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Influence of nitrogen-rich substrates on biogas production and on the methanogenic community under mesophilic and thermophilic conditions

机译:富含氮底物对嗜钠和嗜热条件下沼气生产和甲状腺群落的影响

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Grass silage was evaluated as a possible substrate in anaerobic digestion for generation of biogas in mesophilic and thermophilic long-term operation. Furthermore, the molecular biological parameter Metabolic Quotient (MQ) was evaluated as early warning system to predict process disturbance. Since this substrate is rich in nitrogen, high ammonia concentration of up to 2.2 g * kg(FM)(-1) emerged. The high buffer capacity of the ammonium/ammonia system can disguise upcoming process acidification. At organic loading rates (OLR) below 1.0 kgvs * m(-3)* d(-1) (VS: volatile solids) for thermophilic and below 1.5 kgvs * m(-3) * d(-1) for mesophilic reactors, stable processes were established. With increasing OLR, the process was stressed until it broke down in the thermophilic reactors at an OLR of 3.5 kgvs * m(-3) * d(-1) or was stopped at an OLR of 4.5 kgvs * m(-3) * d(-1) in the mesophilic reactors. Mainly propionic acid accumulated in concentrations of up to 6.5 g * kg(FM.)(-1) Due to the high buffer capacity of the reactor sludge, the chemical parameter VA/TIC (ratio of total volatile acids to total inorganic carbon) did not clearly indicate process disturbance in advance. In contrast, the MQ indicated metabolic stress of the methanogens before process breakdown and thus showed its potential as early warning system for process breakdown. During the whole experiment, hydrogenotrophic methanogens dominated. In the thermophilic reactors, Methanoculleus IIA-2 sp. 2 and Methanothermobacter wolfeii were dominant during stable process conditions and were displaced by Methanobacterium III sp. 4, a possible new bioindicator for disturbances at these conditions. In the mesophilic reactors, mainly Methanobacterium III sp. 4 was dominant at stable, stressed and acidified processes. A hitherto uncultivated genospecies, Methanobacteriaceae genus IV(B) sp. 3 was determined as possible new bioindicator for mesophilic process disturbance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在厌氧消化中评价草青贮饲料中的一种可能的底物,用于在嗜液性和嗜热的长期操作中产生沼气。此外,分子生物学参数代谢商(MQ)被评估为预警系统以预测过程干扰。由于该基材富含氮气,因此出现高达2.2g * kg(Fm)( - 1)的高氨浓度。铵/氨体系的高缓冲能力可以伪装即将到来的过程酸化。在有机加载率(OLR)低于1.0kgvs * m(-3)* d(-1)(与挥发性固体)的嗜热和低于1.5kgvs * m(-3)* d(-1),用于嗜苯胺反应器,建立了稳定的过程。随着OLR的增加,将该方法施压,直到在3.5kgVS * m(-3)* d(-1)的OLR处在嗜热反应器中突破或在4.5kgvs * m(-3)的OLR处停止。 D(-1)在碘反应器中。由于反应器污泥的高缓冲能力,化学参数VA / TIC(总挥发性酸与总无机碳的比率)产生的浓度高达6.5g * kg( - -1)累积浓度为高达6.5g * kg( - 1)的丙酸未清楚地表明进程扰乱。相反,MQ在工艺分解之前表明甲烷的代谢应力,从而显示其作为过程崩溃的预警系统的潜力。在整个实验期间,致氢脱甲烷占主导地位。在嗜热反应器中,甲烷素IIA-2 SP。在稳定的工艺条件下,2和甲烷热杆菌在稳定的过程条件下占主导地位,并由III甲基杆菌液相传。 4,在这些条件下可能的新生物indicator。在嗜苯胺反应器中,主要是甲基杆菌III SP。 4在稳定,压力和酸化的过程中占优势。迄今为止未露天的生理学,甲基替酯基肌属IV(B)SP。 3被确定为嗜合过程干扰的可能新的生物indicator。 (c)2017 Elsevier Ltd.保留所有权利。

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