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处理后污水和污泥中的阴离子表面活性剂:对水生和陆地环境的风险评估。

Anionic surfactants in treated sewage and sludges: risk assessment to aquatic and terrestrial environments.

作者信息

Mungray Arvind Kumar, Kumar Pradeep

机构信息

Department of Chemical Engineering, SV National Institute of Technology, Surat 395 007, India.

出版信息

Bioresour Technol. 2008 May;99(8):2919-29. doi: 10.1016/j.biortech.2007.06.025. Epub 2007 Aug 13.

Abstract

Compared to low concentrations of anionic surfactants (AS) in activated sludge process effluents (ASP) (<0.2 mg/L), upflow anaerobic sludge blanket-polishing pond (UASB-PP) effluents were found to contain very high concentrations of AS (>3.5 mg/L). AS (or linear alkylbenzen sulfonate, LAS) removals >99% have been found for ASP while in case of UASB-PP it was found to be < or = 30%. AS concentrations averaged 7347 and 1452 mg/kg dry wt. in wet UASB and dried sludges, respectively. Treated sewage from UASB based sewage treatment plants (STPs) when discharged to aquatic ecosystems are likely to generate substantial risk. Post-treatment using 1-1.6d detention, anaerobic, non-algal polishing ponds was found ineffective. Need of utilizing an aerobic method of post-treatment of UASB effluent in place of an anaerobic one has been emphasized. Natural drying of UASB sludges on sludge drying beds (SDBs) under aerobic conditions results in reduction of adsorbed AS by around 80%. Application of UASB sludges on SDBs was found simple, economical and effective. While disposal of treated UASB effluent may cause risk to aquatic ecosystems, use of dried UASB sludges is not likely to cause risk to terrestrial ecosystems.

摘要

与活性污泥法工艺出水(ASP)中低浓度的阴离子表面活性剂(AS)(<0.2毫克/升)相比,上流式厌氧污泥床-抛光池(UASB-PP)出水被发现含有非常高浓度的AS(>3.5毫克/升)。已发现活性污泥法工艺对AS(或直链烷基苯磺酸盐,LAS)的去除率>99%,而对于UASB-PP工艺,其去除率被发现<或=30%。在湿式UASB污泥和干燥污泥中,AS浓度平均分别为7347和1452毫克/千克干重。基于UASB的污水处理厂(STP)处理后的污水排放到水生生态系统时可能会产生重大风险。使用1-1.6天停留时间的厌氧、无藻类抛光池进行后处理被发现无效。已强调需要采用需氧方法对UASB出水进行后处理,以取代厌氧方法。在需氧条件下,UASB污泥在污泥干燥床(SDB)上自然干燥会使吸附的AS减少约80%。发现将UASB污泥应用于污泥干燥床既简单、经济又有效。虽然处理后的UASB出水排放可能会对水生生态系统造成风险,但使用干燥的UASB污泥不太可能对陆地生态系统造成风险。

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