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Recirculation ratio regulates denitrifying sulfide removal and elemental sulfur recovery by altering sludge characteristics and microbial community composition in an EGSB reactor

机译:再循环比调节通过改变EGSB反应器中的污泥特性和微生物群落组成来调节反硝化硫化物去除和元素硫恢复

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摘要

Expanded granular sludge blanket (EGSB) is regarded as a promising reactor to carry out denitrifying sulfide removal (DSR) and elemental sulfur (S~0) recovery. Although the recirculation ratio is an essential parameter for EGSB reactors, how it impacts the DSR process remains poorly understood. Here, three lab-scale DSR-EGSB reactors were established with the different recirculation ratios (3:1, 6:1 and 9:1) to evaluate the corresponding variations in pollutant removal, S° recovery, anaerobic granular sludge (AGS) characteristics and microbial community composition. It was found that an intermediate recirculation ratio (6:1) could facilitate long-term reactor stability. Adequate recirculation ratio could enhance S~0 recovery, but an excessive recirculation ratio (9:1) was likely to cause AGS fragmentation and biomass loss. The S~0 desorbed more from sludge at higher recirculation ratios, probably due to the enhanced hydraulic disturbance caused by the increased recirculation ratios. At the low recirculation ratio (3:1), S~0 accumulation as inorganic suspended solids in AGS led to a decrease in VSS/TSS ratio and mass transfer efficiency. Although typical denitrifying and sulfide-oxidizing bacteria (e.g., Azoarcus, Thauera and Arcobacter) were predominant in all conditions, facultative and heterotrophic functional bacteria (e.g., Azoarcus and Thauera) were more adaptable to higher recirculation ratios than auto-trophs (e.g., Arcobacter, Thiobacillus and Vulcanibacillus), which was conducive to the formation of bacterial aggregates to response to the increased recirculation ratio. The study revealed recirculation ratio regulation significantly impacted the DSR-EGSB reactor performance by altering AGS characteristics and microbial community composition, which provides a novel strategy to improve DSR performance and S° recovery.
机译:将膨胀的粒状污泥毯(EGSB)被认为是有前途的反应器,以进行反硝化硫化物去除(DSR)和元素硫(S〜0)回收。虽然再循环比是EGSB反应器的基本参数,但它如何影响DSR过程仍然明确地理解。这里,使用不同的再循环比(3:1,6:1和9:1)建立了三种实验室标度DSR-EGSB反应器,以评估污染物去除,S°恢复,厌氧颗粒污泥(AGS)特征的相应变化和微生物群落组成。发现中间再循环比(6:1)可以促进长期反应堆稳定性。足够的再循环率可以增强S〜0恢复,但过量的再循环比(9:1)可能导致AGS破碎和生物质损失。 S〜0从更高的再循环比下从污泥下吸收,可能是由于增强的再循环比率引起的液压干扰。在低再循环比(3:1)中,S〜0积聚作为AGS中的无机悬浮固体导致VSS / TSS比率和传质效率降低。尽管在所有条件下,典型的反硝化和硫化物氧化细菌(例如,ZOZoarcus,Thauera和Arcobacter)在所有条件下占主导地位,但兼容性和异养功能细菌(例如,氮杂神经癖和Thauera)比自动促进者更适应更高的再循环比(例如,Arcobacter ,Thiobacillus和vulcanibacillus)有利于形成细菌聚集体以应对增加的再循环比率。该研究显示通过改变AGS特征和微生物群落组成来显着影响DSR-EGSB反应器性能,这提供了一种提高DSR性能和S°恢复的新策略。

著录项

  • 来源
    《Environmental research》 |2020年第2期|108905.1-108905.7|共7页
  • 作者单位

    State Key Laboratory of Urban Water Resources and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    State Key Laboratory of Urban Water Resources and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    State Key Laboratory of Urban Water Resources and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    State Key Laboratory of Urban Water Resources and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    Key Laboratory of Environmental Biotechnology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

    Key Laboratory of Environmental Biotechnology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China School of Environmental Science and Engineering Yancheng Institute of Technology Yancheng 224051 China;

    State Key Laboratory of Urban Water Resources and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    State Key Laboratory of Urban Water Resources and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    State Key Laboratory of Urban Water Resources and Environment School of Environment Harbin Institute of Technology Harbin 150090 China Key Laboratory of Environmental Biotechnology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Denitrifying sulfide removal; Expanded granular sludge blanket (EGSB); Recirculation ratio; Elemental sulfur recovery; Microbial community composition;

    机译:反硝化硫化物去除;膨胀粒状污泥毯(EGSB);再循环率;元素硫磺恢复;微生物群落组成;

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