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Biodegradation of Pharmaceuticals in hospital wastewater by a hybrid biofilm and activated sludge system (Hybas)

机译:混合生物膜和活性污泥系统(Hybas)对医院废水中的药物进行生物降解

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摘要

Hospital wastewater contributes a significant input of Pharmaceuticals into municipal wastewater. The combination of suspended activated sludge and biofilm processes, as stand-alone or as hybrid process (hybrid biofilm and activated sludge system (Hybas™)) has been suggested as a possible solution for hospital wastewater treatment To investigate the potential of such a hybrid system for the removal of Pharmaceuticals in hospital wastewater a pilot plant consisting of a series of one activated sludge reactor, two Hybas™ reactors and one moving bed biofilm reactor (MBBR) has been established and adapted during 10 months of continuous operation. After this adaption phase batch and continuous experiments were performed for the determination of degradation of Pharmaceuticals. Removal of organic matter and nitrification mainly occurred in the first reactor. Most Pharmaceuticals were removed significantly. The removal of Pharmaceuticals (including X-ray contrast media, β-blockers, analgesics and antibiotics) was fitted to a single first-order kinetics degradation function, giving degradation rate constants from 0 to 1.49 h~(-1), from 0 to 7.78 × 10~(-1) h~(-1), from 0 to 7.86 × 10~(-1) h~(-1) and from 0 to 1.07 × 10~(-1) h~(-1) for first, second, third and fourth reactors respectively. Generally, the highest removal rate constants were found in the first and third reactors while the lowest were found in the second one. When the removal rate constants were normalized to biomass amount, the last reactor (biofilm only) appeared to have the most effective biomass in respect to removing Pharmaceuticals. In the batch experiment, out of 26 compounds, 16 were assessed to degrade more than 20% of the respective pharmaceutical within the Hybas™ train. In the continuous flow experiments, the measured removals were similar to those estimated from the batch experiments, but the concentrations of a few Pharmaceuticals appeared to increase during the first treatment step. Such increase could be attributed to de-conjugation or formation from other metabolites.
机译:医院废水在市政废水中贡献了大量的药品投入。已建议将悬浮的活性污泥和生物膜工艺结合使用,既可以作为独立工艺也可以作为混合工艺(混合生物膜和活性污泥系统(Hybas™))作为医院废水处理的可能解决方案,以研究这种混合系统的潜力为了去除医院废水中的药物,已经建立了一个试验工厂,该工厂由一系列的活性污泥反应器,两个Hybas™反应器和一个移动床生物膜反应器(MBBR)组成,并在连续运行10个月后进行了改造。在适应阶段之后,进行了分批和连续实验以确定药物的降解情况。有机物的去除和硝化作用主要发生在第一反应器中。大多数药品均已明显清除。去除药物(包括X射线造影剂,β受体阻滞剂,镇痛药和抗生素)符合一个一级动力学降解功能,降解速率常数从0到1.49 h〜(-1),从0到7.78×10〜(-1)h〜(-1),从0到7.86×10〜(-1)h〜(-1),从0到1.07×10〜(-1)h〜(-1)分别用于第一,第二,第三和第四反应堆。通常,在第一和第三反应器中发现最高的去除速率常数,而在第二反应器中发现最低的常数。当将去除速率常数相对于生物质量进行标准化时,最后一个反应器(仅生物膜)相对于去除药物似乎具有最有效的生物质。在分批实验中,评估了26种化合物中的16种在Hybas™系列中降解了20%以上的相应药物。在连续流实验中,测得的去除率与分批实验中估计的去除率相似,但是一些药物的浓度在第一个处理步骤中似乎有所增加。这种增加可以归因于其他代谢物的脱结合或形成。

著录项

  • 来源
    《Science of the total environment》 |2015年第15期|383-392|共10页
  • 作者单位

    Environmental Science, Aarhus University, Frederiksborgsvej 399, 4000 Roskilde, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, Miljovej 113, 2800 Kgs. Lyngby, Denmark;

    Environmental Science, Aarhus University, Frederiksborgsvej 399, 4000 Roskilde, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, Miljovej 113, 2800 Kgs. Lyngby, Denmark;

    Department of Chemistry and Biotechnology, Danish Technological Institute, Kongsvang Alle 29, 8000 Aarhus C, Denmark;

    AnoxKaldnes, Klosteraengsvaegen 11A, 226 47 Lund, Sweden;

    Department of Chemistry and Biotechnology, Danish Technological Institute, Kongsvang Alle 29, 8000 Aarhus C, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, Miljovej 113, 2800 Kgs. Lyngby, Denmark;

    Environmental Science, Aarhus University, Frederiksborgsvej 399, 4000 Roskilde, Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hospital wastewater; MBBR; X-ray contrast media; Pharmaceuticals; Removal rate constants;

    机译:医院废水;MBBR;X射线造影剂;药品;去除率常数;

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