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Application and biomolecular monitoring of psychrophilic anaerobic digestion

机译:嗜酸性厌氧消化的应用及生物分子监测

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Thirteen anaerobic hybrid expanded granular sludge bed-anaerobic filter bioreactors were used for psychrophilic (15 - 18 degrees C) anaerobic digestion of a variety of synthetic and non-synthetic wastewaters, including: food-processing, dairy, aromatic- and aliphatic-containing and brewery discharges. Specific methanogenic activity assays were employed to assess temporal physiological activity dynamics. Terminal restriction fragment length polymorphism genetic fingerprinting and fluorescent in situ hybridization were used to monitor shifts in the structure of the microbial communities in the bioreactors in response to operating conditions. Treatment efficiencies obtained were comparable to previous mesophilic (37 degrees C) trials. Methanogenic activity developed under psychrophilic conditions and putative psychrophilic populations were detected within otherwise psychrotolerant mesophilic communities. Shifts in the population structure of archaeal (methanogenic) communities were more indicative of process disruption than bacterial communities. Biomolecular techniques were demonstrated as valuable tools for anaerobic wastewater treatment plant monitoring.
机译:使用十三种厌氧混合膨胀颗粒污泥床-厌氧滤池生物反应器对各种合成和非合成废水进行了厌氧(15-18摄氏度)厌氧消化,包括:食品加工,乳制品,含芳香族和脂肪族的废水。啤酒厂排放物。使用特定的产甲烷活性测定法来评估时间生理活性动态。末端限制性片段长度多态性遗传指纹图谱和荧光原位杂交用于监测生物反应器中微生物群落结构的变化,以响应操作条件。获得的治疗效率与以前的中温(37摄氏度)试验相当。在嗜温条件下发展了产甲烷活性,并在其他具有抗精神病能力的嗜温性社区中发现了推定的嗜温人群。与细菌群落相比,古细菌(产甲烷)群落的种群结构变化更能说明过程破坏。生物分子技术被证明是用于厌氧废水处理厂监测的有价值的工具。

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