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首页> 外文期刊>Science of the total environment >Antibiotic residues in wastewaters from sewage treatment plants and pharmaceutical industries: Occurrence, removal and environmental impacts
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Antibiotic residues in wastewaters from sewage treatment plants and pharmaceutical industries: Occurrence, removal and environmental impacts

机译:来自污水处理厂和制药行业的废水中的抗生素残留:发生,去除和环境影响

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摘要

Sewage treatment plants (STPs) and pharmaceutical manufactories (PMFs) are recognized as important reser-voirs for aquatic pollution with antibiotics. Although the occurrence of multiple classes of antibiotics has been mostly reported for STPs and PMFs, knowledge on the effects of wastewater treatment processes on the removal of antibiotics is not well documented. In this study, wastewaters were collected from different treatment points of two STPs and two PMFs in eastern China. Thirty-seven antibiotics within the four classes of fluoroquinolones (FQs), macrolides (MACs), sulfonamides (SAs) and tetracyclines (TCs) were analyzed. Among the investigated antibiotics, 19-33 out of 37 target compounds were detected at least once in the STPs wastewaters ranging from low ng/L to approximately 12.7 μ/L. In the wastewater samples collected from PMFs, up to 34 antibiotics were present with detection frequencies up to 100%, showing generally higher concentrations (up to 19.0 μ/L) than those at the STPs. FQs and SAs were the dominant antibiotic families, which accounted for more than 90% of the total antibiotic concentration in the wastewaters. Moreover, the removal of antibiotics by anaerobic-anoxic-oxic (A~2O), membrane bioreactor (MBR) and conventional activated sludge (CAS) systems was evaluated. The MBR system exhibited the best performance, mainly due to the processes of biodegradation and sorption during biological treatments. Notably, several SAs (SMP, SMZ) and FQs (C1N, ENO) antibiotics were consistently detected at concentration levels of μ/L in the effluent samples. The culturable antibiotic-resistance tests and risk assessment indicated that the antibiotic-contaminated effluents would facilitate the development of resistant bacteria and pose high toxicity to non-target organisms in the aquatic environment. Overall, the findings sug-gested an urgent need for improving the wastewater treatment technologies for simultaneous removal of differ-ent classes of antibiotics.
机译:污水处理厂(STP)和药品制造业(PMFS)被认为是具有抗生素的水生污染的重要树立型voir。虽然已经报告了STP和PMF的多种类别抗生素的发生,但是关于废水处理过程对去除抗生素的影响的知识并没有充分记录。在这项研究中,废水从中国东部的两个STP和两项PMF的不同治疗点收集。分析了四种氟代喹啉酮(FQS),大溴化甲衍生物(MACS),磺酰胺(SAS)和四环素(TCS)内的三十七种抗生素。在所研究的抗生素中,在从低Ng / L至约12.7μ/升的范围内至少一次检测到37个靶化合物中的19-33个。在从PMF收集的废水样品中,最多34个抗生素,检测频率高达100%,显示出比STPS所示的浓度高(高达19.0μ/ L)。 FQS和SAS是主要的抗生素家族,其占废水中总抗生素浓度的90%以上。此外,评价了通过厌氧 - 氧基 - 氧(A〜2O),膜生物反应器(MBR)和常规活性污泥(CAS)系统的去除抗生素。 MBR系统表现出最佳性能,主要是由于生物处理过程中生物降解和吸附的过程。值得注意的是,在流出物样品中,在μ/ L的浓度水平下始终检测几种SAS(SMP,SMZ)和FQs(C1N,eno)抗生素。培养的抗生素抗性试验和风险评估表明,抗生素污染的污水将促进抗性细菌的发展,并对水生环境中的非靶毒性产生高毒性。总体而言,调查结果令人遗憾的是,迫切需要改善废水处理技术,以同时去除不同的抗生素类别。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|147811.1-147811.11|共11页
  • 作者单位

    Qingdao Solid Waste Pollution Control and Resource Engineering Research Center School of Environment and Municipal Engineering Qingdao University of Technology Qingdao 266033 China Jinan Environmental Research Academy Jinan Shandong 250100 China;

    Jinan Environmental Research Academy Jinan Shandong 250100 China;

    Jinan Environmental Research Academy Jinan Shandong 250100 China;

    Jinan Environmental Research Academy Jinan Shandong 250100 China;

    Beijing Key Laboratory of Aqueous Typical Pollutants Control and Water Quality Safeguard School of Civil Engineering Beijing Jiaotong University Beijing 100044 China;

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

    Antibiotic residues; Sewage treatment plants; Pharmaceutical wastewater; Membrane bioreactor; Aquatic environment; Ecological risks;

    机译:抗生素残留物;污水处理厂;药物废水;膜生物反应器;水生环境;生态风险;

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