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Enhanced Phenol and Chlorinated Phenols Removal by Combining Ozonation and Biodegradation

机译:通过臭氧化和生物降解相结合的方法增强苯酚和氯化苯酚的去除

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摘要

Water treatment for wastewater containing phenols and their chlorinated variations has attracted important research efforts. Phenol's high toxicity makes them a good model to test possible water treatment based on biological and/or chemical methods. High concentrations of phenols may be treated by pure biological schemes. However, chlorinated phenols are very toxic for many microorganisms. Therefore, mixed treatment trains can be proposed to solve the treatment of this class of organics. In this study, the ozonation was used as pretreatment to decompose chlorinated phenols. Besides, this study describes how the microbial consortiums were adapted to handle ozonation by-products. The biodegradation of different phenol concentrations from 50 to 1,500 mg/L was evaluated using preadapted microbial consortia in batch and in a trickling packed-bed reactor (TPBR). Under batch conditions, phenol was efficiently removed up to 500 mg/L. For every phenol concentration evaluated, higher degradation rates were obtained in TPBR. The chlorophenols were found to be poorly degraded by the pure biological treatment, 4-CPh was not degraded during the biological process and 2,4-DCPh was only 40 % degraded after 250 h of culture. By combining the chemical (as pretreatment) and the biological processes, 85 % of 4-CPh was removed, while the degradation of the 2,4-DCPh was enhanced from 40 to 87 %. The predominant bacteria found in the preadapted cultures were Xanthomonas sp., Ancylobacter sp., and Rhodopseudomonas. Total treatment period was reduced from several weeks to some days. This information reflects the benefits offered by the mixed water treatment train proposed in this paper.
机译:含酚废水及其氯化物的水处理吸引了重要的研究工作。苯酚的高毒性使其成为基于生物和/或化学方法测试可能的水处理方法的良好模型。高浓度的苯酚可以通过纯生物方案处理。但是,氯化苯酚对许多微生物有剧毒。因此,可以提出混合处理方法来解决此类有机物的处理。在这项研究中,臭氧化被用作分解氯酚的预处理方法。此外,这项研究描述了微生物联盟如何适应处理臭氧化副产物。使用预先适应的微生物联盟在分流床和滴流床反应器(TPBR)中评估了50至1,500 mg / L不同苯酚浓度的生物降解。在间歇条件下,苯酚的去除效率高达500 mg / L。对于每个评估的苯酚浓度,在TPBR中获得更高的降解率。通过纯生物处理发现氯酚降解不佳,在生物过程中4-CPh未降解,培养250 h后2,4-DCPh仅降解40%。通过将化学过程(作为预处理过程)和生物学过程结合起来,去除了85%的4-CPh,而2,4-DCPh的降解率则从40%提高到87%。在预先适应的培养物中发现的主要细菌是Xanthomonas sp。,Ancylobacter sp。和Rhodopseudomonas。总治疗时间从数周缩短至几天。这些信息反映了本文提出的混合水处理技术的好处。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2012年第7期|p.4047-4064|共18页
  • 作者单位

    Unidad Profesional Interdisciplinaria de Biotecnologia (UPIBI)-IPN, Av. Acueducto s, PO Box 07340, Mexico, Mexico;

    Unidad Profesional Interdisciplinaria de Biotecnologia (UPIBI)-IPN, Av. Acueducto s, PO Box 07340, Mexico, Mexico;

    Escuela Superior de Ingenieria Quimica (ESIQIE)-IPN, Edif. 7, UPALM, PO Box 07738, Mexico, Mexico;

    Escuela Superior de Ingenieria Quimica (ESIQIE)-IPN, Edif. 7, UPALM, PO Box 07738, Mexico, Mexico;

    Unidad Profesional Interdisciplinaria de Biotecnologia (UPIBI)-IPN, Av. Acueducto s, PO Box 07340, Mexico, Mexico;

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

    ozonation; biodegradation; combined treatment; phenol; chlorophenols elimination;

    机译:臭氧化生物降解综合治疗;苯酚;消除氯酚;

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