-butyl phthalate) were 78.7%, 52.4%, and 85.3%, respectively. Only 35.2% of polycyclic aromatic hydrocarbons (PAHs) could be removed by CSBR with initial concentration of 21.5 μg/L. The results indicated that CSBR is effective in low-molecular-weight organic pollution pretreatment and provides benefits in terms of effluent quality.
机译:本文使用了两种生物接触氧化反应器,级联生物膜反应器(CSBR)和一步生物膜反应器(OSBR),用于从中国的太湖预处理富营养化水。在细胞外微囊藻,叶绿素-A,DOC和可生物降解的溶解有机碳(BDOC)上,CSBR比OSBR更有效和富养殖水处理稳定。在OSBR中,细胞外微囊藻和叶绿素-1的去除效率和叶绿素-A的效率为75.8%和59.7%,60.5%和53.0%。 CSBR比OSBR(22.7%)对DOC的删除效率高得多,CSBR可以去除67%的BDOC,占源水中DOC总量的34%。除了生物降解之外,例如生物膜吸附和生物絮凝等方法,将引出11.5%的DOC。在55〜13°C的CSBR中,在2小时的液压保留时间中除去57.5%的尿嘧啶,背景浓度为136.5 ng / L.同时,三种邻苯二甲酸酯(PAES)(邻苯二甲酸二甲酯,二甲基己基)邻苯二甲酸二甲酯和二丁二醇酯)分别的去除效率分别为78.7%,52.4%和85.3%。 CSBR可以除去35.2%的多环芳烃(PAHS),初始浓度为21.5μg/升。结果表明,CSBR在低分子量有机污染预处理中是有效的,并在出污水质量方面提供益处。

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