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Fate of pharmaceuticals and their transformation products in integrated membrane systems for wastewater reclamation

机译:用于废水填海的集成膜系统中药品的命运及其转化产品

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摘要

The removal of pharmaceuticals (PhACs) present in urban wastewater by membrane bioreactors (MBRs) followed by reverse osmosis (RO) or nanofiltration (NF) membranes has been frequently addressed in the literature. However, data regarding the removal of their main human metabolites and transformation products (TPs) is still scarce. In this study, the presence of 13 PhACs and 20 of their metabolites and TPs was monitored during 2 consecutive years in the different treatment steps of urban raw wastewater (sewer, primary treatment, MBR and RO/NF). Rejection of the selected contaminants when using low pressure NF membranes (NF-90) or RO membranes (ESPA 2) after the MBR step was also investigated. The analgesic acetaminophen, which was found at the highest concentrations in the sewer and influent samples (18-74 mu g L-1) over the two experimental periods, was fully eliminated during MBR treatment. Those PhACs that were only partially removed after the MBR, were almost completely removed (> 99%) by the RO membrane working under different process conditions. At a similar average permeate fluxes (18 L m(-2) h(-1)), the NF membrane showed high removal efficiencies (> 90%) for all of the PhACs and their metabolites, though lower than those achieved by the RO membrane. When the flux of the NF90 membrane was increased to 30 L m(-2) h(-1) (while still operating at a feed pressure lower than the RO membrane at 18 L m(-2) h(-1)) the performance of the membrane increased, achieving 98% rejection of PhACs.
机译:通过膜生物反应器(MBRS)在城市废水中除去了在城市废水中的药物(PHAC),然后在文献中经常解决逆转渗透(RO)或纳米滤膜(NF)膜。然而,关于移除其主要人体代谢物和转化产品(TPS)的数据仍然稀缺。在该研究中,在城市原料废水(下水道,初级治疗,MBR和RO / NF)的不同治疗步骤中,在连续2年中监测13个PHAC和20种代谢物和TPS的存在。还研究了在MBR步骤后使用低压NF膜(NF-90)或RO膜(ESPA 2)时拒绝所选择的污染物。在MBR处理期间,在两个实验期间,在两个实验期间,在下水道中的最高浓度下发现的镇痛乙酰氨基酚(18-74 mu G L-1)被全面消除。仅在MBR后部分除去的那些PHAC,几乎完全除去(> 99%)在不同的过程条件下工作。在类似的平均渗透助熔剂(18L m(-2)H(-1))中,NF膜显示出所有PHAC和它们的代谢物的高除去效率(> 90%),但它们的代谢物也低于RO实现的那些膜。当NF90膜的通量增加至30L m(-2)H(-1)时(同时仍然在18L m(-2)H(-1)的Ro膜低于RO膜的进料压力下运行)膜的性能增加,达到了98%的PHAC。

著录项

  • 来源
    《Chemical engineering journal》 |2018年第2018期|共12页
  • 作者单位

    Univ Girona LEQUIA Inst Environm Campus Montilivi C Maria Aurelia Capmany 69 E-17003 Girona Catalonia Spain;

    Univ Girona LEQUIA Inst Environm Campus Montilivi C Maria Aurelia Capmany 69 E-17003 Girona Catalonia Spain;

    Univ Girona LEQUIA Inst Environm Campus Montilivi C Maria Aurelia Capmany 69 E-17003 Girona Catalonia Spain;

    Univ Girona Catalan Inst Water Res ICRA Parc Cient &

    Tecnol H2O Bldg C Emili Grahi 101 Girona 17003 Catalonia Spain;

    Univ Girona Catalan Inst Water Res ICRA Parc Cient &

    Tecnol H2O Bldg C Emili Grahi 101 Girona 17003 Catalonia Spain;

    Univ Girona LEQUIA Inst Environm Campus Montilivi C Maria Aurelia Capmany 69 E-17003 Girona Catalonia Spain;

    Univ Girona LEQUIA Inst Environm Campus Montilivi C Maria Aurelia Capmany 69 E-17003 Girona Catalonia Spain;

    Univ Girona LEQUIA Inst Environm Campus Montilivi C Maria Aurelia Capmany 69 E-17003 Girona Catalonia Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Metabolites; Degradation; Membrane bioreactor; Reverse osmosis; Nanofiltration; Antibiotics;

    机译:代谢物;降解;膜生物反应器;反渗透;纳滤;抗生素;

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