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Influence of organic loading rate on ciprofloxacin and sulfamethoxazole biodegradation in anaerobic fixed bed biofilm reactors

机译:有机加载率对厌氧固定床生物膜反应器中环丙沙星和磺胺甲恶唑生物降解的影响

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摘要

Antibiotic compounds, notably sulfamethoxazole (SMX) and ciprofloxacin (CIP), are ubiquitous emerging contaminants (ECs), which are often found in domestic sewage. They are associated with the development of antimicrobial resistance. Operational parameters, e.g. organic loading rate (0LR), hydraulic retention time (HRT) and sludge retention time, may influence EC biodegradation in wastewater treatment plants. This study assessed the impact of the OLR variation on the biodegradation of CIP and SMX, applying two configurations of anaerobic fixed bed reactors: anaerobic packed bed biofilm reactor (APBBR) and anaerobic structured bed biofilm reactor (ASBBR). A significant reduction in the biodegradation of SMX (APBBR: 93-69%; ASBBR: 94-81%) and CIP (APBBR: 85-66%; ASBBR: 85-64%) was observed increasing OLR from 0.6 to 2.0 kgCOD m~(-3) d~(-1). The decrease in the HRT from 12 to 4 h resulted in higher liquid-phase mass transfer coefficient (APBBR: k_s from 0.01 to 0.05 cm h~(-1); ASBBR: k_s from 0.07 to 0.24 cm h~(-1)), but this was not enough to overcome the decrease in the antibiotic-biomass contact time on biofilm, thus reducing the bioreactors' performance. The ASBBR favored biomethane production (from 7 to 17 mLCH_4 g~(-1)VSS L~(-1) d~(-1)) and biodegradation kinetics (k_(bio) from 1.7 to 4.2 and for SMX and from 2.1 to 4.8 L g~(-1) VSS d~(-1) for CIP) due to the higher relative abundance of the archaea community in the biofilm and the lower liquid-phase mass transfer resistance in the structured bed. CIP and SMX cometabolic biodegradation was associated to the hydrogenotrophic methanogenesis (mainly Meth-anobacterium genus) in co-culture with fermentative bacteria (notably the genera Clostridium, Bacillus, Lactivibrio, Syntrophobacter and Syntrophorhabdus). The anaerobic fixed bed biofilm reactors proved to be highly efficient in biodegrading the antibiotics, preventing them from spreading to the environment.
机译:抗生素化合物,特别是磺胺甲恶唑(SMX)和环丙沙星(CIP),是普遍存在的新出现污染物(ECS),其通常在国内污水中发现。它们与抗微生物抗性的发展有关。操作参数,例如有机加载速率(0LR),液压保留时间(HRT)和污泥保留时间,可能影响废水处理厂中的EC生物降解。本研究评估了OLR变异对CIP和SMX生物降解的影响,应用了两种厌氧固定床反应堆的配置:厌氧包装床生物膜反应器(APBBR)和厌氧结构床生物膜反应器(ASBBR)。 SMX生物降解的显着降低(APBBR:93-69%; ASBBR:94-81%)和CIP(APBBR:85-66%; ASBBR:85-64%)从0.6到2.0 kgcod m增加〜(-3)d〜(-1)。 HRT的减少从12-4小时导致液相传质系数较高(APBBR:K_S,0.01至0.05cm H〜(-1); ASBBR:K_S为0.07至0.24cm H〜(-1)) ,但这是不足以克服生物膜上的抗生素生物量接触时间的降低,从而降低生物反应器的性能。 ASBBR赞成生物甲烷生产(从7至17mLCH_4 G〜(-1)VSS L〜(-1)D〜(-1))和生物降解动力学(K_(BIO)从1.7到4.2和SMX和2.1到CIP 4.8 L G〜(-1)VSS D〜(-1))由于生物膜中的古膜群体的相对丰度较高,并且结构化床中的较低的液相传质电阻。 CIP和SMX Cometabolic生物降解与发酵细菌共同培养的氢养型甲烷发生(主要是甲基杆菌属)(特别是Genera Clostridium,Bacillus,Lactiviro,Syntrophorhabdus)相关联。厌氧固定床生物膜反应器证明在生物降解抗生素中具有高效,防止它们蔓延到环境中。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第1期|111170.1-111170.10|共10页
  • 作者单位

    Laboratory of Biological Processes (LPB) Sao Carlos School of Engineering University of Sao Paulo (USP) 1100 Joao Dagnone Ave. Santa Angelina 13563-120 Sao Carlos Sao Paulo Brazil;

    Laboratory of Biological Processes (LPB) Sao Carlos School of Engineering University of Sao Paulo (USP) 1100 Joao Dagnone Ave. Santa Angelina 13563-120 Sao Carlos Sao Paulo Brazil;

    Laboratory of Biological Processes (LPB) Sao Carlos School of Engineering University of Sao Paulo (USP) 1100 Joao Dagnone Ave. Santa Angelina 13563-120 Sao Carlos Sao Paulo Brazil;

    Laboratory of Chromatography (CROMA) Institute of Chemistry of Sao Carlos University of Sao Paulo (USP) 400 Trabalhador Sao-Carlense Ave. Sao Carlos Sao Paulo 13566-590 Brazil;

    Laboratory of Biological Processes (LPB) Sao Carlos School of Engineering University of Sao Paulo (USP) 1100 Joao Dagnone Ave. Santa Angelina 13563-120 Sao Carlos Sao Paulo Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodegradation kinetics; Emerging contaminants; Hydraulic retention time; Liquid-phase mass transfer; Methanobacterium; Sorption;

    机译:生物降解动力学;新兴污染物;液压保留时间;液相传质;甲基杆菌;吸附;

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