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首页> 外文期刊>Water Research >Integrating organic micropollutant removal into tertiary filtration: Combining PAC adsorption with advanced phosphorus removal
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Integrating organic micropollutant removal into tertiary filtration: Combining PAC adsorption with advanced phosphorus removal

机译:将有机微污染物的去除整合到第三级过滤中:将PAC吸附与先进的磷去除技术相结合

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摘要

Direct addition of powdered activated carbon (PAC) to a deep-bed filter was investigated at pilot-scale as a single advanced treatment stage for simultaneous removal of organic micropollutants (OMPs) and phosphorus from secondary effluent. PAC doses of 10-50 mg/L were assessed with regard to their impacts on filter performance and removal of 15 selected OMPs over a period of 18 months. The PAC was effectively retained by the filter and had no negative effect on filter head loss. Filter runtime until particle breakthrough depended mainly on coagulant dose and did not decrease significantly due to the additional PAC load. Removal of suspended solids and phosphorus by coagulation was effective independent of the PAC dose. A PAC dose of 35 mg/L PAC was suitable to remove well-adsorbing OMPs (e.g. carbamazepine, diclofenac) by >80% and medium adsorbing OMPs (e.g. primidone, sulfamethoxazole) by 50 -80%. Median removals were 50-80% for well-adsorbing and 30-50% for medium adsorbing OMPs with 20 mg/L PAC. Abatement of all OMPs was low (<50%) with 10 mg/L PAC, possibly because of the high effluent organic matter content (median dissolved organic carbon (DOC) concentrations of 11.2 mg/L). In addition to adsorptive removal, relevant concentration decreases of certain OMPs (e.g. 4-formylaminoantipyrine) were attributed to biological transformation in the filter. Adsorption onto accumulating PAC in the top layer of the filter bed led to improved OMP adsorption with increasing filter runtime. The comparison of OMP removal in the pilot filter with laboratory adsorption tests demonstrates that batch test results can be applied to estimate adsorptive OMP removal in real applications. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在中试规模下,将粉末状活性炭(PAC)直接添加到深床过滤器中作为单个高级处理阶段进行了研究,该阶段可同时从次级流出物中去除有机微污染物(OMP)和磷。评估了PAC剂量为10-50 mg / L对过滤器性能的影响以及在18个月内去除15种所选OMP的影响。 PAC有效地保留在过滤器中,对过滤头损失没有负面影响。直到颗粒突破的过滤器运行时间主要取决于凝结剂剂量,并且由于额外的PAC负载而没有明显减少。通过凝结去除悬浮固体和磷是有效的,与PAC剂量无关。 35 mg / L PAC的PAC剂量适合于将> 80%的吸附良好的OMPs(例如卡马西平,双氯芬酸)和50%-80%的中等吸附OMPs(例如primidone,磺胺甲恶唑)除去。对于具有20 mg / L PAC的良好吸附,中位数去除率为50-80%,对于中等吸附度的OMP,去除率为30-50%。使用10 mg / L PAC时,所有OMP的降低都很低(<50%),这可能是因为废水中的有机物含量高(溶解有机碳(DOC)中值浓度为11.2 mg / L)。除了吸附去除之外,某些OMP(例如4-甲酰氨基安替比林)的相关浓度降低还归因于过滤器中的生物转化。吸附到滤床顶层中堆积的PAC上可提高OMP吸附,并增加过滤时间。将中试过滤器中的OMP去除率与实验室吸附测试进行了比较,结果表明,批量测试结果可用于估算实际应用中的吸附性OMP去除率。 (C)2015 Elsevier Ltd.保留所有权利。

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