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Ammonia, a selective agent for methane production by syntrophic acetate oxidation at mesophilic temperature

机译:氨,在中温温度下通过乙酸亚硝酸盐氧化产生甲烷的选择剂

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摘要

In biogas processes, methane production from acetate proceeds by either aceticlastic methanogenesis or through syntrophic acetate oxidation (SAO). In the present study, the pathway for methane production from acetate was analysed; i) during a gradual increase of the ammonia concentration (final concentration 7 gNH(4)(+) - N/L) in a semi-continuous lab-scale anaerobic digester (4.3 L), operating at mesophilic temperature (37 degrees C) or ii) in diluted enrichment cultures (100 ml) experiencing a gradual increase in ammonia, sodium, potassium and propionic acid. The pathway for methane formation was determined by calculating the (CO2)-C-14/(CH4)-C-14 ratio after incubating samples with C-14-2-acetate. In the anaerobic digester, as well as in the enrichment cultures, the (CO2)-C-14/(CH4)-C-14 ratio clearly increased with increasing ammonium-nitrogen concentration, i. e. as the ammonia concentration increased, a shift from the aceticlastic mechanism to the syntrophic pathway occurred. The shift was very distinct and occurred as the NH4+ - N concentration rose above 3 g/l. No shift in pathway was seen during increasing concentrations of sodium, potassium or propionic acid. The shift to SAO in the biogas digester resulted in a twofold decrease in the specific gas and methane yield.
机译:在沼气工艺中,由醋酸盐产生的甲烷可通过回弹甲烷化作用或通过共生醋酸盐氧化(SAO)进行。在本研究中,分析了乙酸酯生产甲烷的途径。 i)在半连续实验室规模的厌氧消化池(4.3 L)中逐渐升高氨浓度(最终浓度为7 gNH(4)(+)-N / L),在中温温度(37摄氏度)下运行ii)在稀释的浓缩培养物中(100 ml),其氨,钠,钾和丙酸逐渐增加。在将样品与C-14-2-乙酸酯孵育后,通过计算(CO2)-C-14 /(CH4)-C-14比率来确定甲烷形成的途径。在厌氧消化池以及浓缩培养中,(CO2)-C-14 /(CH4)-C-14的比例明显随铵态氮浓度的增加而增加。 e。随着氨浓度的增加,发生了从抗碎裂机理向同养途径的转变。这种变化非常明显,并且随着NH4 +-N浓度上升到3 g / l以上而发生。在钠,钾或丙酸浓度增加期间,未观察到途径的变化。沼气池中向SAO的转化导致比气和甲烷产率降低了两倍。

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