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Biodegradation of 4-Nitrophenol in a Two-Phase System Operating with Polymers as the Partitioning Phase

机译:在聚合物为分配相的两相系统中4-硝基苯酚的生物降解

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摘要

The present study has demonstrated the enhanced performance of a two-phase bioreactor, operating with polymers as a partitioning phase, as an alternative to both single phase biotreatment and to the use of an immiscible organic solvent partitioning phase, to deliver a toxic substrate (4-nitrophenol, or 4NP) to a microbial consortium in batch and repeated batch mode. Three commercial polymers were tested, Hytrel, Tone, and Elvax, and were shown to have superior properties related to the use of a consortium, including complete biocompatibility with the biomass and nonbiodegradability. Repeated kinetic tests performed with short reaction times demonstrated the accumulation of 4NP within the polymers in the range of 6-8 mg/g polymer, which reduced polymer performance in subsequent batch operations. Hytrel gave the best performance with residuals of up to 4 mg /g polymer showing no reduction in subsequent use, while for the other polymers a 4NP value lower than 2 mg/g polymer was required to have acceptable performance during repeated polymer use. Polymer reuse without affecting the process efficiency was confirmed with regeneration tests. A conventional methanol extraction method, as well as biological regeneration of the polymers by prolonged contact with the biomass, were assessed for their ability to remove the residual 4NP. Parallel kinetic tests performed with new and regenerated polymers showed a complete overlap of the 4NP concentration profiles indicating that a simple biological regeneration method provides a means of completely restoring polymer performance for repeated batch operation.
机译:本研究证明了两相生物反应器的性能增强,该反应器以聚合物作为分配相运行,可替代单相生物处理和使用不混溶的有机溶剂分配相来输送有毒底物(4 -硝基苯酚或4NP)分批和重复分批方式加入微生物联盟。测试了三种商业聚合物Hytrel,Tone和Elvax,它们被证明具有与财团的使用相关的优异性能,包括与生物质的完全生物相容性和不可生物降解性。以短反应时间进行的重复动力学测试表明,4NP在聚合物中的累积量为6-8 mg / g聚合物,这降低了后续批生产操作中的聚合物性能。 Hytrel的性能最佳,残留量最高为4 mg / g聚合物,在后续使用中没有降低,而对于其他聚合物,要求4NP值低于2 mg / g的聚合物在重复使用聚合物时具有可接受的性能。再生测试证实了在不影响工艺效率的情况下聚合物的再利用。评估了常规甲醇提取方法以及通过与生物质长时间接触而对聚合物进行生物再生的方法,以评估其去除残留4NP的能力。用新的和再生的聚合物进行的平行动力学测试显示4NP浓度曲线完全重叠,表明简单的生物再生方法为重复的分批操作提供了一种完全恢复聚合物性能的方法。

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  • 来源
    《Environmental Science & Technology》 |2009年第18期|7105-7110|共6页
  • 作者单位

    Water Research Institute, C.N.R., Via Salaria km 29.300, CP 10-00016 Monterotondo Stazione (Rome) Italy;

    Department of Chemical Engineering Materials Environment, Sapienza University, Via Eudossiana 18, 00184 Rome, Italy;

    Department of Chemical Engineering, Queen's University, Kingston Canada K7L 3N6;

    Department of Chemical Engineering, Queen's University, Kingston Canada K7L 3N6;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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