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Influence of discontinuing feeding degradable cosubstrate on the performance of a fluidized bed bioreactor treating a mixture of trichlorophenol and phenol

机译:停止进料可降解共基质对流化床生物反应器处理三氯苯酚和苯酚混合物的性能的影响

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摘要

The purpose of our research was to evaluate the effect of eliminating supplementation of sucrose to the reactor influent on the performance of a lab scale partially-aerated methanogenic fluidized bed bioreactor (PAM-FBBR). Two operational stages were distinguished: in the first stage the influent contained a mixture of 120/30/1000 mg/L of 2,4,6-trichlorophenol/phenol/COD-sucrose (TCP/Phe/COD-sucrose); in the second stage only the xenobiotic concentrations were the same 120/30 mg/L of TCP/Phe whereas sucrose addition was discontinued. Removal efficiencies of TCP, Phe, and COD were very high and close for both stages; i.e., ηtcp: 99.9 and 99.9%; ηphe: 99.9 and 99.9%; ηcod = 96.46 and 97.48% for stage 1 and stage 2, respectively. Traces of 2,4,6 dichlorophenol (0.05 mg/L) and 4-chlorophenol (0.07-0.26 mg/L) were found during the first 15 days of operation of the second stage, probably due to the adaptation to no co-substrate conditions. Net increase of chloride anion Cl~- in effluent ranged between 59.5 and 61.5 mg Cl~-/L that was very close to the maximum theoretical concentration of 62.8 mg Cr~-/L PCR-DGGE analysis revealed a richness decrease of eubacterial domain posterior to sucrose elimination from the influent whereas archaeal richness remained almost the same. However, the bioreactor performance was not negatively affected by discontinuing the addition of co-substrate sucrose. Our results indicate that the application of PAM-FBBR to the treatment of groundwaters polluted with chlorophenols and characterized by the lack of easily degradable co-substrates, is a promising alternative for on site bioremediation.
机译:我们研究的目的是评估消除反应器进水中蔗糖补充对实验室规模部分充气的产甲烷流化床生物反应器(PAM-FBBR)性能的影响。区分了两个操作阶段:在第一阶段,进水包含120/30/1000 mg / L 2,4,6-三氯苯酚/苯酚/ COD-蔗糖的混合物(TCP / Phe / COD-蔗糖);在第二阶段中,只有异种生物浓度为相同的TCP / Phe 120/30 mg / L,而蔗糖添加已中止。 TCP,Phe和COD的去除效率都很高,并且在两个阶段都接近。即ηtcp:99.9%和99.9%; ηphe:99.9和99.9%;对于阶段1和阶段2,ηcod分别为96.46和97.48%。在第二阶段操作的前15天中发现了2,4,6二氯苯酚(0.05 mg / L)和4-氯苯酚(0.07-0.26 mg / L)的痕迹,可能是由于没有共底物的适应条件。废水中氯离子Cl〜-的净增加量在59.5至61.5 mg Cl〜-/ L之间,非常接近理论最大浓度62.8 mg Cr〜-/ L PCR-DGGE分析显示,真细菌域向后富集性降低从进水中除去蔗糖,而古细菌的丰度几乎保持不变。然而,通过停止添加共底物蔗糖不会对生物反应器的性能产生负面影响。我们的结果表明,PAM-FBBR在处理被氯酚污染的地下水中的应用,其特点是缺乏易于降解的共底物,是现场生物修复的有前途的替代方法。

著录项

  • 来源
    《Journal of Environmental Management》 |2012年第2012期|527-537|共11页
  • 作者单位

    Environmental Biotechnology and Renewable Energies Rand D Croup, Dept. Biotechnology and Bioengineering, C1NVESTAV del l.P.N, P.O. Box 14-740, 07000 Mexico D.F., Mexico;

    Environmental Biotechnology and Renewable Energies Rand D Croup, Dept. Biotechnology and Bioengineering, C1NVESTAV del l.P.N, P.O. Box 14-740, 07000 Mexico D.F., Mexico;

    Environmental Biotechnology and Renewable Energies Rand D Croup, Dept. Biotechnology and Bioengineering, C1NVESTAV del l.P.N, P.O. Box 14-740, 07000 Mexico D.F., Mexico;

    Depto. Cenetica y Biologia Molecular, C1NVESTAV del I.P.N, Mexico D.F., Mexico;

    Environmental Biotechnology and Renewable Energies Rand D Croup, Dept. Biotechnology and Bioengineering, C1NVESTAV del l.P.N, P.O. Box 14-740, 07000 Mexico D.F., Mexico;

    Environmental Biotechnology and Renewable Energies Rand D Croup, Dept. Biotechnology and Bioengineering, C1NVESTAV del l.P.N, P.O. Box 14-740, 07000 Mexico D.F., Mexico;

    Depto. de Ciencias Basicas, ES1QIE del l.P.N, Mexico D.F., Mexico;

  • 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

    degradation; fluidized bed bioreactor; sucrose; trichlorophenol;

    机译:降解;流化床生物反应器蔗糖;三氯苯酚;

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