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Variations of organic matters and microbial community in thermophilic anaerobic digestion of waste activated sludge with the addition of ferric salts

机译:添加三价铁盐对废活性污泥进行高温厌氧消化时有机物和微生物群落的变化

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Ferric salts will influence the thermophilic anaerobic digestion of waste activated sludge (WAS). FeCl3 was found to contribute to the anaerobic digestion process with a cumulative biogas production of 357 mL/gVS, 79.6% higher than that in the control group, and Fe-2(SO4)(3) had no distinct impact, while Fe(NO3)(3) inhibited the methanogenesis process. A favorable balance between the release of organic matters from WAS and consumption rate was established after dosing FeCl3 from the perspective of variations of soluble COD, volatile fatty acids (VFAs) and the dissolved organic matters (DOM) assessed by EEM fluorescence spectroscopy and fluorescence regional integration (FRI) technique. Conversely, the system with Fe(NO3)(3) achieved an unsuitable substrates environment. Pyrosequencing revealed that the anaerobic digestion system with FeCl3 enriched Coprothermobacter for proteins fermentation and Methanosarcina for methanogenesis with the values of 18.7% and 63.2%, respectively, while that with the supplementation of Fe(NO3)(3) obtained the lowest relative abundance. (C) 2014 Elsevier Ltd. All rights reserved.
机译:铁盐将影响废物活性污泥(WAS)的高温厌氧消化。发现FeCl3有助于厌氧消化过程,累积沼气产量为357 mL / gVS,比对照组高79.6%,Fe-2(SO4)(3)没有明显影响,而Fe(NO3 )(3)抑制了甲烷生成过程。从EOS荧光光谱法和荧光区域法评估的可溶性COD,挥发性脂肪酸(VFAs)和溶解性有机物(DOM)的变化角度来看,投加FeCl3后,WAS中的有机物释放与消耗率之间建立了良好的平衡。集成(FRI)技术。相反,具有Fe(NO3)(3)的系统实现了不合适的基材环境。焦磷酸测序表明,FeCl3富集的原细菌厌氧消化系统用于蛋白质发酵,甲烷菌属的甲烷厌氧消化用于甲烷生成,其值分别为18.7%和63.2%,而添加Fe(NO3)(3)的相对丰度最低。 (C)2014 Elsevier Ltd.保留所有权利。

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