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首页> 外文期刊>Biochemical Engineering Journal >Fermentative and sulphate-reducing bacteria associated with treatment of an industrial dye effluent in an up-flow anaerobic fixed bed bioreactor
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Fermentative and sulphate-reducing bacteria associated with treatment of an industrial dye effluent in an up-flow anaerobic fixed bed bioreactor

机译:与上流厌氧固定床生物反应器中工业染料废水处理相关的发酵细菌和硫酸盐还原细菌

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摘要

This work aims to study effects of increasing wastewater loading rates (WLRs) on the performance of an up-flow anaerobic fixed bed bioreactor and on the dynamics of the bacterial community of the sludge using polymerase chain reaction-single stranded conformation polymorphism (PCR-SSCP) methods. The analysis showed that WLRs variations influence the bacterial community structure and affect the bioreactor performance. For WLRs of 0.34-0.85 g l~(-1) d~(-1), the bioreactor showed a high performance and maintained highest colour and chemical oxygen demand (COD) removal yields with average values of 95% and 90%, respectively. The molecular fingerprint revealed a positive correlation between the diversity and the bioreactor performance. Increasing the WLR to 1.7 g l~(-1) d~(-1) affected significantly the bioreactor performance, the colour and COD removal efficiencies dropped to average values of 75% and 70%, respectively and bacterial and archaeal communities' profiles changed.The gas production rates increased when WLR increased. The highest value of 0.681 l~(-1) d~(-1) was obtained at an hydraulic retention time (HRT) of 1 day. The use of molecular and microbiological methods to recover bacterial populations involved in this anaerobic process showed that fermentative (Clostridium spp.) and sulphate-reducing bacteria (SRB) (Desulfovibrio spp.) were the prominent members of the bioreactor bacterial community.
机译:这项工作旨在利用聚合酶链反应-单链构象多态性(PCR-SSCP)研究增加废水载量(WLRs)对上流厌氧固定床生物反应器性能和污泥细菌群落动力学的影响。 ) 方法。分析表明,WLR的变化会影响细菌群落结构并影响生物反应器的性能。对于0.34-0.85 g l〜(-1)d〜(-1)的WLR,该生物反应器显示出高性能并保持最高的色度和化学需氧量(COD)去除率,平均值分别为95%和90%。分子指纹揭示了多样性与生物反应器性能之间的正相关。将WLR增加到1.7 gl〜(-1)d〜(-1)会显着影响生物反应器的性能,颜色和COD去除效率分别降至平均值的75%和70%,细菌和古细菌群落的分布也发生了变化。随着WLR的增加,天然气的生产率也随之提高。在1天的水力停留时间(HRT)下获得了0.681 l〜(-1)d〜(-1)的最大值。使用分子和微生物学方法来回收参与该厌氧过程的细菌种群显示,发酵菌(Clostridium spp。)和硫酸盐还原菌(SRB)(Desulfovibrio spp。)是生物反应器细菌群落的主要成员。

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