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Modelling of biological Cr(VI) removal in draw-fill reactors using microorganisms in suspended and attached growth systems

机译:使用悬浮和附着生长系统中的微生物对充填式反应器中生物六价六价铬去除的建模

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摘要

The kinetics of hexavalent chromium bio-reduction in draw-fill suspended and attached growth reactors was examined using sugar as substrate and indigenous microorganisms from the industrial sludge of the Hellenic Aerospace Industry. Initially, experiments in suspended growth batch reactors for Cr (VI) concentrations of 1.4-110 mg/l were carried out, to extensively study the behaviour of a mixed culture. The maximum Cr(VI) reduction rate of 2 mg/l h was achieved for initial concentration 12.85 mg/l with biomass production rate 4.1 mg biomass/1 h. Analysis of the microbial structure in the batch reactor culture indicated that the dominant bacterial communities were constituted by bacterial members of Raoultella sp., Citrobacter sp., Klebsiella sp., Salmonella sp., Achromobacter sp. and Kerstersia sp. while the dominant fungal strain was that of Pichia jadinii. Experiments using the same mixed culture were also carried out in packed-bed reactors with plastic support media. High removal rates were achieved (2.0 mg/l h) even in high initial concentrations (109 mg/l). A combination of the model of Tsao and Hanson for growth enhancement and that of Aiba and Shoda for growth inhibition was used in order to describe and predict the process of Cr(VI) bio-reduction in suspended growth and packed-bed reactors. Kinetic constants of the equation obtained from both batch (or draw-fill) culture experiments. In the draw-fill experiments at the packed-bed reactor, hexavalent chromium inhibitory effects were minimized increasing the inhibitory constant value K_i~' at 148.5 mg/l, compared to suspended growth experiments which was K_i = 8.219 mg/l. The model adequately predicts hexavalent chromium reduction in both batch reactors for all initial concentrations tested.
机译:使用糖作为底物和来自希腊航天工业污泥的本地微生物,检查了在抽水式悬浮和附着生长反应器中六价铬生物还原的动力学。最初,在悬浮生长间歇式反应器中进行了1.4-110 mg / l Cr(VI)浓度的实验,以广泛研究混合培养物的行为。初始浓度为12.85 mg / l时,最大的Cr(VI)还原速率为2 mg / l h,而生物质的产生速率为4.1 mg生物质/ 1 h。分批反应器培养物中微生物结构的分析表明,主要细菌群落由Raoultella sp。,Citrobacter sp。,Klebsiella sp。,沙门氏菌sp。,Achromobacter sp。的细菌成员组成。和Kerstersia sp。优势真菌菌株为贾第毕赤酵母。使用相同混合培养物的实验也在装有塑料载体的填充床反应器中进行。即使在较高的初始浓度(109 mg / l)下也能达到较高的去除率(2.0 mg / l h)。为了描述和预测悬浮生长反应器和填充床反应器中Cr(VI)生物还原的过程,使用了Tsao和Hanson用于促进生长的模型与Aiba和Shoda用于抑制生长的模型的组合。从两个分批(或灌装)培养实验中获得的方程的动力学常数。在填充床反应器的充液实验中,六价铬的抑制作用最小化,与悬浮生长实验K_i = 8.219 mg / l相比,抑制常数K_i''在148.5 mg / l处增加。该模型可以充分预测两个分批反应器中所有初始浓度的六价铬还原量。

著录项

  • 来源
    《Water Research》 |2013年第2期|623-636|共14页
  • 作者单位

    Department of Enuironmental and Natural Resources Management, University of Western Greece, 2 Se/eri Str., 30100 Agrinio, Greece;

    Department of Enuironmental and Natural Resources Management, University of Western Greece, 2 Se/eri Str., 30100 Agrinio, Greece;

    Department of Enuironmental and Natural Resources Management, University of Western Greece, 2 Se/eri Str., 30100 Agrinio, Greece;

    Department of Enuironmental and Natural Resources Management, University of Western Greece, 2 Se/eri Str., 30100 Agrinio, Greece;

    Department of Enuironmental and Natural Resources Management, University of Western Greece, 2 Se/eri Str., 30100 Agrinio, Greece;

    Institute of Chemical Engineering and High Temperature Chemical Processes (FORTH/ICE-HT), Stadiou Str., Platani, P.O. Box 1414, GR-26504 Patras, Hellas, Greece,Department of Chemical Engineering, University of Patras, 26504 Patras, Greece;

    Department of Enuironmental and Natural Resources Management, University of Western Greece, 2 Se/eri Str., 30100 Agrinio, Greece;

    Department of Enuironmental and Natural Resources Management, University of Western Greece, 2 Se/eri Str., 30100 Agrinio, Greece,Institute of Chemical Engineering and High Temperature Chemical Processes (FORTH/ICE-HT), Stadiou Str., Platani, P.O. Box 1414, GR-26504 Patras, Hellas, Greece;

  • 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

    hexavalent chromium; biological removal; draw-fill; modelling; suspended growth; attached growth;

    机译:六价铬生物去除;填充造型;暂停增长;依附成长;
  • 入库时间 2022-08-17 13:45:29

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