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Influence of phenylacetic acid pulses on anaerobic digestion performance and archaeal community structure in WWTP sewage sludge digesters

机译:苯乙酸脉冲对污水处理厂污泥消化池厌氧消化性能和古细菌群落结构的影响

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The effect of phenylacetic acid (PAA) pulses on anaerobic digestion (AD) performance and archaeal community structure was evaluated in anaerobic digesters treating sewage sludge from a wastewater treatment plant (WWTP). Four pilot-scale continuous stirred tank reactors were set up at a full-scale municipal WWTP in Santiago de Chile, and fed with either primary or mixed sewage sludge. AD performance was evaluated by volatile fatty acid (VFA) and biogas production monitoring. Archaeal community structure was characterized by 16S rRNA denaturing gradient gel electrophoresis and band sequencing. In the primary sludge digester, a single PAA pulse at 200 mg L-1 was sufficient to affect AD performance and archaeal community structure, resulting in long-term VFA accumulation, reduced biogas production and community shift from dominant acetoclastic (Methanosaeta concilii) to hydrogenotrophic (Methanospirillum hungatei) methanogens. By contrast, AD performance and archaeal community structure in the mixed sludge digester were stable and resistant to repeated PAA pulses at 200 and 600 mg L-1. This work demonstrated that the effect of PAA pulses on methanogenic activity and archaeal community structure differed according to AD substrate, and suggests that better insights of the correlations between archaeal population dynamics and functional performance could help to better face toxic shocks in AD.
机译:在处理废水处理厂(WWTP)污水污泥的厌氧消化池中,评估了苯乙酸(PAA)脉冲对厌氧消化(AD)性能和古细菌群落结构的影响。在智利圣地亚哥的一个大型市政污水处理厂中,建立了四个中试规模的连续搅拌釜反应器,并向其中供入初级污泥或混合污泥。 AD性能通过挥发性脂肪酸(VFA)和沼气生产监控进行评估。通过16S rRNA变性梯度凝胶电泳和条带测序来表征古细菌群落结构。在主要的污泥消化池中,一个200 mg L-1的PAA脉冲足以影响AD性能和古细菌群落结构,从而导致长期VFA积累,沼气产生减少以及群落从占优势的碎屑碎屑菌(Methanosaeta concilii)变为氢营养型(Methanospirillum hungatei)产甲烷菌。相比之下,混合污泥消化池中的AD性能和古细菌群落结构稳定,并且对200和600 mg L-1的重复PAA脉冲具有抵抗力。这项工作表明,PAA脉冲对产甲烷活性和古细菌群落结构的影响随AD底物的不同而有所不同,并表明对古细菌种群动力学与功能性能之间的相关性的更好了解有助于更好地应对AD中的毒性休克。

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