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Sludge degradation and microbial community structures analysis in a microbial electrolysis cell-coupled up flow anaerobic blanket reactor with an ultrasound treatment system

机译:微生物电解细胞耦合厌氧橡皮布反应器中的污泥降解和微生物群落结构分析,具有超声处理系统

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摘要

This study proposed a sludge degradation system comprised of: (i) an ultrasound treatment (UT) system to disintegrate sludge; (ii) an up flow anaerobic sludge blanket (UASB) reactor to degrade the disintegrated sludge; and (iii) a microbial electrolysis cell (MEC) in replacement of a three-phase UASB separator to deeply degrade the disintegrated sludge. The influence of the ultrasound power, the temperature, and the voltage on the sludge degradation process was discussed. The experimental results showed that the UT unit effectively promoted sludge disintegration, thereby leading to deterioration of the quality of the reactor effluent. The temperature and the voltage parameters were found to be key for the anaerobic degradation (AD) process within this system. The volatile suspended solid concentration in the effluent was maintained at 320-380 mg L-1 (ca. 0.08 times the raw sludge concentration), thereby validating the utilization of MEC as a three-phase separation unit. The total chemical oxygen demand removal was maintained at 61.3% during 5 days of AD upon intermittent exposure of the sludge to the UT unit, thereby showing that the system can effectively degrade solid organic matter. The bacterial community structure of the raw sludge significantly changed, with the high biodiversity of this system increasing the ecological stability. This system can degrade sludge with high efficiency and could be used in further engineering applications.
机译:本研究提出了一种由以下组成的污泥降解系统:(i)以崩解污泥的超声处理(UT)系统; (ii)向上流动厌氧污泥毯(UASB)反应器,以降解崩解的污泥; (iii)在更换三相UASB分离器中进行微生物电解细胞(MEC)以深入降解崩解的污泥。讨论了超声波功率,温度和电压对污泥降解过程的影响。实验结果表明,UT单元有效地促进了污泥崩解,从而导致反应器流出物的质量劣化。发现温度和电压参数是该系统内的厌氧降解(AD)过程的键。流出物中的挥发性悬浮的固体浓度保持在320-380mg L-1(约0.08倍的原始污泥浓度),从而验证MEC作为三相分离单元。在污泥间歇暴露于UT单元的情况下,在AD的5天期间,总化学氧需求除去61.3%,从而显示系统可以有效降解固体有机物。原料污泥的细菌群落结构显着改变,具有该系统的高生物多样性,增加了生态稳定性。该系统可以以高效率降低污泥,可用于进一步的工程应用。

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  • 来源
    《RSC Advances》 |2018年第73期|共9页
  • 作者单位

    Northeastern Univ Sch Mech Engn &

    Automat Shenyang 110004 Liaoning Peoples R China;

    Northeastern Univ Sch Mech Engn &

    Automat Shenyang 110004 Liaoning Peoples R China;

    Northeastern Univ Sch Mech Engn &

    Automat Shenyang 110004 Liaoning Peoples R China;

    Northeastern Univ Sch Mech Engn &

    Automat Shenyang 110004 Liaoning Peoples R China;

    Northeastern Univ Sch Mech Engn &

    Automat Shenyang 110004 Liaoning Peoples R China;

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

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